-
1
-
-
0033040497
-
Subventricular zone astrocytes are neural stem cells in the adult mammalian brain
-
F. Doetsch, I. Caille, D.A. Lim, J.M. Garcia-Verdugo, and A. Alvarez-Buylla Subventricular zone astrocytes are neural stem cells in the adult mammalian brain Cell 97 1999 703 716
-
(1999)
Cell
, vol.97
, pp. 703-716
-
-
Doetsch, F.1
Caille, I.2
Lim, D.A.3
Garcia-Verdugo, J.M.4
Alvarez-Buylla, A.5
-
2
-
-
67651036549
-
The glial nature of embryonic and adult neural stem cells
-
A. Kriegstein, and A. Alvarez-Buylla The glial nature of embryonic and adult neural stem cells Annu. Rev. Neurosci. 32 2009 149 184
-
(2009)
Annu. Rev. Neurosci.
, vol.32
, pp. 149-184
-
-
Kriegstein, A.1
Alvarez-Buylla, A.2
-
3
-
-
0034712047
-
Mammalian neural stem cells
-
F.H. Gage Mammalian neural stem cells Science 287 2000 1433 1438
-
(2000)
Science
, vol.287
, pp. 1433-1438
-
-
Gage, F.H.1
-
4
-
-
79956209852
-
Adult neurogenesis in the mammalian brain: Significant answers and significant questions
-
G.L. Ming, and H.J. Song Adult neurogenesis in the mammalian brain: significant answers and significant questions Neuron 70 2011 687 702
-
(2011)
Neuron
, vol.70
, pp. 687-702
-
-
Ming, G.L.1
Song, H.J.2
-
5
-
-
50849113768
-
Neural stem cells confer unique pinwheel architecture to the ventricular surface in neurogenic regions of the adult brain
-
Z. Mirzadeh, F.T. Merkle, M. Soriano-Navarro, J.M. Garcia-Verdugo, and A. Alvarez-Buylla Neural stem cells confer unique pinwheel architecture to the ventricular surface in neurogenic regions of the adult brain Cell Stem Cell 3 2008 265 278
-
(2008)
Cell Stem Cell
, vol.3
, pp. 265-278
-
-
Mirzadeh, Z.1
Merkle, F.T.2
Soriano-Navarro, M.3
Garcia-Verdugo, J.M.4
Alvarez-Buylla, A.5
-
6
-
-
66049106738
-
Home at last: Neural stem cell niches defined
-
F.D. Miller, and A. Gauthier-Fisher Home at last: neural stem cell niches defined Cell Stem Cell 4 2009 507 510
-
(2009)
Cell Stem Cell
, vol.4
, pp. 507-510
-
-
Miller, F.D.1
Gauthier-Fisher, A.2
-
7
-
-
67649908864
-
Adult neural stem cells in the mammalian central nervous system
-
D.K. Ma, M.A. Bonaguidi, G.L. Ming, and H.J. Song Adult neural stem cells in the mammalian central nervous system Cell Res. 19 2009 672 682
-
(2009)
Cell Res.
, vol.19
, pp. 672-682
-
-
Ma, D.K.1
Bonaguidi, M.A.2
Ming, G.L.3
Song, H.J.4
-
8
-
-
27144487469
-
In vivo analysis of quiescent adult neural stem cells responding to Sonic hedgehog
-
S. Ahn, and A.L. Joyner In vivo analysis of quiescent adult neural stem cells responding to Sonic hedgehog Nature 437 2005 894 897
-
(2005)
Nature
, vol.437
, pp. 894-897
-
-
Ahn, S.1
Joyner, A.L.2
-
9
-
-
65549112127
-
Simultaneous prospective purification of adult subventricular zone neural stem cells and their progeny
-
E. Pastrana, L.C. Cheng, and F. Doetsch Simultaneous prospective purification of adult subventricular zone neural stem cells and their progeny Proc. Natl. Acad. Sci. U. S. A. 106 2009 6387 6392
-
(2009)
Proc. Natl. Acad. Sci. U. S. A.
, vol.106
, pp. 6387-6392
-
-
Pastrana, E.1
Cheng, L.C.2
Doetsch, F.3
-
10
-
-
67649852183
-
Lineage analysis of quiescent regenerative stem cells in the adult brain by genetic labelling reveals spatially restricted neurogenic niches in the olfactory bulb
-
C. Giachino, and V. Taylor Lineage analysis of quiescent regenerative stem cells in the adult brain by genetic labelling reveals spatially restricted neurogenic niches in the olfactory bulb Eur. J. Neurosci. 30 2009 9 24
-
(2009)
Eur. J. Neurosci.
, vol.30
, pp. 9-24
-
-
Giachino, C.1
Taylor, V.2
-
11
-
-
84900486062
-
Prospective identification of functionally distinct stem cells and neurosphere-initiating cells in adult mouse forebrain
-
J.K. Mich, R.A.J. Signer, D. Nakada, A. Pineda, R.J. Burgess, T.Y. Vue, J.E. Johnson, and S.J. Morrison Prospective identification of functionally distinct stem cells and neurosphere-initiating cells in adult mouse forebrain Elife 3 2014
-
(2014)
Elife
, vol.3
-
-
Mich, J.K.1
Signer, R.A.J.2
Nakada, D.3
Pineda, A.4
Burgess, R.J.5
Vue, T.Y.6
Johnson, J.E.7
Morrison, S.J.8
-
12
-
-
84899790169
-
Prospective identification and purification of quiescent adult neural stem cells from their in vivo niche
-
P. Codega, V. Silva-Vargas, A. Paul, A.R. Maldonado-Soto, A.M. Deleo, E. Pastrana, and F. Doetsch Prospective identification and purification of quiescent adult neural stem cells from their in vivo niche Neuron 82 2014 545 559
-
(2014)
Neuron
, vol.82
, pp. 545-559
-
-
Codega, P.1
Silva-Vargas, V.2
Paul, A.3
Maldonado-Soto, A.R.4
Deleo, A.M.5
Pastrana, E.6
Doetsch, F.7
-
13
-
-
0028003778
-
Neural stem-cells in the adult mammalian forebrain - A relatively quiescent subpopulation of subependymal cells
-
C.M. Morshead, B.A. Reynolds, C.G. Craig, M.W. McBurney, W.A. Staines, D. Morassutti, S. Weiss, and D. Vanderkooy Neural stem-cells in the adult mammalian forebrain - a relatively quiescent subpopulation of subependymal cells Neuron 13 1994 1071 1082
-
(1994)
Neuron
, vol.13
, pp. 1071-1082
-
-
Morshead, C.M.1
Reynolds, B.A.2
Craig, C.G.3
McBurney, M.W.4
Staines, W.A.5
Morassutti, D.6
Weiss, S.7
Vanderkooy, D.8
-
14
-
-
0028361594
-
Long-distance neuronal migration in the adult mammalian brain
-
C. Lois, and A. Alvarezbuylla Long-distance neuronal migration in the adult mammalian brain Science 264 1994 1145 1148
-
(1994)
Science
, vol.264
, pp. 1145-1148
-
-
Lois, C.1
Alvarezbuylla, A.2
-
15
-
-
0033404850
-
Progenitor cells of the adult mouse subventricular zone proliferate, migrate and differentiate into oligodendrocytes after demyelination
-
B. Nait-Oumesmar, L. Decker, F. Lachapelle, V. Avellana-Adalid, C. Bachelin, and A. Baron-Van Evercooren Progenitor cells of the adult mouse subventricular zone proliferate, migrate and differentiate into oligodendrocytes after demyelination Eur. J. Neurosci. 11 1999 4357 4366
-
(1999)
Eur. J. Neurosci.
, vol.11
, pp. 4357-4366
-
-
Nait-Oumesmar, B.1
Decker, L.2
Lachapelle, F.3
Avellana-Adalid, V.4
Bachelin, C.5
Baron-Van Evercooren, A.6
-
16
-
-
33747076381
-
Origin of oligodendrocytes in the subventricular zone of the adult brain
-
B. Menn, J.M. Garcia-Verdugo, C. Yaschine, O. Gonzalez-Perez, D. Rowitch, and A. Alvarez-Buylla Origin of oligodendrocytes in the subventricular zone of the adult brain J. Neurosci. 26 2006 7907 7918
-
(2006)
J. Neurosci.
, vol.26
, pp. 7907-7918
-
-
Menn, B.1
Garcia-Verdugo, J.M.2
Yaschine, C.3
Gonzalez-Perez, O.4
Rowitch, D.5
Alvarez-Buylla, A.6
-
18
-
-
35848939829
-
In vivo fate analysis reveals the multipotent and self-renewal capacities of Sox2(+) neural stem cells in the adult hippocampus
-
H. Suh, A. Consiglio, J. Ray, T. Sawai, K.A. D'Amour, and F.H. Gage In vivo fate analysis reveals the multipotent and self-renewal capacities of Sox2(+) neural stem cells in the adult hippocampus Cell Stem Cell 1 2007 515 528
-
(2007)
Cell Stem Cell
, vol.1
, pp. 515-528
-
-
Suh, H.1
Consiglio, A.2
Ray, J.3
Sawai, T.4
D'Amour, K.A.5
Gage, F.H.6
-
19
-
-
39149107803
-
Mechanisms and functional implications of adult neurogenesis
-
C.M. Zhao, W. Deng, and F.H. Gage Mechanisms and functional implications of adult neurogenesis Cell 132 2008 645 660
-
(2008)
Cell
, vol.132
, pp. 645-660
-
-
Zhao, C.M.1
Deng, W.2
Gage, F.H.3
-
21
-
-
60649107163
-
Neural precursor cells and central nervous system radiation sensitivity
-
J.R. Fike, S. Rosi, and C.L. Limoli Neural precursor cells and central nervous system radiation sensitivity Semin. Radiat. Oncol. 19 2009 122 132
-
(2009)
Semin. Radiat. Oncol.
, vol.19
, pp. 122-132
-
-
Fike, J.R.1
Rosi, S.2
Limoli, C.L.3
-
22
-
-
78650965758
-
Oxidative-reductionist approaches to stem and progenitor cell function
-
M. Noble, C. Proschel, and M. Mayer-Proschel Oxidative-reductionist approaches to stem and progenitor cell function Cell Stem Cell 8 2011 1 2
-
(2011)
Cell Stem Cell
, vol.8
, pp. 1-2
-
-
Noble, M.1
Proschel, C.2
Mayer-Proschel, M.3
-
23
-
-
0034730151
-
Redox state is a central modulator of the balance between self-renewal and differentiation in a dividing glial precursor cell
-
J. Smith, E. Ladi, M. Mayer-Proschel, and M. Noble Redox state is a central modulator of the balance between self-renewal and differentiation in a dividing glial precursor cell Proc. Natl. Acad. Sci. U. S. A. 97 2000 10032 10037
-
(2000)
Proc. Natl. Acad. Sci. U. S. A.
, vol.97
, pp. 10032-10037
-
-
Smith, J.1
Ladi, E.2
Mayer-Proschel, M.3
Noble, M.4
-
24
-
-
0034607872
-
Nerve growth factor-induced neuronal differentiation requires generation of Rac1-regulated reactive oxygen species
-
K. Suzukawa, K. Miura, J. Mitsushita, J. Resau, K. Hirose, R. Crystal, and T. Kamata Nerve growth factor-induced neuronal differentiation requires generation of Rac1-regulated reactive oxygen species J. Biol. Chem. 275 2000 13175 13178
-
(2000)
J. Biol. Chem.
, vol.275
, pp. 13175-13178
-
-
Suzukawa, K.1
Miura, K.2
Mitsushita, J.3
Resau, J.4
Hirose, K.5
Crystal, R.6
Kamata, T.7
-
25
-
-
0035567134
-
Neuregulin induces sustained reactive oxygen species generation to mediate neuronal differentiation
-
Y. Goldsmit, S. Erlich, and R. Pinkas-Kramarski Neuregulin induces sustained reactive oxygen species generation to mediate neuronal differentiation Cell. Mol. Neurobiol. 21 2001 753 769
-
(2001)
Cell. Mol. Neurobiol.
, vol.21
, pp. 753-769
-
-
Goldsmit, Y.1
Erlich, S.2
Pinkas-Kramarski, R.3
-
27
-
-
78650968492
-
Proliferative neural stem cells have high endogenous ROS levels that regulate self-renewal and neurogenesis in a PI3K/Akt-dependant manner
-
J.E. Le Belle, N.M. Orozco, A.A. Paucar, J.P. Saxe, J. Mottahedeh, A.D. Pyle, H. Wu, and H.I. Kornblum Proliferative neural stem cells have high endogenous ROS levels that regulate self-renewal and neurogenesis in a PI3K/Akt-dependant manner Cell Stem Cell 8 2011 59 71
-
(2011)
Cell Stem Cell
, vol.8
, pp. 59-71
-
-
Le Belle, J.E.1
Orozco, N.M.2
Paucar, A.A.3
Saxe, J.P.4
Mottahedeh, J.5
Pyle, A.D.6
Wu, H.7
Kornblum, H.I.8
-
28
-
-
84864603513
-
VCAM1 is essential to maintain the structure of the SVZ niche and acts as an environmental sensor to regulate SVZ lineage progression
-
E. Kokovay, Y. Wang, G. Kusek, R. Wurster, P. Lederman, N. Lowry, Q. Shen, and S. Temple VCAM1 is essential to maintain the structure of the SVZ niche and acts as an environmental sensor to regulate SVZ lineage progression Cell Stem Cell 11 2012 220 230
-
(2012)
Cell Stem Cell
, vol.11
, pp. 220-230
-
-
Kokovay, E.1
Wang, Y.2
Kusek, G.3
Wurster, R.4
Lederman, P.5
Lowry, N.6
Shen, Q.7
Temple, S.8
-
29
-
-
84885162259
-
Permeability transition pore-mediated mitochondrial superoxide flashes regulate cortical neural progenitor differentiation
-
Y. Hou, M.P. Mattson, and A.W. Cheng Permeability transition pore-mediated mitochondrial superoxide flashes regulate cortical neural progenitor differentiation PLos One 8 2013
-
(2013)
PLos One
, vol.8
-
-
Hou, Y.1
Mattson, M.P.2
Cheng, A.W.3
-
30
-
-
42349085704
-
Sirt1 contributes critically to the redox-dependent fate of neural progenitors
-
T. Prozorovski, U. Schulze-Topphoff, R. Glumm, J. Baumgart, F. Schroter, O. Ninnemann, E. Siegert, I. Bendix, O. Brustle, R. Nitsch, F. Zipp, and O. Aktas Sirt1 contributes critically to the redox-dependent fate of neural progenitors Nat. Cell Biol. 10 2008 385 394
-
(2008)
Nat. Cell Biol.
, vol.10
, pp. 385-394
-
-
Prozorovski, T.1
Schulze-Topphoff, U.2
Glumm, R.3
Baumgart, J.4
Schroter, F.5
Ninnemann, O.6
Siegert, E.7
Bendix, I.8
Brustle, O.9
Nitsch, R.10
Zipp, F.11
Aktas, O.12
-
31
-
-
0032416346
-
Oxygen and ion concentrations in normoxic and hypoxic brain cells
-
I. Silver, and M. Erecinska Oxygen and ion concentrations in normoxic and hypoxic brain cells Adv. Exp. Med. Biol. 454 1998 7 16
-
(1998)
Adv. Exp. Med. Biol.
, vol.454
, pp. 7-16
-
-
Silver, I.1
Erecinska, M.2
-
32
-
-
24644443156
-
Effects of hypoxia on the proliferation and differentiation of NSCs
-
L.L. Zhu, L.Y. Wu, D.T. Yew, and M. Fan Effects of hypoxia on the proliferation and differentiation of NSCs Mol. Neurobiol. 31 2005 231 242
-
(2005)
Mol. Neurobiol.
, vol.31
, pp. 231-242
-
-
Zhu, L.L.1
Wu, L.Y.2
Yew, D.T.3
Fan, M.4
-
33
-
-
77957584397
-
O2 regulates stem cells through Wnt/beta-catenin signalling
-
J. Mazumdar, W.T. O'Brien, R.S. Johnson, J.C. LaManna, J.C. Chavez, P.S. Klein, and M.C. Simon O2 regulates stem cells through Wnt/beta-catenin signalling Nat. Cell Biol. 12 2010 1007 1013
-
(2010)
Nat. Cell Biol.
, vol.12
, pp. 1007-1013
-
-
Mazumdar, J.1
O'Brien, W.T.2
Johnson, R.S.3
Lamanna, J.C.4
Chavez, J.C.5
Klein, P.S.6
Simon, M.C.7
-
34
-
-
77649084546
-
Mild hypoxia enhances proliferation and multipotency of human neural stem cells
-
G. Santilli, G. Lamorte, L. Carlessi, D. Ferrari, N.L. Rota, E. Binda, D. Delia, A.L. Vescovi, and F.L. De Mild hypoxia enhances proliferation and multipotency of human neural stem cells PLoS One 5 2010 e8575
-
(2010)
PLoS One
, vol.5
, pp. e8575
-
-
Santilli, G.1
Lamorte, G.2
Carlessi, L.3
Ferrari, D.4
Rota, N.L.5
Binda, E.6
Delia, D.7
Vescovi, A.L.8
De, F.L.9
-
35
-
-
34748908861
-
Oxygen tension regulates survival and fate of mouse central nervous system precursors at multiple levels
-
H.L. Chen, F. Pistollato, D.J. Hoeppner, H.T. Ni, R.D. McKay, and D.M. Panchision Oxygen tension regulates survival and fate of mouse central nervous system precursors at multiple levels Stem Cells 25 2007 2291 2301
-
(2007)
Stem Cells
, vol.25
, pp. 2291-2301
-
-
Chen, H.L.1
Pistollato, F.2
Hoeppner, D.J.3
Ni, H.T.4
McKay, R.D.5
Panchision, D.M.6
-
36
-
-
77956224494
-
Oxygen in stem cell biology: A critical component of the stem cell niche
-
A. Mohyeldin, T. Garzon-Muvdi, and A. Quinones-Hinojosa Oxygen in stem cell biology: a critical component of the stem cell niche Cell Stem Cell 7 2010 150 161
-
(2010)
Cell Stem Cell
, vol.7
, pp. 150-161
-
-
Mohyeldin, A.1
Garzon-Muvdi, T.2
Quinones-Hinojosa, A.3
-
37
-
-
81555202624
-
Oxygen, a key factor regulating cell behavior during neurogenesis and cerebral diseases
-
K. Zhang, L. Zhu, and M. Fan Oxygen, a key factor regulating cell behavior during neurogenesis and cerebral diseases Front. Mol. Neurosci. 4 2011 5
-
(2011)
Front. Mol. Neurosci.
, vol.4
, pp. 5
-
-
Zhang, K.1
Zhu, L.2
Fan, M.3
-
38
-
-
77953062351
-
Hypoxia enhances proliferation of mouse embryonic stem cell-derived neural stem cells
-
C.A.V. Rodrigues, M.M. Diogo, C.L. da Silva, and J.M.S. Cabral Hypoxia enhances proliferation of mouse embryonic stem cell-derived neural stem cells Biotechnol. Bioeng. 106 2010 260 270
-
(2010)
Biotechnol. Bioeng.
, vol.106
, pp. 260-270
-
-
Rodrigues, C.A.V.1
Diogo, M.M.2
Da Silva, C.L.3
Cabral, J.M.S.4
-
39
-
-
84871728323
-
Involvement of PGC-1 alpha in the formation and maintenance of neuronal dendritic spines
-
A.W. Cheng, R.Q. Wan, J.L. Yang, N. Kamimura, T.G. Son, X. Ouyang, Y.Q. Luo, E. Okun, and M.P. Mattson Involvement of PGC-1 alpha in the formation and maintenance of neuronal dendritic spines Nat. Commun. 3 2012
-
(2012)
Nat. Commun.
, vol.3
-
-
Cheng, A.W.1
Wan, R.Q.2
Yang, J.L.3
Kamimura, N.4
Son, T.G.5
Ouyang, X.6
Luo, Y.Q.7
Okun, E.8
Mattson, M.P.9
-
40
-
-
84896929687
-
Metabolic requirements for the maintenance of self-renewing stem cells
-
K. Ito, and T. Suda Metabolic requirements for the maintenance of self-renewing stem cells Nat. Rev. Mol. Cell Biol. 15 2014 243 256
-
(2014)
Nat. Rev. Mol. Cell Biol.
, vol.15
, pp. 243-256
-
-
Ito, K.1
Suda, T.2
-
41
-
-
7244250309
-
Regulation of oxidative stress by ATM is required for self-renewal of haematopoietic stem cells
-
K. Ito, A. Hirao, F. Arai, S. Matsuoka, K. Takubo, I. Hamaguchi, K. Nomiyama, K. Hosokawa, K. Sakurada, N. Nakagata, Y. Ikeda, T.W. Mak, and T. Suda Regulation of oxidative stress by ATM is required for self-renewal of haematopoietic stem cells Nature 431 2004 997 1002
-
(2004)
Nature
, vol.431
, pp. 997-1002
-
-
Ito, K.1
Hirao, A.2
Arai, F.3
Matsuoka, S.4
Takubo, K.5
Hamaguchi, I.6
Nomiyama, K.7
Hosokawa, K.8
Sakurada, K.9
Nakagata, N.10
Ikeda, Y.11
Mak, T.W.12
Suda, T.13
-
42
-
-
33645730667
-
Reactive oxygen species act through p38 MAPK to limit the lifespan of hematopoietic stem cells
-
K. Ito, A. Hirao, F. Arai, K. Takubo, S. Matsuoka, K. Miyamoto, M. Ohmura, K. Naka, K. Hosokawa, Y. Ikeda, and T. Suda Reactive oxygen species act through p38 MAPK to limit the lifespan of hematopoietic stem cells Nat. Med. 12 2006 446 451
-
(2006)
Nat. Med.
, vol.12
, pp. 446-451
-
-
Ito, K.1
Hirao, A.2
Arai, F.3
Takubo, K.4
Matsuoka, S.5
Miyamoto, K.6
Ohmura, M.7
Naka, K.8
Hosokawa, K.9
Ikeda, Y.10
Suda, T.11
-
43
-
-
33846420629
-
A high glycolytic flux supports the proliferative potential of murine embryonic stem cells
-
H. Kondoh, M.E. Lleonart, Y. Nakashima, M. Yokode, M. Tanaka, D. Bernard, J. Gil, and D. Beach A high glycolytic flux supports the proliferative potential of murine embryonic stem cells Antioxid. Redox Signal. 9 2007 293 299
-
(2007)
Antioxid. Redox Signal.
, vol.9
, pp. 293-299
-
-
Kondoh, H.1
Lleonart, M.E.2
Nakashima, Y.3
Yokode, M.4
Tanaka, M.5
Bernard, D.6
Gil, J.7
Beach, D.8
-
44
-
-
70349860263
-
Enhancement of human embryonic stem cell pluripotency through inhibition of the mitochondrial respiratory chain
-
S. Varum, O. Momcilovic, C. Castro, A. Ben-Yehudah, J. Ramalho-Santos, and C.S. Navara Enhancement of human embryonic stem cell pluripotency through inhibition of the mitochondrial respiratory chain Stem Cell Res. 3 2009 142 156
-
(2009)
Stem Cell Res.
, vol.3
, pp. 142-156
-
-
Varum, S.1
Momcilovic, O.2
Castro, C.3
Ben-Yehudah, A.4
Ramalho-Santos, J.5
Navara, C.S.6
-
45
-
-
77951002352
-
The senescence-related mitochondrial/oxidative stress pathway is repressed in human induced pluripotent stem cells
-
A. Prigione, B. Fauler, R. Lurz, H. Lehrach, and J. Adjaye The senescence-related mitochondrial/oxidative stress pathway is repressed in human induced pluripotent stem cells Stem Cells 28 2010 721 733
-
(2010)
Stem Cells
, vol.28
, pp. 721-733
-
-
Prigione, A.1
Fauler, B.2
Lurz, R.3
Lehrach, H.4
Adjaye, J.5
-
47
-
-
77951953060
-
Mammalian mitochondrial complex I: Biogenesis regulation, and reactive oxygen species generation
-
W.J.H. Koopman, L.G.J. Nijtmans, C.E.J. Dieteren, P. Roestenberg, F. Valsecchi, J.A.M. Smeitink, and P.H.G.M. Willems Mammalian mitochondrial complex I: biogenesis regulation, and reactive oxygen species generation Antioxid. Redox Signal. 12 2010 1431 1470
-
(2010)
Antioxid. Redox Signal.
, vol.12
, pp. 1431-1470
-
-
Koopman, W.J.H.1
Nijtmans, L.G.J.2
Dieteren, C.E.J.3
Roestenberg, P.4
Valsecchi, F.5
Smeitink, J.A.M.6
Willems, P.H.G.M.7
-
48
-
-
84867905197
-
Mitochondrial superoxide production negatively regulates neural progenitor proliferation and cerebral cortical development
-
Y. Hou, X. Ouyang, R.Q. Wan, H.P. Cheng, M.P. Mattson, and A.W. Cheng Mitochondrial superoxide production negatively regulates neural progenitor proliferation and cerebral cortical development Stem Cells 30 2012 2535 2547
-
(2012)
Stem Cells
, vol.30
, pp. 2535-2547
-
-
Hou, Y.1
Ouyang, X.2
Wan, R.Q.3
Cheng, H.P.4
Mattson, M.P.5
Cheng, A.W.6
-
49
-
-
84919652679
-
The 'mitoflash' probe cpYFP does not respond to superoxide
-
M. Schwarzlander, S. Wagner, Y.G. Ermakova, V.V. Belousov, R. Radi, J.S. Beckman, G.R. Buettner, N. Demaurex, M.R. Duchen, H.J. Forman, M.D. Fricker, D. Gems, A.P. Halestrap, B. Halliwell, U. Jakob, I.G. Johnstonn, N.S. Jones, D.C. Logan, B. Morgan, F.L. Muller, D.G. Nicholls, S.J. Remington, P.T. Schumacker, C.C. Winterbourn, L.J. Sweetlove, A.J. Meyer, T.P. Dick, and M.P. Murphy The 'mitoflash' probe cpYFP does not respond to superoxide Nature 514 2014 E12 E14
-
(2014)
Nature
, vol.514
, pp. E12-E14
-
-
Schwarzlander, M.1
Wagner, S.2
Ermakova, Y.G.3
Belousov, V.V.4
Radi, R.5
Beckman, J.S.6
Buettner, G.R.7
Demaurex, N.8
Duchen, M.R.9
Forman, H.J.10
Fricker, M.D.11
Gems, D.12
Halestrap, A.P.13
Halliwell, B.14
Jakob, U.15
Johnstonn, I.G.16
Jones, N.S.17
Logan, D.C.18
Morgan, B.19
Muller, F.L.20
Nicholls, D.G.21
Remington, S.J.22
Schumacker, P.T.23
Winterbourn, C.C.24
Sweetlove, L.J.25
Meyer, A.J.26
Dick, T.P.27
Murphy, M.P.28
more..
-
50
-
-
84902982320
-
Multiparametric optical analysis of mitochondrial redox signals during neuronal physiology and pathology in vivo
-
(559-122)
-
M. Breckwoldt, F.M.J. Pfister, P.M. Bradley, P. Marinkovic, P.R. Williams, M.S. Brilll, B. Plomer, A. Schmalz, D.K. St Clair, R. Naumann, O. Griesbeck, M. Schwarzlander, L. Godinho, F.M. Bareyre, T.P. Dick, M. Kerschensteiner, and T. Misgeld Multiparametric optical analysis of mitochondrial redox signals during neuronal physiology and pathology in vivo Nat. Med. 20 2014 (559-122)
-
(2014)
Nat. Med.
, vol.20
-
-
Breckwoldt, M.1
Pfister, F.M.J.2
Bradley, P.M.3
Marinkovic, P.4
Williams, P.R.5
Brilll, M.S.6
Plomer, B.7
Schmalz, A.8
St Clair, D.K.9
Naumann, R.10
Griesbeck, O.11
Schwarzlander, M.12
Godinho, L.13
Bareyre, F.M.14
Dick, T.P.15
Kerschensteiner, M.16
Misgeld, T.17
-
51
-
-
84866619395
-
Oxidative stress and adult neurogenesis - Effects of radiation and superoxide dismutase deficiency
-
T.T. Huang, Y. Zou, and R. Corniola Oxidative stress and adult neurogenesis - effects of radiation and superoxide dismutase deficiency Semin. Cell Dev. Biol. 23 2012 738 744
-
(2012)
Semin. Cell Dev. Biol.
, vol.23
, pp. 738-744
-
-
Huang, T.T.1
Zou, Y.2
Corniola, R.3
-
52
-
-
77956813407
-
Mitochondrial protection attenuates inflammation-induced impairment of neurogenesis in vitro and in vivo
-
L.A. Voloboueva, S.W. Lee, J.F. Emery, T.D. Palmer, and R.G. Giffard Mitochondrial protection attenuates inflammation-induced impairment of neurogenesis in vitro and in vivo J. Neurosci. 30 2010 12242 12251
-
(2010)
J. Neurosci.
, vol.30
, pp. 12242-12251
-
-
Voloboueva, L.A.1
Lee, S.W.2
Emery, J.F.3
Palmer, T.D.4
Giffard, R.G.5
-
53
-
-
77952545479
-
Metabolic oxidation regulates embryonic stem cell differentiation
-
O. Yanes, J. Clark, D.M. Wong, G.J. Patti, A. Sanchez-Ruiz, H.P. Benton, S.A. Trauger, C. Desponts, S. Ding, and G. Siuzdak Metabolic oxidation regulates embryonic stem cell differentiation Nat. Chem. Biol. 6 2010 411 417
-
(2010)
Nat. Chem. Biol.
, vol.6
, pp. 411-417
-
-
Yanes, O.1
Clark, J.2
Wong, D.M.3
Patti, G.J.4
Sanchez-Ruiz, A.5
Benton, H.P.6
Trauger, S.A.7
Desponts, C.8
Ding, S.9
Siuzdak, G.10
-
54
-
-
16244368805
-
Newborn neurons acquire high levels of reactive oxygen species and increased mitochondrial proteins upon differentiation from progenitors
-
M. Tsatmali, E.C. Walcott, and K.L. Crossin Newborn neurons acquire high levels of reactive oxygen species and increased mitochondrial proteins upon differentiation from progenitors Brain Res. 1040 2005 137 150
-
(2005)
Brain Res.
, vol.1040
, pp. 137-150
-
-
Tsatmali, M.1
Walcott, E.C.2
Crossin, K.L.3
-
55
-
-
84907484119
-
Ca2+-mediated mitochondrial ROS metabolism augments Wnt/beta-catenin pathway activation to facilitate cell differentiation
-
T. Rharass, H. Lemcke, M. Lantow, S.A. Kuznetsov, D.G. Weiss, and D. Panakova Ca2+-mediated mitochondrial ROS metabolism augments Wnt/beta-catenin pathway activation to facilitate cell differentiation J. Biol. Chem. 289 2014 27937 27951
-
(2014)
J. Biol. Chem.
, vol.289
, pp. 27937-27951
-
-
Rharass, T.1
Lemcke, H.2
Lantow, M.3
Kuznetsov, S.A.4
Weiss, D.G.5
Panakova, D.6
-
56
-
-
33746001394
-
Differences in mitochondrial movement and morphology in young and mature primary cortical neurons in culture
-
D.T.W. Chang, and I.J. Reynolds Differences in mitochondrial movement and morphology in young and mature primary cortical neurons in culture Neuroscience 141 2006 727 736
-
(2006)
Neuroscience
, vol.141
, pp. 727-736
-
-
Chang, D.T.W.1
Reynolds, I.J.2
-
57
-
-
33751411413
-
Reactive oxygen species modulate the differentiation of neurons in clonal cortical cultures
-
M. Tsatmali, E.C. Walcott, H. Makarenkova, and K.L. Crossin Reactive oxygen species modulate the differentiation of neurons in clonal cortical cultures Mol. Cell. Neurosci. 33 2006 345 357
-
(2006)
Mol. Cell. Neurosci.
, vol.33
, pp. 345-357
-
-
Tsatmali, M.1
Walcott, E.C.2
Makarenkova, H.3
Crossin, K.L.4
-
58
-
-
84883440064
-
The tumor suppressor p53 fine-tunes reactive oxygen species levels and neurogenesis via PI3 kinase signaling
-
K. Forsberg, A. Wuttke, G. Quadrato, P.M. Chumakov, A. Wizenmann, and S. Di Giovanni The tumor suppressor p53 fine-tunes reactive oxygen species levels and neurogenesis via PI3 kinase signaling J. Neurosci. 33 2013 14318 14330
-
(2013)
J. Neurosci.
, vol.33
, pp. 14318-14330
-
-
Forsberg, K.1
Wuttke, A.2
Quadrato, G.3
Chumakov, P.M.4
Wizenmann, A.5
Di Giovanni, S.6
-
59
-
-
0242667922
-
Bmi-1 dependence distinguishes neural stem cell self-renewal from progenitor proliferation
-
A.V. Molofsky, R. Pardal, T. Iwashita, I.K. Park, M.F. Clarke, and S.J. Morrison Bmi-1 dependence distinguishes neural stem cell self-renewal from progenitor proliferation Nature 425 2003 962 967
-
(2003)
Nature
, vol.425
, pp. 962-967
-
-
Molofsky, A.V.1
Pardal, R.2
Iwashita, T.3
Park, I.K.4
Clarke, M.F.5
Morrison, S.J.6
-
60
-
-
0038349957
-
Bmi-1 is required for maintenance of adult self-renewing haematopoietic stem cells
-
I.K. Park, D.L. Qian, M. Kiel, M.W. Becker, M. Pihalja, I.L. Weissman, S.J. Morrison, and M.F. Clarke Bmi-1 is required for maintenance of adult self-renewing haematopoietic stem cells Nature 423 2003 302 305
-
(2003)
Nature
, vol.423
, pp. 302-305
-
-
Park, I.K.1
Qian, D.L.2
Kiel, M.3
Becker, M.W.4
Pihalja, M.5
Weissman, I.L.6
Morrison, S.J.7
Clarke, M.F.8
-
61
-
-
22344449361
-
Bmi-1 promotes neural stem cell self-renewal and neural development but not mouse growth and survival by repressing the p16Ink4a and p19Arf senescence pathways
-
A.V. Molofsky, S. He, M. Bydon, S.J. Morrison, and R. Pardal Bmi-1 promotes neural stem cell self-renewal and neural development but not mouse growth and survival by repressing the p16Ink4a and p19Arf senescence pathways Genes Dev. 19 2005 1432 1437
-
(2005)
Genes Dev.
, vol.19
, pp. 1432-1437
-
-
Molofsky, A.V.1
He, S.2
Bydon, M.3
Morrison, S.J.4
Pardal, R.5
-
62
-
-
20544453888
-
Ink4a and Arf differentially affect cell proliferation and neural stem cell self-renewal in Bmi1-deficient mice
-
S.W. Bruggeman, M.E. Valk-Lingbeek, P.P. van der Stoop, J.J. Jacobs, K. Kieboom, E. Tanger, D. Hulsman, C. Leung, Y. Arsenijevic, S. Marino, and L.M. van Ink4a and Arf differentially affect cell proliferation and neural stem cell self-renewal in Bmi1-deficient mice Genes Dev. 19 2005 1438 1443
-
(2005)
Genes Dev.
, vol.19
, pp. 1438-1443
-
-
Bruggeman, S.W.1
Valk-Lingbeek, M.E.2
Van Der Stoop, P.P.3
Jacobs, J.J.4
Kieboom, K.5
Tanger, E.6
Hulsman, D.7
Leung, C.8
Arsenijevic, Y.9
Marino, S.10
Van, L.M.11
-
63
-
-
61849144426
-
Bmi-1 cooperates with Foxg1 to maintain neural stem cell self-renewal in the forebrain
-
C.A. Fasano, T.N. Phoenix, E. Kokovay, N. Lowry, Y. Elkabetz, J.T. Dimos, I.R. Lemischka, L. Studer, and S. Temple Bmi-1 cooperates with Foxg1 to maintain neural stem cell self-renewal in the forebrain Genes Dev. 23 2009 561 574
-
(2009)
Genes Dev.
, vol.23
, pp. 561-574
-
-
Fasano, C.A.1
Phoenix, T.N.2
Kokovay, E.3
Lowry, N.4
Elkabetz, Y.5
Dimos, J.T.6
Lemischka, I.R.7
Studer, L.8
Temple, S.9
-
64
-
-
67349156082
-
Bmi1 regulates mitochondrial function and the DNA damage response pathway
-
J. Liu, L. Cao, J.C. Chen, S.W. Song, I.H. Lee, C. Quijano, H.J. Liu, K. Keyvanfar, H.Q. Chen, L.Y. Cao, B.H. Ahn, N.G. Kumar, I.I. Rovira, X.L. Xu, M. van Lohuizen, N. Motoyama, C.X. Deng, and T. Finkel Bmi1 regulates mitochondrial function and the DNA damage response pathway Nature 459 2009 387-U100
-
(2009)
Nature
, vol.459
, pp. 387-U100
-
-
Liu, J.1
Cao, L.2
Chen, J.C.3
Song, S.W.4
Lee, I.H.5
Quijano, C.6
Liu, H.J.7
Keyvanfar, K.8
Chen, H.Q.9
Cao, L.Y.10
Ahn, B.H.11
Kumar, N.G.12
Rovira, I.I.13
Xu, X.L.14
Van Lohuizen, M.15
Motoyama, N.16
Deng, C.X.17
Finkel, T.18
-
65
-
-
77955795723
-
Bmi1 distinguishes immature retinal progenitor/stem cells from the main progenitor cell population and is required for normal retinal development
-
W. Chatoo, M. Abdouh, R.H. Duparc, and G. Bernier Bmi1 distinguishes immature retinal progenitor/stem cells from the main progenitor cell population and is required for normal retinal development Stem Cells 28 2010 1412 1423
-
(2010)
Stem Cells
, vol.28
, pp. 1412-1423
-
-
Chatoo, W.1
Abdouh, M.2
Duparc, R.H.3
Bernier, G.4
-
66
-
-
0024427178
-
Molecular-cloning and expression of human hepatocyte growth-factor
-
T. Nakamura, T. Nishizawa, M. Hagiya, T. Seki, M. Shimonishi, A. Sugimura, K. Tashiro, and S. Shimizu Molecular-cloning and expression of human hepatocyte growth-factor Nature 342 1989 440 443
-
(1989)
Nature
, vol.342
, pp. 440-443
-
-
Nakamura, T.1
Nishizawa, T.2
Hagiya, M.3
Seki, T.4
Shimonishi, M.5
Sugimura, A.6
Tashiro, K.7
Shimizu, S.8
-
67
-
-
77957551487
-
Prdm16 promotes stem cell maintenance in multiple tissues, partly by regulating oxidative stress
-
S. Chuikov, B.P. Levi, M.L. Smith, and S.J. Morrison Prdm16 promotes stem cell maintenance in multiple tissues, partly by regulating oxidative stress Nat. Cell Biol. 12 2010 999 1006
-
(2010)
Nat. Cell Biol.
, vol.12
, pp. 999-1006
-
-
Chuikov, S.1
Levi, B.P.2
Smith, M.L.3
Morrison, S.J.4
-
68
-
-
62549155361
-
Endogenous hepatocyte growth factor is a niche signal for subventricular zone neural stem cell amplification and self-renewal
-
C. Nicoleau, O. Benzakour, F. Agasse, N. Thiriet, J. Petit, L. Prestoz, M. Roger, M. Jaber, and V. Coronas Endogenous hepatocyte growth factor is a niche signal for subventricular zone neural stem cell amplification and self-renewal Stem Cells 27 2009 408 419
-
(2009)
Stem Cells
, vol.27
, pp. 408-419
-
-
Nicoleau, C.1
Benzakour, O.2
Agasse, F.3
Thiriet, N.4
Petit, J.5
Prestoz, L.6
Roger, M.7
Jaber, M.8
Coronas, V.9
-
69
-
-
16244377705
-
TGF beta 1 induces prolonged mitochondrial ROS generation through decreased complex IV activity with senescent arrest in Mv1Lu cells
-
Y.S. Yoon, J.H. Lee, S.C. Hwang, K.S. Choi, and G. Yoon TGF beta 1 induces prolonged mitochondrial ROS generation through decreased complex IV activity with senescent arrest in Mv1Lu cells Oncogene 24 2005 1895 1903
-
(2005)
Oncogene
, vol.24
, pp. 1895-1903
-
-
Yoon, Y.S.1
Lee, J.H.2
Hwang, S.C.3
Choi, K.S.4
Yoon, G.5
-
70
-
-
84876893671
-
FIP200 is required for maintenance and differentiation of postnatal neural stem cells
-
C.R. Wang, C.C. Liang, Z.C. Bian, Y. Zhu, and J.L. Guan FIP200 is required for maintenance and differentiation of postnatal neural stem cells Nat. Neurosci. 16 2013 532-+
-
(2013)
Nat. Neurosci.
, vol.16
, pp. 532-+
-
-
Wang, C.R.1
Liang, C.C.2
Bian, Z.C.3
Zhu, Y.4
Guan, J.L.5
-
71
-
-
43149090064
-
FIP200, a ULK-interacting protein, is required for autophagosome formation in mammalian cells
-
T. Hara, A. Takamura, C. Kishi, S.I. Iemura, T. Natsume, J.L. Guan, and N. Mizushima FIP200, a ULK-interacting protein, is required for autophagosome formation in mammalian cells J. Cell Biol. 181 2008 497 510
-
(2008)
J. Cell Biol.
, vol.181
, pp. 497-510
-
-
Hara, T.1
Takamura, A.2
Kishi, C.3
Iemura, S.I.4
Natsume, T.5
Guan, J.L.6
Mizushima, N.7
-
72
-
-
84890310192
-
Effects of treadmill exercise on neural stem cells, cell proliferation, and neuroblast differentiation in the subgranular zone of the dentate gyrus in cyclooxygenase-2 knockout mice
-
S.M. Nam, J.W. Kim, D.Y. Yoo, J.H. Choi, W. Kim, H.Y. Jung, M.H. Won, I.K. Hwang, J.K. Seong, and Y.S. Yoon Effects of treadmill exercise on neural stem cells, cell proliferation, and neuroblast differentiation in the subgranular zone of the dentate gyrus in cyclooxygenase-2 knockout mice Neurochem. Res. 38 2013 2559 2569
-
(2013)
Neurochem. Res.
, vol.38
, pp. 2559-2569
-
-
Nam, S.M.1
Kim, J.W.2
Yoo, D.Y.3
Choi, J.H.4
Kim, W.5
Jung, H.Y.6
Won, M.H.7
Hwang, I.K.8
Seong, J.K.9
Yoon, Y.S.10
-
73
-
-
0037448093
-
Implication of cyclooxygenase-2 on enhanced proliferation of neural progenitor cells in the adult mouse hippocampus after ischemia
-
T. Sasaki, K. Kitagawa, S. Sugiura, E. Omura-Matsuoka, S. Tanaka, Y. Yagita, H. Okano, M. Matsumoto, and M. Hori Implication of cyclooxygenase-2 on enhanced proliferation of neural progenitor cells in the adult mouse hippocampus after ischemia J. Neurosci. Res. 72 2003 461 471
-
(2003)
J. Neurosci. Res.
, vol.72
, pp. 461-471
-
-
Sasaki, T.1
Kitagawa, K.2
Sugiura, S.3
Omura-Matsuoka, E.4
Tanaka, S.5
Yagita, Y.6
Okano, H.7
Matsumoto, M.8
Hori, M.9
-
74
-
-
33748641163
-
Leukotriene B-4 and lipoxin A(4) are regulatory signals for neural stem cell proliferation and differentiation
-
K. Wada, M. Arita, A. Nakajima, K. Katayama, C. Kudo, Y. Kamisaki, and C.N. Serhan Leukotriene B-4 and lipoxin A(4) are regulatory signals for neural stem cell proliferation and differentiation FASEB J. 20 2006 1785 1792
-
(2006)
FASEB J.
, vol.20
, pp. 1785-1792
-
-
Wada, K.1
Arita, M.2
Nakajima, A.3
Katayama, K.4
Kudo, C.5
Kamisaki, Y.6
Serhan, C.N.7
-
75
-
-
83755207526
-
Inhibition of leukotriene receptors boosts neural progenitor proliferation
-
C. Huber, J. Marschallinger, H. Tempfer, T. Furtner, S. Couillard-Despres, H.C. Bauer, F.J. Rivera, and L. Aigner Inhibition of leukotriene receptors boosts neural progenitor proliferation Cell. Physiol. Biochem. 28 2011 793 804
-
(2011)
Cell. Physiol. Biochem.
, vol.28
, pp. 793-804
-
-
Huber, C.1
Marschallinger, J.2
Tempfer, H.3
Furtner, T.4
Couillard-Despres, S.5
Bauer, H.C.6
Rivera, F.J.7
Aigner, L.8
-
77
-
-
33845999883
-
Nitric oxide decreases subventricular zone stem cell proliferation by inhibition of epidermal growth factor receptor and phosphoinositide-3-kinase/Akt pathway
-
A. Torroglosa, M. Murillo-Carretero, C. Romero-Grimaldi, E.R. Matarredona, A. Campos-Caro, and C. Estrada Nitric oxide decreases subventricular zone stem cell proliferation by inhibition of epidermal growth factor receptor and phosphoinositide-3-kinase/Akt pathway Stem Cells 25 2007 88 97
-
(2007)
Stem Cells
, vol.25
, pp. 88-97
-
-
Torroglosa, A.1
Murillo-Carretero, M.2
Romero-Grimaldi, C.3
Matarredona, E.R.4
Campos-Caro, A.5
Estrada, C.6
-
78
-
-
44849141340
-
Impaired functions of neural stem cells by abnormal nitric oxide-mediated signaling in an in vitro model of Niemann-Pick type C disease
-
S.J. Kim, M.S. Lim, S.K. Kang, Y.S. Lee, and K.S. Kang Impaired functions of neural stem cells by abnormal nitric oxide-mediated signaling in an in vitro model of Niemann-Pick type C disease Cell Res. 18 2008 686 694
-
(2008)
Cell Res.
, vol.18
, pp. 686-694
-
-
Kim, S.J.1
Lim, M.S.2
Kang, S.K.3
Lee, Y.S.4
Kang, K.S.5
-
79
-
-
78649884263
-
Bidirectional regulation of neurogenesis by neuronal nitric oxide synthase derived from neurons and neural stem cells
-
C.X. Luo, X. Jin, C.C. Cao, M.M. Zhu, B. Wang, L. Chang, Q.G. Zhou, H.Y. Wu, and D.Y. Zhu Bidirectional regulation of neurogenesis by neuronal nitric oxide synthase derived from neurons and neural stem cells Stem Cells 28 2010 2041 2052
-
(2010)
Stem Cells
, vol.28
, pp. 2041-2052
-
-
Luo, C.X.1
Jin, X.2
Cao, C.C.3
Zhu, M.M.4
Wang, B.5
Chang, L.6
Zhou, Q.G.7
Wu, H.Y.8
Zhu, D.Y.9
-
80
-
-
46349107674
-
A mechanism for the inhibition of neural progenitor cell proliferation by cocaine
-
C.T. Lee, J. Chen, T. Hayashi, S.Y. Tsai, J.F. Sanchez, S.L. Errico, R. Amable, T.P. Su, R.H. Lowe, M.A. Huestis, J. Shen, K.G. Becker, H.M. Geller, and W.J. Freed A mechanism for the inhibition of neural progenitor cell proliferation by cocaine PLoS Med. 5 2008 987 1004
-
(2008)
PLoS Med.
, vol.5
, pp. 987-1004
-
-
Lee, C.T.1
Chen, J.2
Hayashi, T.3
Tsai, S.Y.4
Sanchez, J.F.5
Errico, S.L.6
Amable, R.7
Su, T.P.8
Lowe, R.H.9
Huestis, M.A.10
Shen, J.11
Becker, K.G.12
Geller, H.M.13
Freed, W.J.14
-
81
-
-
84885131319
-
Cytochrome P450 Cyp26a1 alters spinal motor neuron subtype identity in differentiating embryonic stem cells
-
M.J. Ricard, and L.J. Gudas Cytochrome P450 Cyp26a1 alters spinal motor neuron subtype identity in differentiating embryonic stem cells J. Biol. Chem. 288 2013 28801 28813
-
(2013)
J. Biol. Chem.
, vol.288
, pp. 28801-28813
-
-
Ricard, M.J.1
Gudas, L.J.2
-
82
-
-
33846794822
-
The NOX family of ROS-generating NADPH oxidases: Physiology and pathophysiology
-
K. Bedard, and K.H. Krause The NOX family of ROS-generating NADPH oxidases: physiology and pathophysiology Physiol. Rev. 87 2007 245 313
-
(2007)
Physiol. Rev.
, vol.87
, pp. 245-313
-
-
Bedard, K.1
Krause, K.H.2
-
83
-
-
34547852400
-
NOX family NADPH oxidases: Not just in mammals
-
K. Bedard, B. Lardy, and K.H. Krause NOX family NADPH oxidases: not just in mammals Biochimie 89 2007 1107 1112
-
(2007)
Biochimie
, vol.89
, pp. 1107-1112
-
-
Bedard, K.1
Lardy, B.2
Krause, K.H.3
-
84
-
-
44949106317
-
Structure, regulation and evolution of Nox-family NADPH oxidases that produce reactive oxygen species
-
H. Sumimoto Structure, regulation and evolution of Nox-family NADPH oxidases that produce reactive oxygen species FEBS J. 275 2008 3249 3277
-
(2008)
FEBS J.
, vol.275
, pp. 3249-3277
-
-
Sumimoto, H.1
-
85
-
-
33750926794
-
Role of Nox family NADPH oxidases in host defense
-
T.L. Leto, and M. Geiszt Role of Nox family NADPH oxidases in host defense Antioxid. Redox Signal. 8 2006 1549 1561
-
(2006)
Antioxid. Redox Signal.
, vol.8
, pp. 1549-1561
-
-
Leto, T.L.1
Geiszt, M.2
-
86
-
-
1542406446
-
Nox enzymes and the biology of reactive oxygen
-
J.D. Lambeth Nox enzymes and the biology of reactive oxygen Nat. Rev. Immunol. 4 2004 181 189
-
(2004)
Nat. Rev. Immunol.
, vol.4
, pp. 181-189
-
-
Lambeth, J.D.1
-
87
-
-
34250888056
-
Regulation of Nox and Duox enzymatic activity and expression
-
J.D. Lambeth, T. Kawahara, and B. Diebold Regulation of Nox and Duox enzymatic activity and expression Free Radic. Biol. Med. 43 2007 319 331
-
(2007)
Free Radic. Biol. Med.
, vol.43
, pp. 319-331
-
-
Lambeth, J.D.1
Kawahara, T.2
Diebold, B.3
-
88
-
-
80052263264
-
Oxidases and peroxidases in cardiovascular and lung disease: New concepts in reactive oxygen species signaling
-
I. Al Ghouleh, N.K.H. Khoo, U.G. Knaus, K.K. Griendling, R.M. Touyz, V.J. Thannickal, A. Barchowsky, W.M. Nauseef, E.E. Kelley, P.M. Bauer, V. Darley-Usmar, S. Shiva, E. Cifuentes-Pagano, B.A. Freeman, M.T. Gladwin, and P.J. Pagano Oxidases and peroxidases in cardiovascular and lung disease: new concepts in reactive oxygen species signaling Free Radic. Biol. Med. 51 2011 1271 1288
-
(2011)
Free Radic. Biol. Med.
, vol.51
, pp. 1271-1288
-
-
Al Ghouleh, I.1
Khoo, N.K.H.2
Knaus, U.G.3
Griendling, K.K.4
Touyz, R.M.5
Thannickal, V.J.6
Barchowsky, A.7
Nauseef, W.M.8
Kelley, E.E.9
Bauer, P.M.10
Darley-Usmar, V.11
Shiva, S.12
Cifuentes-Pagano, E.13
Freeman, B.A.14
Gladwin, M.T.15
Pagano, P.J.16
-
90
-
-
65349157681
-
Compartmentalization of redox signaling through NADPH oxidase-derived ROS
-
M. Ushio-Fukai Compartmentalization of redox signaling through NADPH oxidase-derived ROS Antioxid. Redox Signal. 11 2009 1289 1299
-
(2009)
Antioxid. Redox Signal.
, vol.11
, pp. 1289-1299
-
-
Ushio-Fukai, M.1
-
92
-
-
78751562428
-
Nox2 redox signaling maintains essential cell populations in the brain
-
B.C. Dickinson, J. Peltier, D. Stone, D.V. Schaffer, and C.J. Chang Nox2 redox signaling maintains essential cell populations in the brain Nat. Chem. Biol. 7 2011 106 112
-
(2011)
Nat. Chem. Biol.
, vol.7
, pp. 106-112
-
-
Dickinson, B.C.1
Peltier, J.2
Stone, D.3
Schaffer, D.V.4
Chang, C.J.5
-
93
-
-
77952291931
-
Endogenous reactive oxygen species are essential for proliferation of neural stem/progenitor cells
-
M. Yoneyama, K. Kawada, Y. Gotoh, T. Shiba, and K. Ogita Endogenous reactive oxygen species are essential for proliferation of neural stem/progenitor cells Neurochem. Int. 56 2010 740 746
-
(2010)
Neurochem. Int.
, vol.56
, pp. 740-746
-
-
Yoneyama, M.1
Kawada, K.2
Gotoh, Y.3
Shiba, T.4
Ogita, K.5
-
94
-
-
80052023895
-
NOX1/nicotinamide adenine dinucleotide phosphate, reduced form (NADPH) oxidase promotes proliferation of stellate cells and aggravates liver fibrosis induced by bile duct ligation
-
W.H. Cui, K. Matsuno, K. Iwata, M. Ibi, M. Matsumoto, J. Zhang, K. Zhu, M. Katsuyama, N.J. Torok, and C. Yabe-Nishimura NOX1/nicotinamide adenine dinucleotide phosphate, reduced form (NADPH) oxidase promotes proliferation of stellate cells and aggravates liver fibrosis induced by bile duct ligation Hepatology 54 2011 949 958
-
(2011)
Hepatology
, vol.54
, pp. 949-958
-
-
Cui, W.H.1
Matsuno, K.2
Iwata, K.3
Ibi, M.4
Matsumoto, M.5
Zhang, J.6
Zhu, K.7
Katsuyama, M.8
Torok, N.J.9
Yabe-Nishimura, C.10
-
95
-
-
13044305289
-
PTEN modulates cell cycle progression and cell survival by regulating phosphatidylinositol 3,4,5,-trisphosphate and Akt protein kinase B signaling pathway
-
H. Sun, R. Lesche, D.M. Li, J. Liliental, H. Zhang, J. Gao, N. Gavrilova, B. Mueller, X. Liu, and H. Wu PTEN modulates cell cycle progression and cell survival by regulating phosphatidylinositol 3,4,5,-trisphosphate and Akt protein kinase B signaling pathway Proc. Natl. Acad. Sci. U. S. A. 96 1999 6199 6204
-
(1999)
Proc. Natl. Acad. Sci. U. S. A.
, vol.96
, pp. 6199-6204
-
-
Sun, H.1
Lesche, R.2
Li, D.M.3
Liliental, J.4
Zhang, H.5
Gao, J.6
Gavrilova, N.7
Mueller, B.8
Liu, X.9
Wu, H.10
-
96
-
-
70350497348
-
FoxOs cooperatively regulate diverse pathways governing neural stem cell homeostasis
-
J.H. Paik, Z.H. Ding, R. Narurkar, S. Ramkissoon, F. Muller, W.S. Kamoun, S.S. Chae, H.W. Zheng, H.Q. Ying, J. Mahoney, D. Hiller, S. Jiang, A. Protopopov, W.H. Wong, L. Chin, K.L. Ligon, and R.A. DePinho FoxOs cooperatively regulate diverse pathways governing neural stem cell homeostasis Cell Stem Cell 5 2009 540 553
-
(2009)
Cell Stem Cell
, vol.5
, pp. 540-553
-
-
Paik, J.H.1
Ding, Z.H.2
Narurkar, R.3
Ramkissoon, S.4
Muller, F.5
Kamoun, W.S.6
Chae, S.S.7
Zheng, H.W.8
Ying, H.Q.9
Mahoney, J.10
Hiller, D.11
Jiang, S.12
Protopopov, A.13
Wong, W.H.14
Chin, L.15
Ligon, K.L.16
Depinho, R.A.17
-
97
-
-
0035824396
-
Negative regulation of neural stem/progenitor cell proliferation by the Pten tumor suppressor gene in vivo
-
M. Groszer, R. Erickson, D.D. Scripture-Adams, R. Lesche, A. Trumpp, J.A. Zack, H.I. Kornblum, X. Liu, and H. Wu Negative regulation of neural stem/progenitor cell proliferation by the Pten tumor suppressor gene in vivo Science 294 2001 2186 2189
-
(2001)
Science
, vol.294
, pp. 2186-2189
-
-
Groszer, M.1
Erickson, R.2
Scripture-Adams, D.D.3
Lesche, R.4
Trumpp, A.5
Zack, J.A.6
Kornblum, H.I.7
Liu, X.8
Wu, H.9
-
98
-
-
30444455577
-
PTEN negatively regulates neural stem cell self-renewal by modulating G(0)-G(1) cell cycle entry
-
M. Groszer, R. Erickson, D.D. Scripture-Adams, J.D. Dougherty, J. Le Belle, J.A. Zack, D.H. Geschwind, X. Liu, H.I. Kornblum, and H. Wu PTEN negatively regulates neural stem cell self-renewal by modulating G(0)-G(1) cell cycle entry Proc. Natl. Acad. Sci. U. S. A. 103 2006 111 116
-
(2006)
Proc. Natl. Acad. Sci. U. S. A.
, vol.103
, pp. 111-116
-
-
Groszer, M.1
Erickson, R.2
Scripture-Adams, D.D.3
Dougherty, J.D.4
Le Belle, J.5
Zack, J.A.6
Geschwind, D.H.7
Liu, X.8
Kornblum, H.I.9
Wu, H.10
-
99
-
-
80052023895
-
NOX1/nicotinamide adenine dinucleotide phosphate, reduced form (NADPH) oxidase promotes proliferation of stellate cells and aggravates liver fibrosis induced by bile duct ligation
-
W.H. Cui, K. Matsuno, K. Iwata, M. Ibi, M. Matsumoto, J. Zhang, K. Zhu, M. Katsuyama, N.J. Torok, and C. Yabe-Nishimura NOX1/nicotinamide adenine dinucleotide phosphate, reduced form (NADPH) oxidase promotes proliferation of stellate cells and aggravates liver fibrosis induced by bile duct ligation Hepatology 54 2011 949 958
-
(2011)
Hepatology
, vol.54
, pp. 949-958
-
-
Cui, W.H.1
Matsuno, K.2
Iwata, K.3
Ibi, M.4
Matsumoto, M.5
Zhang, J.6
Zhu, K.7
Katsuyama, M.8
Torok, N.J.9
Yabe-Nishimura, C.10
-
100
-
-
0346749513
-
Glutaredoxin exerts an antiapoptotic effect by regulating the redox state of Akt
-
H. Murata, Y. Ihara, H. Nakamura, J. Yodoi, K. Sumikawa, and T. Kondo Glutaredoxin exerts an antiapoptotic effect by regulating the redox state of Akt J. Biol. Chem. 278 2003 50226 50233
-
(2003)
J. Biol. Chem.
, vol.278
, pp. 50226-50233
-
-
Murata, H.1
Ihara, Y.2
Nakamura, H.3
Yodoi, J.4
Sumikawa, K.5
Kondo, T.6
-
101
-
-
0142137134
-
Redox regulation of PI 3-kinase signalling via inactivation of PTEN
-
N.R. Leslie, D. Bennett, Y.E. Lindsay, H. Stewart, A. Gray, and C.P. Downes Redox regulation of PI 3-kinase signalling via inactivation of PTEN EMBO J. 22 2003 5501 5510
-
(2003)
EMBO J.
, vol.22
, pp. 5501-5510
-
-
Leslie, N.R.1
Bennett, D.2
Lindsay, Y.E.3
Stewart, H.4
Gray, A.5
Downes, C.P.6
-
103
-
-
84864603513
-
VCAM1 is essential to maintain the structure of the SVZ niche and acts as an environmental sensor to regulate SVZ lineage progression
-
E. Kokovay, Y. Wang, G. Kusek, R. Wurster, P. Lederman, N. Lowry, Q. Shen, and S. Temple VCAM1 is essential to maintain the structure of the SVZ niche and acts as an environmental sensor to regulate SVZ lineage progression Cell Stem Cell 11 2012 220 230
-
(2012)
Cell Stem Cell
, vol.11
, pp. 220-230
-
-
Kokovay, E.1
Wang, Y.2
Kusek, G.3
Wurster, R.4
Lederman, P.5
Lowry, N.6
Shen, Q.7
Temple, S.8
-
104
-
-
84883448424
-
Nox4-generated superoxide drives Angiotensin II-induced neural stem cell proliferation
-
E. Topchiy, E. Panzhinskiy, W.S.T. Griffin, S.W. Barger, M. Das, and W.M. Zawada Nox4-generated superoxide drives Angiotensin II-induced neural stem cell proliferation Dev. Neurosci. 35 2013 293 305
-
(2013)
Dev. Neurosci.
, vol.35
, pp. 293-305
-
-
Topchiy, E.1
Panzhinskiy, E.2
Griffin, W.S.T.3
Barger, S.W.4
Das, M.5
Zawada, W.M.6
-
105
-
-
84877741780
-
Angiotensin II increased neuronal stem cell proliferation: Role of AT2R
-
J. Chao, L. Yang, S. Buch, and L. Gao Angiotensin II increased neuronal stem cell proliferation: role of AT2R PLos One 8 2013
-
(2013)
PLos One
, vol.8
-
-
Chao, J.1
Yang, L.2
Buch, S.3
Gao, L.4
-
106
-
-
46249086250
-
Nox4 and Nox2 NADPH oxidases mediate distinct cellular redox signaling responses to agonist stimulation
-
N. Anilkumar, R. Weber, M. Zhang, A. Brewer, and A.M. Shah Nox4 and Nox2 NADPH oxidases mediate distinct cellular redox signaling responses to agonist stimulation Arterioscler. Thromb. Vasc. Biol. 28 2008 1347 1354
-
(2008)
Arterioscler. Thromb. Vasc. Biol.
, vol.28
, pp. 1347-1354
-
-
Anilkumar, N.1
Weber, R.2
Zhang, M.3
Brewer, A.4
Shah, A.M.5
-
107
-
-
77952904851
-
Mammalian numb-interacting protein 1/dual oxidase maturation factor 1 directs neuronal fate in stem cells
-
K.A.M. Kennedy, E.A. Ostrakhovitch, S.D.E. Sandiford, T. Dayarathna, X.J. Xie, E.Y.L. Waese, W.Y. Chang, Q.P. Feng, I.S. Skerjanc, W.L. Stanford, and S.S.C. Li Mammalian numb-interacting protein 1/dual oxidase maturation factor 1 directs neuronal fate in stem cells J. Biol. Chem. 285 2010 17974 17985
-
(2010)
J. Biol. Chem.
, vol.285
, pp. 17974-17985
-
-
Kennedy, K.A.M.1
Ostrakhovitch, E.A.2
Sandiford, S.D.E.3
Dayarathna, T.4
Xie, X.J.5
Waese, E.Y.L.6
Chang, W.Y.7
Feng, Q.P.8
Skerjanc, I.S.9
Stanford, W.L.10
Li, S.S.C.11
-
108
-
-
0036195822
-
Preferential inhibition of the plasma membrane NADH oxidase (NOX) activity by diphenyleneiodonium chloride with NADPH as donor
-
D.J. Morre Preferential inhibition of the plasma membrane NADH oxidase (NOX) activity by diphenyleneiodonium chloride with NADPH as donor Antioxid. Redox Signal. 4 2002 207 212
-
(2002)
Antioxid. Redox Signal.
, vol.4
, pp. 207-212
-
-
Morre, D.J.1
-
109
-
-
84861534727
-
Novel role of NOX in supporting aerobic glycolysis in cancer cells with mitochondrial dysfunction and as a potential target for cancer therapy
-
W.Q. Lu, Y.M. Hu, G. Chen, Z. Chen, H. Zhang, F. Wang, L. Feng, H. Pelicano, H. Wang, M.J. Keating, J.S. Liu, W. McKeehan, H.M. Wang, Y.D. Luo, and P. Huang Novel role of NOX in supporting aerobic glycolysis in cancer cells with mitochondrial dysfunction and as a potential target for cancer therapy PLoS Biol. 10 2012
-
(2012)
PLoS Biol.
, vol.10
-
-
Lu, W.Q.1
Hu, Y.M.2
Chen, G.3
Chen, Z.4
Zhang, H.5
Wang, F.6
Feng, L.7
Pelicano, H.8
Wang, H.9
Keating, M.J.10
Liu, J.S.11
McKeehan, W.12
Wang, H.M.13
Luo, Y.D.14
Huang, P.15
-
110
-
-
68549133582
-
Wnt signaling and stem cell control
-
R. Nusse, C. Fuerer, W. Ching, K. Harnish, C. Logan, A. Zeng, D. ten Berge, and Y. Kalani Wnt signaling and stem cell control Cold Spring Harb. Symp. Quant. Biol. 73 2008 59 66
-
(2008)
Cold Spring Harb. Symp. Quant. Biol.
, vol.73
, pp. 59-66
-
-
Nusse, R.1
Fuerer, C.2
Ching, W.3
Harnish, K.4
Logan, C.5
Zeng, A.6
Ten Berge, D.7
Kalani, Y.8
-
111
-
-
84873185664
-
Stem cells living with a Notch
-
U. Koch, R. Lehal, and F. Radtke Stem cells living with a Notch Development 140 2013 689 704
-
(2013)
Development
, vol.140
, pp. 689-704
-
-
Koch, U.1
Lehal, R.2
Radtke, F.3
-
112
-
-
7244253081
-
Nrf2-Keap1 defines a physiologically important stress response mechanism
-
H. Motohashi, and M. Yamamoto Nrf2-Keap1 defines a physiologically important stress response mechanism Trends Mol. Med. 10 2004 549 557
-
(2004)
Trends Mol. Med.
, vol.10
, pp. 549-557
-
-
Motohashi, H.1
Yamamoto, M.2
-
113
-
-
4544294365
-
The Keap1-BTB protein is an adaptor that bridges Nrf2 to a Cul3-based E3 ligase: Oxidative stress sensing by a Cul3-Keap1 ligase
-
S.B. Cullinan, J.D. Gordan, J.O. Jin, J.W. Harper, and J.A. Diehl The Keap1-BTB protein is an adaptor that bridges Nrf2 to a Cul3-based E3 ligase: oxidative stress sensing by a Cul3-Keap1 ligase Mol. Cell. Biol. 24 2004 8477 8486
-
(2004)
Mol. Cell. Biol.
, vol.24
, pp. 8477-8486
-
-
Cullinan, S.B.1
Gordan, J.D.2
Jin, J.O.3
Harper, J.W.4
Diehl, J.A.5
-
114
-
-
23844475091
-
Nuclear import and export signals in control of Nrf2
-
A.K. Jain, D.A. Bloom, and A.K. Jaiswal Nuclear import and export signals in control of Nrf2 J. Biol. Chem. 280 2005 29158 29168
-
(2005)
J. Biol. Chem.
, vol.280
, pp. 29158-29168
-
-
Jain, A.K.1
Bloom, D.A.2
Jaiswal, A.K.3
-
115
-
-
59849113546
-
Molecular mechanisms of Nrf2-mediated antioxidant response
-
W.G. Li, and A.N. Kong Molecular mechanisms of Nrf2-mediated antioxidant response Mol. Carcinog. 48 2009 91 104
-
(2009)
Mol. Carcinog.
, vol.48
, pp. 91-104
-
-
Li, W.G.1
Kong, A.N.2
-
116
-
-
0031577292
-
An Nrf2 small Maf heterodimer mediates the induction of phase II detoxifying enzyme genes through antioxidant response elements
-
K. Itoh, T. Chiba, S. Takahashi, T. Ishii, K. Igarashi, Y. Katoh, T. Oyake, N. Hayashi, K. Satoh, I. Hatayama, M. Yamamoto, and Y. Nabeshima An Nrf2 small Maf heterodimer mediates the induction of phase II detoxifying enzyme genes through antioxidant response elements Biochem. Biophys. Res. Commun. 236 1997 313 322
-
(1997)
Biochem. Biophys. Res. Commun.
, vol.236
, pp. 313-322
-
-
Itoh, K.1
Chiba, T.2
Takahashi, S.3
Ishii, T.4
Igarashi, K.5
Katoh, Y.6
Oyake, T.7
Hayashi, N.8
Satoh, K.9
Hatayama, I.10
Yamamoto, M.11
Nabeshima, Y.12
-
117
-
-
1942520367
-
Nrf2 signaling in coordinated activation of antioxidant gene expression
-
A.K. Jaiswal Nrf2 signaling in coordinated activation of antioxidant gene expression Free Radic. Biol. Med. 36 2004 1199 1207
-
(2004)
Free Radic. Biol. Med.
, vol.36
, pp. 1199-1207
-
-
Jaiswal, A.K.1
-
118
-
-
84863518914
-
DJ-1 induces thioredoxin 1 expression through the Nrf2 pathway
-
J.Y. Im, K.W. Lee, J.M. Woo, E. Junn, and M.M. Mouradian DJ-1 induces thioredoxin 1 expression through the Nrf2 pathway Hum. Mol. Genet. 21 2012 3013 3024
-
(2012)
Hum. Mol. Genet.
, vol.21
, pp. 3013-3024
-
-
Im, J.Y.1
Lee, K.W.2
Woo, J.M.3
Junn, E.4
Mouradian, M.M.5
-
119
-
-
77956640097
-
Regulation of Notch1 signaling by Nrf2: Implications for tissue regeneration
-
N. Wakabayashi, S. Shin, S.L. Slocum, E.S. Agoston, J. Wakabayashi, M.K. Kwak, V. Misra, S. Biswal, M. Yamamoto, and T.W. Kensler Regulation of Notch1 signaling by Nrf2: implications for tissue regeneration Sci. Signal. 3 2010
-
(2010)
Sci. Signal.
, vol.3
-
-
Wakabayashi, N.1
Shin, S.2
Slocum, S.L.3
Agoston, E.S.4
Wakabayashi, J.5
Kwak, M.K.6
Misra, V.7
Biswal, S.8
Yamamoto, M.9
Kensler, T.W.10
-
120
-
-
84893836947
-
NRF2-mediated Notch pathway activation enhances hematopoietic reconstitution following myelosuppressive radiation
-
J.H. Kim, R.K. Thimmulappa, V. Kumar, W.C. Cui, S. Kumar, P. Kombairaju, H. Zhang, J. Margolick, W. Matsui, T. Macvittie, S.V. Malhotra, and S. Biswal NRF2-mediated Notch pathway activation enhances hematopoietic reconstitution following myelosuppressive radiation J. Clin. Investig. 124 2014 730 741
-
(2014)
J. Clin. Investig.
, vol.124
, pp. 730-741
-
-
Kim, J.H.1
Thimmulappa, R.K.2
Kumar, V.3
Cui, W.C.4
Kumar, S.5
Kombairaju, P.6
Zhang, H.7
Margolick, J.8
Matsui, W.9
Macvittie, T.10
Malhotra, S.V.11
Biswal, S.12
-
121
-
-
84905905334
-
Dynamic changes in intracellular ROS levels regulate airway basal stem cell homeostasis through Nrf2-dependent Notch signaling
-
M.K. Paul, B. Bisht, D.O. Darmawan, R. Chiou, V.L. Ha, W.D. Wallace, A.T. Chon, A.E. Hegab, T. Grogan, D.A. Elashoff, J.A. Alva-Ornelas, and B.N. Gomperts Dynamic changes in intracellular ROS levels regulate airway basal stem cell homeostasis through Nrf2-dependent Notch signaling Cell Stem Cell 15 2014 199 214
-
(2014)
Cell Stem Cell
, vol.15
, pp. 199-214
-
-
Paul, M.K.1
Bisht, B.2
Darmawan, D.O.3
Chiou, R.4
Ha, V.L.5
Wallace, W.D.6
Chon, A.T.7
Hegab, A.E.8
Grogan, T.9
Elashoff, D.A.10
Alva-Ornelas, J.A.11
Gomperts, B.N.12
-
122
-
-
84892956594
-
Notch-Nrf2 axis: Regulation of Nrf2 gene expression and cytoprotection by Notch signaling
-
N. Wakabayashi, J.J. Skoko, D.V. Chartoumpekis, S. Kimura, S.L. Slocum, K. Noda, D.L. Palliyaguru, M. Fujimuro, P.A. Boley, Y. Tanaka, N. Shigemura, S. Biswal, M. Yamamoto, and T.W. Kensler Notch-Nrf2 axis: regulation of Nrf2 gene expression and cytoprotection by Notch signaling Mol. Cell. Biol. 34 2014 653 663
-
(2014)
Mol. Cell. Biol.
, vol.34
, pp. 653-663
-
-
Wakabayashi, N.1
Skoko, J.J.2
Chartoumpekis, D.V.3
Kimura, S.4
Slocum, S.L.5
Noda, K.6
Palliyaguru, D.L.7
Fujimuro, M.8
Boley, P.A.9
Tanaka, Y.10
Shigemura, N.11
Biswal, S.12
Yamamoto, M.13
Kensler, T.W.14
-
123
-
-
84902578456
-
Nrf2 regulates neurogenesis and protects neural progenitor cells against a beta toxicity
-
V. Karkkainen, Y. Pomeshchik, E. Savchenko, H. Dhungana, A. Kurronen, S. Lehtonen, N. Naumenko, P. Tavi, A.L. Levonen, M. Yamamoto, T. Malm, J. Magga, K.M. Kanninen, and J. Koistinaho Nrf2 regulates neurogenesis and protects neural progenitor cells against a beta toxicity Stem Cells 32 2014 1904 1916
-
(2014)
Stem Cells
, vol.32
, pp. 1904-1916
-
-
Karkkainen, V.1
Pomeshchik, Y.2
Savchenko, E.3
Dhungana, H.4
Kurronen, A.5
Lehtonen, S.6
Naumenko, N.7
Tavi, P.8
Levonen, A.L.9
Yamamoto, M.10
Malm, T.11
Magga, J.12
Kanninen, K.M.13
Koistinaho, J.14
-
124
-
-
84876917760
-
Thioredoxins glutaredoxins, and peroxiredoxins-molecular mechanisms and health significance: From cofactors to antioxidants to redox signaling
-
E.M. Hanschmann, J.R. Godoy, C. Berndt, C. Hudemann, and C.H. Lillig Thioredoxins glutaredoxins, and peroxiredoxins-molecular mechanisms and health significance: from cofactors to antioxidants to redox signaling Antioxid. Redox Signal. 19 2013 1539 1605
-
(2013)
Antioxid. Redox Signal.
, vol.19
, pp. 1539-1605
-
-
Hanschmann, E.M.1
Godoy, J.R.2
Berndt, C.3
Hudemann, C.4
Lillig, C.H.5
-
125
-
-
84897444272
-
2 generation
-
2 generation J. Biol. Chem. 289 2014 8735 8741
-
(2014)
J. Biol. Chem.
, vol.289
, pp. 8735-8741
-
-
Sies, H.1
-
126
-
-
2042470971
-
Early embryonic lethality caused by targeted disruption of the mouse thioredoxin gene
-
M. Matsui, M. Oshima, H. Oshima, K. Takaku, T. Maruyama, J. Yodoi, and M.M. Taketo Early embryonic lethality caused by targeted disruption of the mouse thioredoxin gene Dev. Biol. 178 1996 179 185
-
(1996)
Dev. Biol.
, vol.178
, pp. 179-185
-
-
Matsui, M.1
Oshima, M.2
Oshima, H.3
Takaku, K.4
Maruyama, T.5
Yodoi, J.6
Taketo, M.M.7
-
127
-
-
2942566694
-
Redox regulation of the embryonic stem cell transcription factor Oct-4 by thioredoxin
-
Y. Guo, L. Einhorn, M. Kelley, K. Hirota, J. Yodoi, R. Reinbold, H. Scholer, H. Ramsey, and R. Hromas Redox regulation of the embryonic stem cell transcription factor Oct-4 by thioredoxin Stem Cells 22 2004 259 264
-
(2004)
Stem Cells
, vol.22
, pp. 259-264
-
-
Guo, Y.1
Einhorn, L.2
Kelley, M.3
Hirota, K.4
Yodoi, J.5
Reinbold, R.6
Scholer, H.7
Ramsey, H.8
Hromas, R.9
-
128
-
-
84874378247
-
Effects of thioredoxin-1 on neurogenesis after brain ischemia/reperfusion injury
-
F. Zhou, P.P. Liu, G.Y. Ying, X.D. Zhu, H. Shen, and G. Chen Effects of thioredoxin-1 on neurogenesis after brain ischemia/reperfusion injury CNS Neurosci. Ther. 19 2013 204 205
-
(2013)
CNS Neurosci. Ther.
, vol.19
, pp. 204-205
-
-
Zhou, F.1
Liu, P.P.2
Ying, G.Y.3
Zhu, X.D.4
Shen, H.5
Chen, G.6
-
129
-
-
84888313623
-
Recombinant human thioredoxin-1 promotes neurogenesis and facilitates cognitive recovery following cerebral ischemia in mice
-
L. Tian, H. Nie, Y. Zhang, Y. Chen, Z.W. Peng, M. Cai, H.D. Wei, P. Qin, H.L. Dong, and L.Z. Xiong Recombinant human thioredoxin-1 promotes neurogenesis and facilitates cognitive recovery following cerebral ischemia in mice Neuropharmacology 77 2014 453 464
-
(2014)
Neuropharmacology
, vol.77
, pp. 453-464
-
-
Tian, L.1
Nie, H.2
Zhang, Y.3
Chen, Y.4
Peng, Z.W.5
Cai, M.6
Wei, H.D.7
Qin, P.8
Dong, H.L.9
Xiong, L.Z.10
-
130
-
-
4143093730
-
Thioredoxin-1 binds to the C2 domain of PTEN inhibiting PTEN's lipid phosphatase activity and membrane binding: A mechanism for the functional loss of PTEN's tumor suppressor activity
-
E.J. Meuillet, D. Mahadevan, M. Berggren, A. Coon, and G. Powis Thioredoxin-1 binds to the C2 domain of PTEN inhibiting PTEN's lipid phosphatase activity and membrane binding: a mechanism for the functional loss of PTEN's tumor suppressor activity Arch. Biochem. Biophys. 429 2004 123 133
-
(2004)
Arch. Biochem. Biophys.
, vol.429
, pp. 123-133
-
-
Meuillet, E.J.1
Mahadevan, D.2
Berggren, M.3
Coon, A.4
Powis, G.5
-
131
-
-
0035824396
-
Negative regulation of neural stem/progenitor cell proliferation by the Pten tumor suppressor gene in vivo
-
M. Groszer, R. Erickson, D.D. Scripture-Adams, R. Lesche, A. Trumpp, J.A. Zack, H.I. Kornblum, X. Liu, and H. Wu Negative regulation of neural stem/progenitor cell proliferation by the Pten tumor suppressor gene in vivo Science 294 2001 2186 2189
-
(2001)
Science
, vol.294
, pp. 2186-2189
-
-
Groszer, M.1
Erickson, R.2
Scripture-Adams, D.D.3
Lesche, R.4
Trumpp, A.5
Zack, J.A.6
Kornblum, H.I.7
Liu, X.8
Wu, H.9
-
132
-
-
46349108887
-
The role of thioredoxin reductases in brain development
-
J. Soerensen, C. Jakupoglu, H. Beck, H. Forster, J. Schmidt, W. Schmahl, U. Schweizer, M. Conrad, and M. Brielmeier The role of thioredoxin reductases in brain development PLos One 3 2008
-
(2008)
PLos One
, vol.3
-
-
Soerensen, J.1
Jakupoglu, C.2
Beck, H.3
Forster, H.4
Schmidt, J.5
Schmahl, W.6
Schweizer, U.7
Conrad, M.8
Brielmeier, M.9
-
133
-
-
84875720244
-
Glutaredoxins in thiol/disulfide exchange
-
C.H. Lillig, and C. Berndt Glutaredoxins in thiol/disulfide exchange Antioxid. Redox Signal. 18 2013 1654 1665
-
(2013)
Antioxid. Redox Signal.
, vol.18
, pp. 1654-1665
-
-
Lillig, C.H.1
Berndt, C.2
-
134
-
-
84890285329
-
Glutaredoxin regulates vascular development by reversible glutathionylation of sirtuin 1
-
L. Brautigam, L.D.E. Jensen, G. Poschmann, S. Nystrom, S. Bannenberg, K. Dreij, K. Lepka, T. Prozorovski, S.J. Montano, O. Aktas, P. Uhlen, K. Stuhler, Y.H. Cao, A. Holmgren, and C. Berndt Glutaredoxin regulates vascular development by reversible glutathionylation of sirtuin 1 Proc. Natl. Acad. Sci. U. S. A. 110 2013 20057 20062
-
(2013)
Proc. Natl. Acad. Sci. U. S. A.
, vol.110
, pp. 20057-20062
-
-
Brautigam, L.1
Jensen, L.D.E.2
Poschmann, G.3
Nystrom, S.4
Bannenberg, S.5
Dreij, K.6
Lepka, K.7
Prozorovski, T.8
Montano, S.J.9
Aktas, O.10
Uhlen, P.11
Stuhler, K.12
Cao, Y.H.13
Holmgren, A.14
Berndt, C.15
-
135
-
-
2142815107
-
Regeneration of peroxiredoxins by p53-regulated sestrins, homologs of bacterial AhpD
-
A.V. Budanov, A.A. Sablina, E. Feinstein, E.V. Koonin, and P.M. Chumakov Regeneration of peroxiredoxins by p53-regulated sestrins, homologs of bacterial AhpD Science 304 2004 596 600
-
(2004)
Science
, vol.304
, pp. 596-600
-
-
Budanov, A.V.1
Sablina, A.A.2
Feinstein, E.3
Koonin, E.V.4
Chumakov, P.M.5
-
136
-
-
15044362438
-
Intracellular messenger function of hydrogen peroxide and its regulation by peroxiredoxins
-
S.G. Rhee, S.W. Kang, W. Jeong, T.S. Chang, K.S. Yang, and H.A. Woo Intracellular messenger function of hydrogen peroxide and its regulation by peroxiredoxins Curr. Opin. Cell Biol. 17 2005 183 189
-
(2005)
Curr. Opin. Cell Biol.
, vol.17
, pp. 183-189
-
-
Rhee, S.G.1
Kang, S.W.2
Jeong, W.3
Chang, T.S.4
Yang, K.S.5
Woo, H.A.6
-
137
-
-
0037067763
-
Regulation of peroxiredoxin i activity by Cdc2-mediated phosphorylation
-
T.S. Chang, W. Jeong, S.Y. Choi, S.Q. Yu, S.W. Kang, and S.G. Rhee Regulation of peroxiredoxin I activity by Cdc2-mediated phosphorylation J. Biol. Chem. 277 2002 25370 25376
-
(2002)
J. Biol. Chem.
, vol.277
, pp. 25370-25376
-
-
Chang, T.S.1
Jeong, W.2
Choi, S.Y.3
Yu, S.Q.4
Kang, S.W.5
Rhee, S.G.6
-
138
-
-
84896335013
-
Dominant role of peroxiredoxin/JNK axis in stemness regulation during neurogenesis from embryonic stem cells
-
S.U. Kim, Y.H. Park, J.M. Kim, H.N. Sun, I.S. Song, S.M. Huang, S.H. Lee, J.I. Chae, S. Hong, S. Choi, S.C. Choi, T.H. Lee, S.W. Kang, S.G. Rhee, K.T. Chang, S.H. Lee, D.Y. Yu, and D.S. Lee Dominant role of peroxiredoxin/JNK axis in stemness regulation during neurogenesis from embryonic stem cells Stem Cells 32 2014 998 1011
-
(2014)
Stem Cells
, vol.32
, pp. 998-1011
-
-
Kim, S.U.1
Park, Y.H.2
Kim, J.M.3
Sun, H.N.4
Song, I.S.5
Huang, S.M.6
Lee, S.H.7
Chae, J.I.8
Hong, S.9
Choi, S.10
Choi, S.C.11
Lee, T.H.12
Kang, S.W.13
Rhee, S.G.14
Chang, K.T.15
Lee, S.H.16
Yu, D.Y.17
Lee, D.S.18
-
139
-
-
70149096624
-
The antioxidant enzyme Prdx1 controls neuronal differentiation by thiol-redox-dependent activation of GDE2
-
Y. Yan, P. Sabharwal, M. Rao, and S. Sockanathan The antioxidant enzyme Prdx1 controls neuronal differentiation by thiol-redox-dependent activation of GDE2 Cell 138 2009 1209 1221
-
(2009)
Cell
, vol.138
, pp. 1209-1221
-
-
Yan, Y.1
Sabharwal, P.2
Rao, M.3
Sockanathan, S.4
-
140
-
-
25844477017
-
Transmembrane protein GDE2 induces motor neuron differentiation in vivo
-
M. Rao, and S. Sockanathan Transmembrane protein GDE2 induces motor neuron differentiation in vivo Science 309 2005 2212 2215
-
(2005)
Science
, vol.309
, pp. 2212-2215
-
-
Rao, M.1
Sockanathan, S.2
-
141
-
-
84866515115
-
Gde2 regulates cortical neuronal identity by controlling the timing of cortical progenitor differentiation
-
M. Rodriguez, J. Choi, S. Park, and S. Sockanathan Gde2 regulates cortical neuronal identity by controlling the timing of cortical progenitor differentiation Development 139 2012 3870 3879
-
(2012)
Development
, vol.139
, pp. 3870-3879
-
-
Rodriguez, M.1
Choi, J.2
Park, S.3
Sockanathan, S.4
-
142
-
-
0032197184
-
A novel nuclear member of the thioredoxin superfamily
-
B.J. Laughner, P.C. Sehnke, and R.J. Ferl A novel nuclear member of the thioredoxin superfamily Plant Physiol. 118 1998 987 996
-
(1998)
Plant Physiol.
, vol.118
, pp. 987-996
-
-
Laughner, B.J.1
Sehnke, P.C.2
Ferl, R.J.3
-
143
-
-
33646858497
-
The thioredoxin-related redox-regulating protein nucleoredoxin inhibits Wnt-beta-catenin signalling through dishevelled
-
Y. Funato, T. Michiue, M. Asashima, and H. Miki The thioredoxin-related redox-regulating protein nucleoredoxin inhibits Wnt-beta-catenin signalling through dishevelled Nat. Cell Biol. 8 2006 501-U135
-
(2006)
Nat. Cell Biol.
, vol.8
, pp. 501-U135
-
-
Funato, Y.1
Michiue, T.2
Asashima, M.3
Miki, H.4
-
144
-
-
50849097513
-
Nucleoredoxin regulates the Wnt/planar cell polarity pathway in Xenopus
-
Y. Funato, T. Michiue, T. Terabayashi, A. Yukita, H. Danno, M. Asashima, and H. Miki Nucleoredoxin regulates the Wnt/planar cell polarity pathway in Xenopus Genes to Cells 13 2008 965 975
-
(2008)
Genes to Cells
, vol.13
, pp. 965-975
-
-
Funato, Y.1
Michiue, T.2
Terabayashi, T.3
Yukita, A.4
Danno, H.5
Asashima, M.6
Miki, H.7
-
145
-
-
78149358805
-
Nucleoredoxin sustains Wnt/beta-catenin signaling by retaining a pool of inactive dishevelled protein
-
Y. Funato, T. Terabayashi, R. Sakamoto, D. Okuzaki, H. Ichise, H. Nojima, N. Yoshida, and H. Miki Nucleoredoxin sustains Wnt/beta-catenin signaling by retaining a pool of inactive dishevelled protein Curr. Biol. 20 2010 1945 1952
-
(2010)
Curr. Biol.
, vol.20
, pp. 1945-1952
-
-
Funato, Y.1
Terabayashi, T.2
Sakamoto, R.3
Okuzaki, D.4
Ichise, H.5
Nojima, H.6
Yoshida, N.7
Miki, H.8
-
146
-
-
3242889925
-
The Wnt/beta-catenin pathway directs neuronal differentiation of cortical neural precursor cells
-
Y. Hirabayashi, Y. Itoh, H. Tabata, K. Nakajima, T. Akiyama, N. Masuyama, and Y. Gotoh The Wnt/beta-catenin pathway directs neuronal differentiation of cortical neural precursor cells Development 131 2004 2791 2801
-
(2004)
Development
, vol.131
, pp. 2791-2801
-
-
Hirabayashi, Y.1
Itoh, Y.2
Tabata, H.3
Nakajima, K.4
Akiyama, T.5
Masuyama, N.6
Gotoh, Y.7
-
147
-
-
55949121679
-
Wnt-mediated self-renewal of neural stem/progenitor cells
-
M.Y. Kalani, S.H. Cheshier, B.J. Cord, S.R. Bababeygy, H. Vogel, I.L. Weissman, T.D. Palmer, and R. Nusse Wnt-mediated self-renewal of neural stem/progenitor cells Proc. Natl. Acad. Sci. U. S. A. 105 2008 16970 16975
-
(2008)
Proc. Natl. Acad. Sci. U. S. A.
, vol.105
, pp. 16970-16975
-
-
Kalani, M.Y.1
Cheshier, S.H.2
Cord, B.J.3
Bababeygy, S.R.4
Vogel, H.5
Weissman, I.L.6
Palmer, T.D.7
Nusse, R.8
-
148
-
-
78149302213
-
Orphan nuclear receptor TLX activates Wnt/beta-catenin signalling to stimulate neural stem cell proliferation and self-renewal
-
Q.H. Qu, G.Q. Sun, W.W. Li, S. Yang, P. Ye, C.N.A. Zhao, R.T. Yu, F.H. Gage, R.M. Evans, and Y.H. Shi Orphan nuclear receptor TLX activates Wnt/beta-catenin signalling to stimulate neural stem cell proliferation and self-renewal Nat. Cell Biol. 12 2010 31-U80
-
(2010)
Nat. Cell Biol.
, vol.12
, pp. 31-U80
-
-
Qu, Q.H.1
Sun, G.Q.2
Li, W.W.3
Yang, S.4
Ye, P.5
Zhao, C.N.A.6
Yu, R.T.7
Gage, F.H.8
Evans, R.M.9
Shi, Y.H.10
-
149
-
-
77952634453
-
NADPH oxidase 1 modulates WNT and NOTCH1 signaling to control the fate of proliferative progenitor cells in the colon
-
N. Coant, S. Ben Mkaddem, E. Pedruzzi, C. Guichard, X. Treton, R. Ducroc, J.N. Freund, D. Cazals-Hatem, Y. Bouhnik, P.L. Woerther, D. Skurnik, A. Grodet, M. Fay, D. Biard, T. Lesuffleur, C. Deffert, R. Moreau, A. Groyer, K.H. Krause, F. Daniel, and E. Ogier-Denis NADPH oxidase 1 modulates WNT and NOTCH1 signaling to control the fate of proliferative progenitor cells in the colon Mol. Cell. Biol. 30 2010 2636 2650
-
(2010)
Mol. Cell. Biol.
, vol.30
, pp. 2636-2650
-
-
Coant, N.1
Ben Mkaddem, S.2
Pedruzzi, E.3
Guichard, C.4
Treton, X.5
Ducroc, R.6
Freund, J.N.7
Cazals-Hatem, D.8
Bouhnik, Y.9
Woerther, P.L.10
Skurnik, D.11
Grodet, A.12
Fay, M.13
Biard, D.14
Lesuffleur, T.15
Deffert, C.16
Moreau, R.17
Groyer, A.18
Krause, K.H.19
Daniel, F.20
Ogier-Denis, E.21
more..
-
150
-
-
84860893918
-
A crucial role for Nox 1 in redox-dependent regulation of Wnt-beta-catenin signaling
-
S. Kajla, A.S. Mondol, A. Nagasawa, Y.G. Zhang, M. Kato, K. Matsuno, C. Yabe-Nishimura, and T. Kamata A crucial role for Nox 1 in redox-dependent regulation of Wnt-beta-catenin signaling FASEB J. 26 2012 2049 2059
-
(2012)
FASEB J.
, vol.26
, pp. 2049-2059
-
-
Kajla, S.1
Mondol, A.S.2
Nagasawa, A.3
Zhang, Y.G.4
Kato, M.5
Matsuno, K.6
Yabe-Nishimura, C.7
Kamata, T.8
-
151
-
-
3242883359
-
Hydrogen peroxide negatively modulates Wnt signaling through downregulation of beta-catenin
-
S.Y. Shin, C.G. Kim, E.H. Jho, M.S. Rho, Y.S. Kim, Y.H. Kim, and Y.H. Lee Hydrogen peroxide negatively modulates Wnt signaling through downregulation of beta-catenin Cancer Lett. 212 2004 225 231
-
(2004)
Cancer Lett.
, vol.212
, pp. 225-231
-
-
Shin, S.Y.1
Kim, C.G.2
Jho, E.H.3
Rho, M.S.4
Kim, Y.S.5
Kim, Y.H.6
Lee, Y.H.7
-
152
-
-
30944459873
-
Involvement of glycogen synthase kinase-3 beta in hydrogen peroxide-induced suppression of Tcf/Lef-dependent transcriptional activity
-
S.Y. Shin, B.R. Chin, Y.H. Lee, and J.H. Kim Involvement of glycogen synthase kinase-3 beta in hydrogen peroxide-induced suppression of Tcf/Lef-dependent transcriptional activity Cell. Signal. 18 2006 601 607
-
(2006)
Cell. Signal.
, vol.18
, pp. 601-607
-
-
Shin, S.Y.1
Chin, B.R.2
Lee, Y.H.3
Kim, J.H.4
-
153
-
-
0030738589
-
Alternative respiratory pathways of Escherichia coli: Energetics and transcriptional regulation in response to electron acceptors
-
G. Unden, and J. Bongaerts Alternative respiratory pathways of Escherichia coli: energetics and transcriptional regulation in response to electron acceptors Biochim. Biophys. Acta Bioenerg. 1320 1997 217 234
-
(1997)
Biochim. Biophys. Acta Bioenerg.
, vol.1320
, pp. 217-234
-
-
Unden, G.1
Bongaerts, J.2
-
154
-
-
84860697620
-
Understanding mitochondrial complex i assembly in health and disease
-
M. Mimaki, X.N. Wang, M. McKenzie, D.R. Thorburn, and M.T. Ryan Understanding mitochondrial complex I assembly in health and disease Biochim. Biophys. Acta Bioenerg. 1817 2012 851 862
-
(2012)
Biochim. Biophys. Acta Bioenerg.
, vol.1817
, pp. 851-862
-
-
Mimaki, M.1
Wang, X.N.2
McKenzie, M.3
Thorburn, D.R.4
Ryan, M.T.5
-
155
-
-
84903276373
-
Specific ablation of Nampt in adult neural stem cells recapitulates their functional defects during aging
-
L.R. Stein, and S. Imai Specific ablation of Nampt in adult neural stem cells recapitulates their functional defects during aging EMBO J. 33 2014 1321 1340
-
(2014)
EMBO J.
, vol.33
, pp. 1321-1340
-
-
Stein, L.R.1
Imai, S.2
-
156
-
-
34447632818
-
Transcriptional regulation by C-terminal binding proteins
-
G. Chinnadurai Transcriptional regulation by C-terminal binding proteins Int. J. Biochem. Cell Biol. 39 2007 1593 1607
-
(2007)
Int. J. Biochem. Cell Biol.
, vol.39
, pp. 1593-1607
-
-
Chinnadurai, G.1
-
157
-
-
0028838348
-
Molecular-cloning and characterization of a cellular phosphoprotein that interacts with a conserved C-terminal domain of adenovirus E1A involved in negative modulation of oncogenic transformation
-
U. Schaeper, J.M. Boyd, S. Verma, E. Uhlmann, T. Subramanian, and G. Chinadurai Molecular-cloning and characterization of a cellular phosphoprotein that interacts with a conserved C-terminal domain of adenovirus E1A involved in negative modulation of oncogenic transformation Proc. Natl. Acad. Sci. U. S. A. 92 1995 10467 10471
-
(1995)
Proc. Natl. Acad. Sci. U. S. A.
, vol.92
, pp. 10467-10471
-
-
Schaeper, U.1
Boyd, J.M.2
Verma, S.3
Uhlmann, E.4
Subramanian, T.5
Chinadurai, G.6
-
158
-
-
0036810314
-
Transcription corepressor CtBP is an NAD(+)-regulated dehydrogenase
-
V. Kumar, J.E. Carlson, K.A. Ohgi, T.A. Edwards, D.W. Rose, C.R. Escalante, M.G. Rosenfeld, and A.K. Aggarwal Transcription corepressor CtBP is an NAD(+)-regulated dehydrogenase Mol. Cell 10 2002 857 869
-
(2002)
Mol. Cell
, vol.10
, pp. 857-869
-
-
Kumar, V.1
Carlson, J.E.2
Ohgi, K.A.3
Edwards, T.A.4
Rose, D.W.5
Escalante, C.R.6
Rosenfeld, M.G.7
Aggarwal, A.K.8
-
159
-
-
0037040581
-
Regulation of corepressor function by nuclear NADH
-
Q.H. Zhang, D.W. Piston, and R.H. Goodman Regulation of corepressor function by nuclear NADH Science 295 2002 1895 1897
-
(2002)
Science
, vol.295
, pp. 1895-1897
-
-
Zhang, Q.H.1
Piston, D.W.2
Goodman, R.H.3
-
160
-
-
33750308598
-
Role of the C-terminal binding protein PXDLS motif binding cleft in protein interactions and transcriptional repression
-
K.G.R. Quinlan, A. Verger, A. Kwok, S.H.Y. Lee, J. Perdomo, M. Nardini, M. Bolognesi, and M. Crossley Role of the C-terminal binding protein PXDLS motif binding cleft in protein interactions and transcriptional repression Mol. Cell. Biol. 26 2006 8202 8213
-
(2006)
Mol. Cell. Biol.
, vol.26
, pp. 8202-8213
-
-
Quinlan, K.G.R.1
Verger, A.2
Kwok, A.3
Lee, S.H.Y.4
Perdomo, J.5
Nardini, M.6
Bolognesi, M.7
Crossley, M.8
-
161
-
-
33745186109
-
Mechanisms directing the nuclear localization of the CtBP family proteins
-
A. Verger, K.G. Quinlan, L.A. Crofts, S. Spano, D. Corda, E.P. Kable, F. Braet, and M. Crossley Mechanisms directing the nuclear localization of the CtBP family proteins Mol. Cell. Biol. 26 2006 4882 4894
-
(2006)
Mol. Cell. Biol.
, vol.26
, pp. 4882-4894
-
-
Verger, A.1
Quinlan, K.G.2
Crofts, L.A.3
Spano, S.4
Corda, D.5
Kable, E.P.6
Braet, F.7
Crossley, M.8
-
162
-
-
84874583084
-
Genome-wide profiles of CtBP link metabolism with genome stability and epithelial reprogramming in breast cancer
-
L.J. Di, J.S. Byun, M.M. Wong, C. Wakano, T. Taylor, S. Bilke, S. Baek, K. Hunter, H. Yang, M. Lee, C. Zvosec, G. Khramtsova, F. Cheng, C.M. Perou, C.R. Miller, R. Raab, O.I. Olopade, and K. Gardner Genome-wide profiles of CtBP link metabolism with genome stability and epithelial reprogramming in breast cancer Nat. Commun. 4 2013
-
(2013)
Nat. Commun.
, vol.4
-
-
Di, L.J.1
Byun, J.S.2
Wong, M.M.3
Wakano, C.4
Taylor, T.5
Bilke, S.6
Baek, S.7
Hunter, K.8
Yang, H.9
Lee, M.10
Zvosec, C.11
Khramtsova, G.12
Cheng, F.13
Perou, C.M.14
Miller, C.R.15
Raab, R.16
Olopade, O.I.17
Gardner, K.18
-
163
-
-
84924599017
-
CtBPs sense microenvironmental oxygen levels to regulate neural stem cell state
-
J.M. Dias, S. Ilkhanizadeh, E. Karaca, J.K. Duckworth, V. Lundin, M.G. Rosenfeld, J. Ericson, O. Hermanson, and A.I. Teixeira CtBPs sense microenvironmental oxygen levels to regulate neural stem cell state Cell Rep. 8 2014 665 670
-
(2014)
Cell Rep.
, vol.8
, pp. 665-670
-
-
Dias, J.M.1
Ilkhanizadeh, S.2
Karaca, E.3
Duckworth, J.K.4
Lundin, V.5
Rosenfeld, M.G.6
Ericson, J.7
Hermanson, O.8
Teixeira, A.I.9
-
164
-
-
79961059595
-
Smad6 promotes neuronal differentiation in the intermediate zone of the dorsal neural tube by inhibition of the Wnt/beta-catenin pathway
-
Z.H. Xie, Y.F. Chen, Z.F. Li, G. Bai, Y. Zhu, R. Yan, F.Z. Tan, Y.G. Chen, F. Guillemot, L. Li, and N.H. Jing Smad6 promotes neuronal differentiation in the intermediate zone of the dorsal neural tube by inhibition of the Wnt/beta-catenin pathway Proc. Natl. Acad. Sci. U. S. A. 108 2011 12119 12124
-
(2011)
Proc. Natl. Acad. Sci. U. S. A.
, vol.108
, pp. 12119-12124
-
-
Xie, Z.H.1
Chen, Y.F.2
Li, Z.F.3
Bai, G.4
Zhu, Y.5
Yan, R.6
Tan, F.Z.7
Chen, Y.G.8
Guillemot, F.9
Li, L.10
Jing, N.H.11
-
165
-
-
84924599017
-
CtBPs sense microenvironmental oxygen levels to regulate neural stem cell state
-
J.M. Dias, S. Ilkhanizadeh, E. Karaca, J.K. Duckworth, V. Lundin, M.G. Rosenfeld, J. Ericson, O. Hermanson, and A.I. Teixeira CtBPs sense microenvironmental oxygen levels to regulate neural stem cell state Cell Rep. 8 2014 665 670
-
(2014)
Cell Rep.
, vol.8
, pp. 665-670
-
-
Dias, J.M.1
Ilkhanizadeh, S.2
Karaca, E.3
Duckworth, J.K.4
Lundin, V.5
Rosenfeld, M.G.6
Ericson, J.7
Hermanson, O.8
Teixeira, A.I.9
-
166
-
-
0036314926
-
Overlapping and unique roles for C-terminal binding protein 1 (CtBP1) and CtBP2 during mouse development
-
J.D. Hildebrand, and P. Soriano Overlapping and unique roles for C-terminal binding protein 1 (CtBP1) and CtBP2 during mouse development Mol. Cell. Biol. 22 2002 5296 5307
-
(2002)
Mol. Cell. Biol.
, vol.22
, pp. 5296-5307
-
-
Hildebrand, J.D.1
Soriano, P.2
-
167
-
-
0038074398
-
HMG box transcription factor TCF-4's interaction with CtBP1 controls the expression of the Wnt target Axin2/Conductin in human embryonic kidney cells
-
T. Valenta, J. Lukas, and V. Korinek HMG box transcription factor TCF-4's interaction with CtBP1 controls the expression of the Wnt target Axin2/Conductin in human embryonic kidney cells Nucleic Acids Res. 31 2003 2369 2380
-
(2003)
Nucleic Acids Res.
, vol.31
, pp. 2369-2380
-
-
Valenta, T.1
Lukas, J.2
Korinek, V.3
-
168
-
-
0032808135
-
XCtBP is a XTcf-3 co-repressor with roles throughout Xenopus development
-
M. Brannon, J.D. Brown, R. Bates, D. Kimelman, and R.T. Moon XCtBP is a XTcf-3 co-repressor with roles throughout Xenopus development Development 126 1999 3159 3170
-
(1999)
Development
, vol.126
, pp. 3159-3170
-
-
Brannon, M.1
Brown, J.D.2
Bates, R.3
Kimelman, D.4
Moon, R.T.5
-
169
-
-
33745542960
-
C-terminal-binding protein directly activates and represses Wnt transcriptional targets in Drosophila
-
M. Fang, J. Li, T. Blauwkamp, C. Bhambhani, N. Campbell, and K.M. Cadigan C-terminal-binding protein directly activates and represses Wnt transcriptional targets in Drosophila EMBO J. 25 2006 2735 2745
-
(2006)
EMBO J.
, vol.25
, pp. 2735-2745
-
-
Fang, M.1
Li, J.2
Blauwkamp, T.3
Bhambhani, C.4
Campbell, N.5
Cadigan, K.M.6
-
170
-
-
7744246985
-
The APC tumor suppressor binds to C-terminal binding protein to divert nuclear beta-catenin from TCF
-
F. Hamada, and M. Bienz The APC tumor suppressor binds to C-terminal binding protein to divert nuclear beta-catenin from TCF Dev. Cell 7 2004 677 685
-
(2004)
Dev. Cell
, vol.7
, pp. 677-685
-
-
Hamada, F.1
Bienz, M.2
-
171
-
-
84863724873
-
Poly(ADP-ribose) and chromatin organization in DNA excision repair
-
F.R. Althaus Poly(ADP-ribose) and chromatin organization in DNA excision repair Br. J. Cancer 56 1987 176
-
(1987)
Br. J. Cancer
, vol.56
, pp. 176
-
-
Althaus, F.R.1
-
172
-
-
0031844311
-
XRCC1 is specifically associated with poly(ADP-ribose) polymerase and negatively regulates its activity following DNA damage
-
M. Masson, C. Niedergang, V. Schreiber, S. Muller, J. Menissier-de Murcia, and G. de Murcia XRCC1 is specifically associated with poly(ADP-ribose) polymerase and negatively regulates its activity following DNA damage Mol. Cell. Biol. 18 1998 3563 3571
-
(1998)
Mol. Cell. Biol.
, vol.18
, pp. 3563-3571
-
-
Masson, M.1
Niedergang, C.2
Schreiber, V.3
Muller, S.4
Menissier-De Murcia, J.5
De Murcia, G.6
-
173
-
-
0038682011
-
PARP goes transcription
-
W.L. Kraus, and J.T. Lis PARP goes transcription Cell 113 2003 677 683
-
(2003)
Cell
, vol.113
, pp. 677-683
-
-
Kraus, W.L.1
Lis, J.T.2
-
174
-
-
10944227347
-
NAD(+)-dependent modulation of chromatin structure and transcription by nucleosome binding properties of PARP-1
-
M.Y. Kim, S. Mauro, N. Gevry, J.T. Lis, and W.L. Kraus NAD(+)-dependent modulation of chromatin structure and transcription by nucleosome binding properties of PARP-1 Cell 119 2004 803 814
-
(2004)
Cell
, vol.119
, pp. 803-814
-
-
Kim, M.Y.1
Mauro, S.2
Gevry, N.3
Lis, J.T.4
Kraus, W.L.5
-
175
-
-
10944253639
-
Activating the PARP-1 sensor component of the Groucho/TLE1 corepressor complex mediates a CaMKinase II delta-dependent neurogenic gene activation pathway
-
B.G. Ju, D. Solum, E.J. Song, K.J. Lee, D.W. Rose, C.K. Glass, and M.G. Rosenfeld Activating the PARP-1 sensor component of the Groucho/TLE1 corepressor complex mediates a CaMKinase II delta-dependent neurogenic gene activation pathway Cell 119 2004 815 829
-
(2004)
Cell
, vol.119
, pp. 815-829
-
-
Ju, B.G.1
Solum, D.2
Song, E.J.3
Lee, K.J.4
Rose, D.W.5
Glass, C.K.6
Rosenfeld, M.G.7
-
176
-
-
34848853918
-
Inhibition of Crm1-p53 interaction and nuclear export of p53 by poly(ADP-ribosyl)ation
-
M. Kanai, K. Hanashiro, S.H. Kim, S. Hanai, A.H. Boulares, M. Miwa, and K. Fukasawa Inhibition of Crm1-p53 interaction and nuclear export of p53 by poly(ADP-ribosyl)ation Nat. Cell Biol. 9 2007 1175 1183
-
(2007)
Nat. Cell Biol.
, vol.9
, pp. 1175-1183
-
-
Kanai, M.1
Hanashiro, K.2
Kim, S.H.3
Hanai, S.4
Boulares, A.H.5
Miwa, M.6
Fukasawa, K.7
-
177
-
-
33847784252
-
Loss of Parp-1 affects gene expression profile in a genome-wide manner in ES cells and liver cells
-
H. Ogino, T. Nozaki, A. Gunji, M. Maeda, H. Suzuki, T. Ohta, Y. Murakami, H. Nakagama, T. Sugimura, and M. Masutani Loss of Parp-1 affects gene expression profile in a genome-wide manner in ES cells and liver cells BMC Genomics 8 2007
-
(2007)
BMC Genomics
, vol.8
-
-
Ogino, H.1
Nozaki, T.2
Gunji, A.3
Maeda, M.4
Suzuki, H.5
Ohta, T.6
Murakami, Y.7
Nakagama, H.8
Sugimura, T.9
Masutani, M.10
-
178
-
-
69249093784
-
PARP1 poly(ADP-ribosyl)ates Sox2 to control Sox2 protein levels and FGF4 expression during embryonic stem cell differentiation
-
F.R. Gao, S.W. Kwon, Y.M. Zhao, and Y. Jin PARP1 poly(ADP-ribosyl)ates Sox2 to control Sox2 protein levels and FGF4 expression during embryonic stem cell differentiation J. Biol. Chem. 284 2009 22263 22273
-
(2009)
J. Biol. Chem.
, vol.284
, pp. 22263-22273
-
-
Gao, F.R.1
Kwon, S.W.2
Zhao, Y.M.3
Jin, Y.4
-
179
-
-
84861971333
-
PARP-1 deletion promotes subventricular zone neural stem cells toward a glial fate
-
J.M. Plane, S.K. Grossenbacher, and W.B. Deng PARP-1 deletion promotes subventricular zone neural stem cells toward a glial fate J. Neurosci. Res. 90 2012 1489 1506
-
(2012)
J. Neurosci. Res.
, vol.90
, pp. 1489-1506
-
-
Plane, J.M.1
Grossenbacher, S.K.2
Deng, W.B.3
-
180
-
-
77949887506
-
Mammalian sirtuins: Biological insights and disease relevance
-
M.C. Haigis, and D.A. Sinclair Mammalian sirtuins: biological insights and disease relevance Annu. Rev. Pathol. Mech. Dis. 5 2010 253 295
-
(2010)
Annu. Rev. Pathol. Mech. Dis.
, vol.5
, pp. 253-295
-
-
Haigis, M.C.1
Sinclair, D.A.2
-
181
-
-
0033214237
-
The SIR2/3/4 complex and SIR2 alone promote longevity in Saccharomyces cerevisiae by two different mechanisms
-
M. Kaeberlein, M. McVey, and L. Guarente The SIR2/3/4 complex and SIR2 alone promote longevity in Saccharomyces cerevisiae by two different mechanisms Genes Dev. 13 1999 2570 2580
-
(1999)
Genes Dev.
, vol.13
, pp. 2570-2580
-
-
Kaeberlein, M.1
McVey, M.2
Guarente, L.3
-
182
-
-
0037130175
-
Calorie restriction extends Saccharomyces cerevisiae lifespan by increasing respiration
-
S.J. Lin, M. Kaeberlein, A.A. Andalis, L.A. Sturtz, P.A. Defossez, V.C. Culotta, G.R. Fink, and L. Guarente Calorie restriction extends Saccharomyces cerevisiae lifespan by increasing respiration Nature 418 2002 344 348
-
(2002)
Nature
, vol.418
, pp. 344-348
-
-
Lin, S.J.1
Kaeberlein, M.2
Andalis, A.A.3
Sturtz, L.A.4
Defossez, P.A.5
Culotta, V.C.6
Fink, G.R.7
Guarente, L.8
-
183
-
-
0347128279
-
Calorie restriction extends yeast life span by lowering the level of NADH
-
S.J. Lin, E. Ford, M. Haigis, G. Liszt, and L. Guarente Calorie restriction extends yeast life span by lowering the level of NADH Genes Dev. 18 2004 12 16
-
(2004)
Genes Dev.
, vol.18
, pp. 12-16
-
-
Lin, S.J.1
Ford, E.2
Haigis, M.3
Liszt, G.4
Guarente, L.5
-
184
-
-
0037221445
-
Linking chromatin function with metabolic networks: Sir2 family of NAD(+)-dependent deacetylases
-
J.M. Denu Linking chromatin function with metabolic networks: Sir2 family of NAD(+)-dependent deacetylases Trends Biochem. Sci. 28 2003 41 48
-
(2003)
Trends Biochem. Sci.
, vol.28
, pp. 41-48
-
-
Denu, J.M.1
-
185
-
-
74149085437
-
Exercise alters SIRT1, SIRT6 NAD and NAMPT levels in skeletal muscle of aged rats
-
E. Koltai, Z. Szabo, M. Atalay, I. Boldogh, H. Naito, S. Goto, C. Nyakas, and Z. Radak Exercise alters SIRT1, SIRT6 NAD and NAMPT levels in skeletal muscle of aged rats Mech. Ageing Dev. 131 2010 21 28
-
(2010)
Mech. Ageing Dev.
, vol.131
, pp. 21-28
-
-
Koltai, E.1
Szabo, Z.2
Atalay, M.3
Boldogh, I.4
Naito, H.5
Goto, S.6
Nyakas, C.7
Radak, Z.8
-
186
-
-
77956180402
-
SIRT1 is a redox-sensitive deacetylase that is post-translationally modified by oxidants and carbonyl stress
-
S. Caito, S. Rajendrasozhan, S. Cook, S. Chung, H.W. Yao, A.E. Friedman, P.S. Brookes, and I. Rahman SIRT1 is a redox-sensitive deacetylase that is post-translationally modified by oxidants and carbonyl stress FASEB J. 24 2010 3145 3159
-
(2010)
FASEB J.
, vol.24
, pp. 3145-3159
-
-
Caito, S.1
Rajendrasozhan, S.2
Cook, S.3
Chung, S.4
Yao, H.W.5
Friedman, A.E.6
Brookes, P.S.7
Rahman, I.8
-
187
-
-
79955591489
-
Age related changes in NAD plus metabolism oxidative stress and Sirt1 activity in Wistar rats
-
N. Braidy, G.J. Guillemin, H. Mansour, T. Chan-Ling, A. Poljak, and R. Grant Age related changes in NAD plus metabolism oxidative stress and Sirt1 activity in Wistar rats PLos One 6 2011
-
(2011)
PLos One
, vol.6
-
-
Braidy, N.1
Guillemin, G.J.2
Mansour, H.3
Chan-Ling, T.4
Poljak, A.5
Grant, R.6
-
188
-
-
33846505019
-
Metabolic regulation of SIRT1 transcription via a HIC1:CtBP corepressor complex
-
Q. Zhang, S.Y. Wang, C. Fleuriel, D. Leprince, J.V. Rocheleau, D.W. Piston, and R.H. Goodman Metabolic regulation of SIRT1 transcription via a HIC1:CtBP corepressor complex Proc. Natl. Acad. Sci. U. S. A. 104 2007 829 833
-
(2007)
Proc. Natl. Acad. Sci. U. S. A.
, vol.104
, pp. 829-833
-
-
Zhang, Q.1
Wang, S.Y.2
Fleuriel, C.3
Leprince, D.4
Rocheleau, J.V.5
Piston, D.W.6
Goodman, R.H.7
-
190
-
-
78149284226
-
GAPDH mediates nitrosylation of nuclear proteins
-
M.D. Kornberg, N. Sen, M.R. Hara, K.R. Juluri, J.V.K. Nguyen, A.M. Snowman, L. Law, L.D. Hester, and S.H. Snyder GAPDH mediates nitrosylation of nuclear proteins Nat. Cell Biol. 12 2010 1094-1U89
-
(2010)
Nat. Cell Biol.
, vol.12
, pp. 1094-1U89
-
-
Kornberg, M.D.1
Sen, N.2
Hara, M.R.3
Juluri, K.R.4
Nguyen, J.V.K.5
Snowman, A.M.6
Law, L.7
Hester, L.D.8
Snyder, S.H.9
-
191
-
-
77955862787
-
Redox regulation of sirtuin-1 by S-glutathiolation
-
R.S. Zee, C.B. Yoo, D.R. Pimentel, D.H. Perlman, J.R. Burgoyne, X.Y. Hou, M.E. Mccomb, C.E. Costello, R.A. Cohen, and M.M. Bachschmid Redox regulation of sirtuin-1 by S-glutathiolation Antioxid. Redox Signal. 13 2010 1023 1032
-
(2010)
Antioxid. Redox Signal.
, vol.13
, pp. 1023-1032
-
-
Zee, R.S.1
Yoo, C.B.2
Pimentel, D.R.3
Perlman, D.H.4
Burgoyne, J.R.5
Hou, X.Y.6
McComb, M.E.7
Costello, C.E.8
Cohen, R.A.9
Bachschmid, M.M.10
-
192
-
-
84896292959
-
A redox-resistant sirtuin-1 mutant protects against hepatic metabolic and oxidant stress
-
D. Shao, J.L. Fry, J.Y. Han, X.Y. Hou, D.R. Pimentel, R. Matsui, R.A. Cohen, and M.M. Bachschmid A redox-resistant sirtuin-1 mutant protects against hepatic metabolic and oxidant stress J. Biol. Chem. 289 2014 7293 7306
-
(2014)
J. Biol. Chem.
, vol.289
, pp. 7293-7306
-
-
Shao, D.1
Fry, J.L.2
Han, J.Y.3
Hou, X.Y.4
Pimentel, D.R.5
Matsui, R.6
Cohen, R.A.7
Bachschmid, M.M.8
-
194
-
-
84876012415
-
Redox-regulating sirtuins in aging, caloric restriction, and exercise
-
Z. Radak, E. Koltai, A.W. Taylor, M. Higuchi, S. Kumagai, H. Ohno, S. Goto, and I. Boldogh Redox-regulating sirtuins in aging, caloric restriction, and exercise Free Radic. Biol. Med. 58 2013 87 97
-
(2013)
Free Radic. Biol. Med.
, vol.58
, pp. 87-97
-
-
Radak, Z.1
Koltai, E.2
Taylor, A.W.3
Higuchi, M.4
Kumagai, S.5
Ohno, H.6
Goto, S.7
Boldogh, I.8
-
195
-
-
34249669270
-
Sirt1 regulates aging and resistance to oxidative stress in the heart
-
R.R. Alcendor, S.M. Gao, P.Y. Zhai, D. Zablocki, E. Holle, X.Z. Yu, B. Tian, T. Wagner, S.F. Vatner, and J. Sadoshima Sirt1 regulates aging and resistance to oxidative stress in the heart Circ. Res. 100 2007 1512 1521
-
(2007)
Circ. Res.
, vol.100
, pp. 1512-1521
-
-
Alcendor, R.R.1
Gao, S.M.2
Zhai, P.Y.3
Zablocki, D.4
Holle, E.5
Yu, X.Z.6
Tian, B.7
Wagner, T.8
Vatner, S.F.9
Sadoshima, J.10
-
196
-
-
34447626095
-
SIRT2 deacetylates FOXO3a in response to oxidative stress and caloric restriction
-
F. Wang, M. Nguyen, F.X.F. Qin, and Q. Tong SIRT2 deacetylates FOXO3a in response to oxidative stress and caloric restriction Aging Cell 6 2007 505 514
-
(2007)
Aging Cell
, vol.6
, pp. 505-514
-
-
Wang, F.1
Nguyen, M.2
Qin, F.X.F.3
Tong, Q.4
-
197
-
-
12144290563
-
Stress-dependent regulation of FOXO transcription factors by the SIRT1 deacetylase
-
A. Brunet, L.B. Sweeney, J.F. Sturgill, K.F. Chua, P.L. Greer, Y. Lin, H. Tran, S.E. Ross, R. Mostoslavsky, H.Y. Cohen, L.S. Hu, H.L. Cheng, M.P. Jedrychowski, S.P. Gygi, D.A. Sinclair, F.W. Alt, and M.E. Greenberg Stress-dependent regulation of FOXO transcription factors by the SIRT1 deacetylase Science 303 2004 2011 2015
-
(2004)
Science
, vol.303
, pp. 2011-2015
-
-
Brunet, A.1
Sweeney, L.B.2
Sturgill, J.F.3
Chua, K.F.4
Greer, P.L.5
Lin, Y.6
Tran, H.7
Ross, S.E.8
Mostoslavsky, R.9
Cohen, H.Y.10
Hu, L.S.11
Cheng, H.L.12
Jedrychowski, M.P.13
Gygi, S.P.14
Sinclair, D.A.15
Alt, F.W.16
Greenberg, M.E.17
-
198
-
-
70349208608
-
Sirt3 blocks the cardiac hypertrophic response by augmenting Foxo3a-dependent antioxidant defense mechanisms in mice
-
N.R. Sundaresan, M. Gupta, G. Kim, S.B. Rajamohan, A. Isbatan, and M.P. Gupta Sirt3 blocks the cardiac hypertrophic response by augmenting Foxo3a-dependent antioxidant defense mechanisms in mice J. Clin. Investig. 119 2009 2758 2771
-
(2009)
J. Clin. Investig.
, vol.119
, pp. 2758-2771
-
-
Sundaresan, N.R.1
Gupta, M.2
Kim, G.3
Rajamohan, S.B.4
Isbatan, A.5
Gupta, M.P.6
-
199
-
-
0035913903
-
HSIR2(SIRT1) functions as an NAD-dependent p53 deacetylase
-
H. Vaziri, S.K. Dessain, E.E. Ng, S.I. Imai, R.A. Frye, T.K. Pandita, L. Guarente, and R.A. Weinberg hSIR2(SIRT1) functions as an NAD-dependent p53 deacetylase Cell 107 2001 149 159
-
(2001)
Cell
, vol.107
, pp. 149-159
-
-
Vaziri, H.1
Dessain, S.K.2
Ng, E.E.3
Imai, S.I.4
Frye, R.A.5
Pandita, T.K.6
Guarente, L.7
Weinberg, R.A.8
-
200
-
-
33745166337
-
Silent information regulator 2 (SIRT1) attenuates oxidative stress-induced mesangial cell apoptosis via p53 deacetylation
-
S. Kume, M. Haneda, K. Kanasaki, T. Sugimoto, S.I. Araki, M. Isono, K. Isshiki, T. Uzu, A. Kashiwagi, and D. Koya Silent information regulator 2 (SIRT1) attenuates oxidative stress-induced mesangial cell apoptosis via p53 deacetylation Free Radic. Biol. Med. 40 2006 2175 2182
-
(2006)
Free Radic. Biol. Med.
, vol.40
, pp. 2175-2182
-
-
Kume, S.1
Haneda, M.2
Kanasaki, K.3
Sugimoto, T.4
Araki, S.I.5
Isono, M.6
Isshiki, K.7
Uzu, T.8
Kashiwagi, A.9
Koya, D.10
-
201
-
-
0141814680
-
Developmental defects and p53 hyperacetylation in Sir2 homolog (SIRT1)-deficient mice
-
H.L. Cheng, R. Mostoslavsky, S. Saito, J.P. Manis, Y. Gu, P. Patel, R. Bronson, E. Appella, F.W. Alt, and K.F. Chua Developmental defects and p53 hyperacetylation in Sir2 homolog (SIRT1)-deficient mice Proc. Natl. Acad. Sci. U. S. A. 100 2003 10794 10799
-
(2003)
Proc. Natl. Acad. Sci. U. S. A.
, vol.100
, pp. 10794-10799
-
-
Cheng, H.L.1
Mostoslavsky, R.2
Saito, S.3
Manis, J.P.4
Gu, Y.5
Patel, P.6
Bronson, R.7
Appella, E.8
Alt, F.W.9
Chua, K.F.10
-
202
-
-
0037207475
-
The mammalian SIR2alpha protein has a role in embryogenesis and gametogenesis
-
M.W. McBurney, X. Yang, K. Jardine, M. Hixon, K. Boekelheide, J.R. Webb, P.M. Lansdorp, and M. Lemieux The mammalian SIR2alpha protein has a role in embryogenesis and gametogenesis Mol. Cell. Biol. 23 2003 38 54
-
(2003)
Mol. Cell. Biol.
, vol.23
, pp. 38-54
-
-
McBurney, M.W.1
Yang, X.2
Jardine, K.3
Hixon, M.4
Boekelheide, K.5
Webb, J.R.6
Lansdorp, P.M.7
Lemieux, M.8
-
203
-
-
0346094379
-
Predominant expression of Sir2alpha, an NAD-dependent histone deacetylase, in the embryonic mouse heart and brain
-
J. Sakamoto, T. Miura, K. Shimamoto, and Y. Horio Predominant expression of Sir2alpha, an NAD-dependent histone deacetylase, in the embryonic mouse heart and brain FEBS Lett. 556 2004 281 286
-
(2004)
FEBS Lett.
, vol.556
, pp. 281-286
-
-
Sakamoto, J.1
Miura, T.2
Shimamoto, K.3
Horio, Y.4
-
204
-
-
53149137486
-
Impaired DNA damage response, genome instability, and tumorigenesis in SIRT1 mutant mice
-
R.H. Wang, K. Sengupta, C. Li, H.S. Kim, L. Cao, C. Xiao, S. Kim, X. Xu, Y. Zheng, B. Chilton, R. Jia, Z.M. Zheng, E. Appella, X.W. Wang, T. Ried, and C.X. Deng Impaired DNA damage response, genome instability, and tumorigenesis in SIRT1 mutant mice Cancer Cell 14 2008 312 323
-
(2008)
Cancer Cell
, vol.14
, pp. 312-323
-
-
Wang, R.H.1
Sengupta, K.2
Li, C.3
Kim, H.S.4
Cao, L.5
Xiao, C.6
Kim, S.7
Xu, X.8
Zheng, Y.9
Chilton, B.10
Jia, R.11
Zheng, Z.M.12
Appella, E.13
Wang, X.W.14
Ried, T.15
Deng, C.X.16
-
205
-
-
77954855825
-
SIRT1 is essential for normal cognitive function and synaptic plasticity
-
S. Michan, Y. Li, M.M. Chou, E. Parrella, H. Ge, J.M. Long, J.S. Allard, K. Lewis, M. Miller, W. Xu, R.F. Mervis, J. Chen, K.I. Guerin, L.E. Smith, M.W. McBurney, D.A. Sinclair, M. Baudry, R. de Cabo, and V.D. Longo SIRT1 is essential for normal cognitive function and synaptic plasticity J. Neurosci. 30 2010 9695 9707
-
(2010)
J. Neurosci.
, vol.30
, pp. 9695-9707
-
-
Michan, S.1
Li, Y.2
Chou, M.M.3
Parrella, E.4
Ge, H.5
Long, J.M.6
Allard, J.S.7
Lewis, K.8
Miller, M.9
Xu, W.10
Mervis, R.F.11
Chen, J.12
Guerin, K.I.13
Smith, L.E.14
McBurney, M.W.15
Sinclair, D.A.16
Baudry, M.17
De Cabo, R.18
Longo, V.D.19
-
206
-
-
79951844222
-
Role of Pax3 acetylation in the regulation of Hes1 and Neurog2
-
S. Ichi, V. Boshnjaku, Y.W. Shen, B. Mania-Farnell, S. Ahlgren, S. Sapru, N. Mansukhani, D.G. McLone, T. Tomita, and C.S. Mayanil Role of Pax3 acetylation in the regulation of Hes1 and Neurog2 Mol. Biol. Cell 22 2011 503 512
-
(2011)
Mol. Biol. Cell
, vol.22
, pp. 503-512
-
-
Ichi, S.1
Boshnjaku, V.2
Shen, Y.W.3
Mania-Farnell, B.4
Ahlgren, S.5
Sapru, S.6
Mansukhani, N.7
McLone, D.G.8
Tomita, T.9
Mayanil, C.S.10
-
207
-
-
77956382385
-
Sirtuin 1 regulation of developmental genes during differentiation of stem cells
-
V. Calvanese, E. Lara, B. Suarez-Alvarez, D.R. Abu, M. Vazquez-Chantada, M.L. Martinez-Chantar, N. Embade, P. Lopez-Nieva, A. Horrillo, A. Hmadcha, B. Soria, D. Piazzolla, D. Herranz, M. Serrano, J.M. Mato, P.W. Andrews, C. Lopez-Larrea, M. Esteller, and M.F. Fraga Sirtuin 1 regulation of developmental genes during differentiation of stem cells Proc. Natl. Acad. Sci. U. S. A. 107 2010 13736 13741
-
(2010)
Proc. Natl. Acad. Sci. U. S. A.
, vol.107
, pp. 13736-13741
-
-
Calvanese, V.1
Lara, E.2
Suarez-Alvarez, B.3
Abu, D.R.4
Vazquez-Chantada, M.5
Martinez-Chantar, M.L.6
Embade, N.7
Lopez-Nieva, P.8
Horrillo, A.9
Hmadcha, A.10
Soria, B.11
Piazzolla, D.12
Herranz, D.13
Serrano, M.14
Mato, J.M.15
Andrews, P.W.16
Lopez-Larrea, C.17
Esteller, M.18
Fraga, M.F.19
-
208
-
-
55749095213
-
Histone deacetylase SIRT1 modulates neuronal differentiation by its nuclear translocation
-
S. Hisahara, S. Chiba, H. Matsumoto, M. Tanno, H. Yagi, S. Shimohama, M. Sato, and Y. Horio Histone deacetylase SIRT1 modulates neuronal differentiation by its nuclear translocation Proc. Natl. Acad. Sci. U. S. A. 105 2008 15599 15604
-
(2008)
Proc. Natl. Acad. Sci. U. S. A.
, vol.105
, pp. 15599-15604
-
-
Hisahara, S.1
Chiba, S.2
Matsumoto, H.3
Tanno, M.4
Yagi, H.5
Shimohama, S.6
Sato, M.7
Horio, Y.8
-
209
-
-
84870565938
-
BCL6 controls neurogenesis through Sirt1-dependent epigenetic repression of selective Notch targets
-
L. Tiberi, J. van den Ameele, J. Dimidschstein, J. Piccirilli, D. Gall, A. Herpoel, A. Bilheu, J. Bonnefont, M. Iacovino, M. Kyba, T. Bouschet, and P. Vanderhaeghen BCL6 controls neurogenesis through Sirt1-dependent epigenetic repression of selective Notch targets Nat. Neurosci. 15 2012 1627-+
-
(2012)
Nat. Neurosci.
, vol.15
, pp. 1627-+
-
-
Tiberi, L.1
Van Den Ameele, J.2
Dimidschstein, J.3
Piccirilli, J.4
Gall, D.5
Herpoel, A.6
Bilheu, A.7
Bonnefont, J.8
Iacovino, M.9
Kyba, M.10
Bouschet, T.11
Vanderhaeghen, P.12
-
210
-
-
61449172037
-
Systematic and integrative analysis of large gene lists using DAVID bioinformatics resources
-
D.W. Huang, B.T. Sherman, and R.A. Lempicki Systematic and integrative analysis of large gene lists using DAVID bioinformatics resources Nat. Protoc. 4 2009 44 57
-
(2009)
Nat. Protoc.
, vol.4
, pp. 44-57
-
-
Huang, D.W.1
Sherman, B.T.2
Lempicki, R.A.3
-
211
-
-
56749156405
-
SIRT1 redistribution on chromatin promotes genomic stability but alters gene expression during aging
-
P. Oberdoerffer, S. Michan, M. McVay, R. Mostoslavsky, J. Vann, S.K. Park, A. Hartlerode, J. Stegmuller, A. Hafner, P. Loerch, S.M. Wright, K.D. Mills, A. Bonni, B.A. Yankner, R. Scully, T.A. Prolla, F.W. Alt, and D.A. Sinclair SIRT1 redistribution on chromatin promotes genomic stability but alters gene expression during aging Cell 135 2008 907 918
-
(2008)
Cell
, vol.135
, pp. 907-918
-
-
Oberdoerffer, P.1
Michan, S.2
McVay, M.3
Mostoslavsky, R.4
Vann, J.5
Park, S.K.6
Hartlerode, A.7
Stegmuller, J.8
Hafner, A.9
Loerch, P.10
Wright, S.M.11
Mills, K.D.12
Bonni, A.13
Yankner, B.A.14
Scully, R.15
Prolla, T.A.16
Alt, F.W.17
Sinclair, D.A.18
-
212
-
-
34250365395
-
Nucleocytoplasmic shuttling of the NAD +-dependent histone deacetylase SIRT1
-
M. Tanno, J. Sakamoto, T. Miura, K. Shimamoto, and Y. Horio Nucleocytoplasmic shuttling of the NAD +-dependent histone deacetylase SIRT1 J. Biol. Chem. 282 2007 6823 6832
-
(2007)
J. Biol. Chem.
, vol.282
, pp. 6823-6832
-
-
Tanno, M.1
Sakamoto, J.2
Miura, T.3
Shimamoto, K.4
Horio, Y.5
|