-
1
-
-
9244221172
-
Tissue repair and stem cell renewal in carcinogenesis
-
Beachy PA, Karhadkar SS, Berman DM (2004) Tissue repair and stem cell renewal in carcinogenesis. Nature 432(7015):324-331.
-
(2004)
Nature
, vol.432
, Issue.7015
, pp. 324-331
-
-
Beachy, P.A.1
Karhadkar, S.S.2
Berman, D.M.3
-
2
-
-
0034237708
-
The EGF-CFC gene family in vertebrate development
-
Shen MM, Schier AF (2000) The EGF-CFC gene family in vertebrate development. Trends Genet 16(7):303-309.
-
(2000)
Trends Genet
, vol.16
, Issue.7
, pp. 303-309
-
-
Shen, M.M.1
Schier, A.F.2
-
3
-
-
34147113900
-
A meta-analysis of human embryonic stem cells transcriptome integrated into a web-based expression atlas
-
Assou S, et al. (2007) A meta-analysis of human embryonic stem cells transcriptome integrated into a web-based expression atlas. Stem Cells 25(4):961-973.
-
(2007)
Stem Cells
, vol.25
, Issue.4
, pp. 961-973
-
-
Assou, S.1
-
4
-
-
24644458873
-
Nodal-dependant Cripto signaling in ES cells: From stem cells to tumor biology
-
Minchiotti G (2005) Nodal-dependant Cripto signaling in ES cells: From stem cells to tumor biology. Oncogene 24(37):5668-5675.
-
(2005)
Oncogene
, vol.24
, Issue.37
, pp. 5668-5675
-
-
Minchiotti, G.1
-
5
-
-
80053926733
-
Cripto regulates hematopoietic stem cells as a hypoxic-niche-related factor through cell surface receptor GRP78
-
Miharada K, et al. (2011) Cripto regulates hematopoietic stem cells as a hypoxic-niche-related factor through cell surface receptor GRP78. Cell Stem Cell 9(4):330-344.
-
(2011)
Cell Stem Cell
, vol.9
, Issue.4
, pp. 330-344
-
-
Miharada, K.1
-
6
-
-
0035195064
-
Structure-function analysis of the EGF-CFC family member Cripto identifies residues essential for nodal signalling
-
Minchiotti G, et al. (2001) Structure-function analysis of the EGF-CFC family member Cripto identifies residues essential for nodal signalling. Development 128(22):4501-4510.
-
(2001)
Development
, vol.128
, Issue.22
, pp. 4501-4510
-
-
Minchiotti, G.1
-
7
-
-
0036210652
-
Cripto-1 activates nodal- And ALK4-dependent and -independent signaling pathways in mammary epithelial Cells
-
Bianco C, et al. (2002) Cripto-1 activates nodal- and ALK4-dependent and -independent signaling pathways in mammary epithelial Cells. Mol Cell Biol 22(8):2586-2597.
-
(2002)
Mol Cell Biol
, vol.22
, Issue.8
, pp. 2586-2597
-
-
Bianco, C.1
-
8
-
-
31144451117
-
Non-cell-autonomous role for Cripto in axial midline formation during vertebrate embryogenesis
-
Chu J, et al. (2005) Non-cell-autonomous role for Cripto in axial midline formation during vertebrate embryogenesis. Development 132(24):5539-5551.
-
(2005)
Development
, vol.132
, Issue.24
, pp. 5539-5551
-
-
Chu, J.1
-
9
-
-
0035425463
-
The orphan receptor ALK7 and the Activin receptor ALK4 mediate signaling by Nodal proteins during vertebrate development
-
Reissmann E, et al. (2001) The orphan receptor ALK7 and the Activin receptor ALK4 mediate signaling by Nodal proteins during vertebrate development. Genes Dev 15(15):2010-2022.
-
(2001)
Genes Dev
, vol.15
, Issue.15
, pp. 2010-2022
-
-
Reissmann, E.1
-
10
-
-
0037229696
-
EGF-CFC proteins are essential coreceptors for the TGF-beta signals Vg1 and GDF1
-
Cheng SK, Olale F, Bennett JT, Brivanlou AH, Schier AF (2003) EGF-CFC proteins are essential coreceptors for the TGF-beta signals Vg1 and GDF1. Genes Dev 17(1):31-36.
-
(2003)
Genes Dev
, vol.17
, Issue.1
, pp. 31-36
-
-
Cheng, S.K.1
Olale, F.2
Bennett, J.T.3
Brivanlou, A.H.4
Schier, A.F.5
-
11
-
-
33745625628
-
Muscle stem cells in development, regeneration, and disease
-
Shi X, Garry DJ (2006) Muscle stem cells in development, regeneration, and disease. Genes Dev 20(13):1692-1708.
-
(2006)
Genes Dev
, vol.20
, Issue.13
, pp. 1692-1708
-
-
Shi, X.1
Garry, D.J.2
-
12
-
-
0034654497
-
Controlling TGF-beta signaling
-
Massagué J, Chen YG (2000) Controlling TGF-beta signaling. Genes Dev 14(6):627-644.
-
(2000)
Genes Dev
, vol.14
, Issue.6
, pp. 627-644
-
-
Massagué, J.1
Chen, Y.G.2
-
13
-
-
85047693731
-
Antibody blockade of the Cripto CFC domain suppresses tumor cell growth in vivo
-
Adkins HB, et al. (2003) Antibody blockade of the Cripto CFC domain suppresses tumor cell growth in vivo. J Clin Invest 112(4):575-587.
-
(2003)
J Clin Invest
, vol.112
, Issue.4
, pp. 575-587
-
-
Adkins, H.B.1
-
14
-
-
0038642113
-
Cripto forms a complexwith activin and type II activin receptors and can block activin signaling
-
Gray PC, Harrison CA, Vale W (2003) Cripto forms a complexwith activin and type II activin receptors and can block activin signaling. Proc Natl Acad Sci USA 100(9):5193-5198.
-
(2003)
Proc Natl Acad Sci USA
, vol.100
, Issue.9
, pp. 5193-5198
-
-
Gray, P.C.1
Harrison, C.A.2
Vale, W.3
-
15
-
-
33845465701
-
Cripto binds transforming growth factor beta (TGF-beta) and inhibits TGF-beta signaling
-
Gray PC, Shani G, Aung K, Kelber J, Vale W (2006) Cripto binds transforming growth factor beta (TGF-beta) and inhibits TGF-beta signaling. Mol Cell Biol 26(24):9268-9278.
-
(2006)
Mol Cell Biol
, vol.26
, Issue.24
, pp. 9268-9278
-
-
Gray, P.C.1
Shani, G.2
Aung, K.3
Kelber, J.4
Vale, W.5
-
17
-
-
24644493315
-
Cripto-1: A multifunctional modulator during embryogenesis and oncogenesis
-
Strizzi L, Bianco C, Normanno N, Salomon D (2005) Cripto-1: A multifunctional modulator during embryogenesis and oncogenesis. Oncogene 24(37):5731-5741.
-
(2005)
Oncogene
, vol.24
, Issue.37
, pp. 5731-5741
-
-
Strizzi, L.1
Bianco, C.2
Normanno, N.3
Salomon, D.4
-
18
-
-
0347989458
-
Cellular and molecular regulation of muscle regeneration
-
Chargé SB, Rudnicki MA (2004) Cellular and molecular regulation of muscle regeneration. Physiol Rev 84(1):209-238.
-
(2004)
Physiol Rev
, vol.84
, Issue.1
, pp. 209-238
-
-
Chargé, S.B.1
Rudnicki, M.A.2
-
19
-
-
0034664770
-
Pax7 is required for the specification of myogenic satellite cells
-
Seale P, et al. (2000) Pax7 is required for the specification of myogenic satellite cells. Cell 102(6):777-786.
-
(2000)
Cell
, vol.102
, Issue.6
, pp. 777-786
-
-
Seale, P.1
-
20
-
-
84883491204
-
Stem cell-mediated transfer of a human artificial chromosome ameliorates muscular dystrophy
-
Tedesco FS, et al. (2011) Stem cell-mediated transfer of a human artificial chromosome ameliorates muscular dystrophy. Sci Transl Med 3(96):96ra78.
-
(2011)
Sci Transl Med
, vol.3
, Issue.96
-
-
Tedesco, F.S.1
-
21
-
-
19544372764
-
Skeletal muscle stem and progenitor cells: Reconciling genetics and lineage
-
Tajbakhsh S (2005) Skeletal muscle stem and progenitor cells: Reconciling genetics and lineage. Exp Cell Res 306(2):364-372.
-
(2005)
Exp Cell Res
, vol.306
, Issue.2
, pp. 364-372
-
-
Tajbakhsh, S.1
-
22
-
-
0032006325
-
HGF/SF is present in normal adult skeletal muscle and is capable of activating satellite cells
-
Tatsumi R, Anderson JE, Nevoret CJ, Halevy O, Allen RE (1998) HGF/SF is present in normal adult skeletal muscle and is capable of activating satellite cells. Dev Biol 194(1):114-128.
-
(1998)
Dev Biol
, vol.194
, Issue.1
, pp. 114-128
-
-
Tatsumi, R.1
Anderson, J.E.2
Nevoret, C.J.3
Halevy, O.4
Allen, R.E.5
-
23
-
-
0032949353
-
Maturation of the myogenic program is induced by postmitotic expression of insulin-like growth factor I
-
Musarò A, Rosenthal N (1999) Maturation of the myogenic program is induced by postmitotic expression of insulin-like growth factor I. Mol Cell Biol 19(4):3115-3124.
-
(1999)
Mol Cell Biol
, vol.19
, Issue.4
, pp. 3115-3124
-
-
Musarò, A.1
Rosenthal, N.2
-
24
-
-
0035979253
-
Regulation of myostatin activity and muscle growth
-
Lee SJ, McPherron AC (2001) Regulation of myostatin activity and muscle growth. Proc Natl Acad Sci USA 98(16):9306-9311.
-
(2001)
Proc Natl Acad Sci USA
, vol.98
, Issue.16
, pp. 9306-9311
-
-
Lee, S.J.1
McPherron, A.C.2
-
25
-
-
53349097675
-
Canonical Wnt signalling induces satellite-cell proliferation during adult skeletal muscle regeneration
-
Otto A, et al. (2008) Canonical Wnt signalling induces satellite-cell proliferation during adult skeletal muscle regeneration. J Cell Sci 121(Pt 17):2939-2950.
-
(2008)
J Cell Sci
, vol.121
, Issue.PART 17
, pp. 2939-2950
-
-
Otto, A.1
-
26
-
-
3543123015
-
Muscle satellite cells adopt divergent fates: A mechanism for self-renewal?
-
Zammit PS, et al. (2004) Muscle satellite cells adopt divergent fates: A mechanism for self-renewal? J Cell Biol 166(3):347-357.
-
(2004)
J Cell Biol
, vol.166
, Issue.3
, pp. 347-357
-
-
Zammit, P.S.1
-
27
-
-
0034638832
-
Expression of CD34 and Myf5 defines the majority of quiescent adult skeletal muscle satellite cells
-
Beauchamp JR, et al. (2000) Expression of CD34 and Myf5 defines the majority of quiescent adult skeletal muscle satellite cells. J Cell Biol 151(6):1221-1234.
-
(2000)
J Cell Biol
, vol.151
, Issue.6
, pp. 1221-1234
-
-
Beauchamp, J.R.1
-
28
-
-
0029950479
-
Muscle progenitor cells failing to respond to positional cues adopt non-myogenic fates in myf-5 null mice
-
Tajbakhsh S, Rocancourt D, Buckingham M (1996) Muscle progenitor cells failing to respond to positional cues adopt non-myogenic fates in myf-5 null mice. Nature 384(6606):266-270.
-
(1996)
Nature
, vol.384
, Issue.6606
, pp. 266-270
-
-
Tajbakhsh, S.1
Rocancourt, D.2
Buckingham, M.3
-
29
-
-
0032531946
-
Cripto is required for correct orientation of the anterior-posterior axis in the mouse embryo
-
Ding J, et al. (1998) Cripto is required for correct orientation of the anterior-posterior axis in the mouse embryo. Nature 395(6703):702-707.
-
(1998)
Nature
, vol.395
, Issue.6703
, pp. 702-707
-
-
Ding, J.1
-
30
-
-
84856118451
-
A critical requirement for notch signaling in maintenance of the quiescent skeletal muscle stem cell state
-
Mourikis P, et al. (2011) A critical requirement for notch signaling in maintenance of the quiescent skeletal muscle stem cell state. Stem Cells 30(2):243-252.
-
(2011)
Stem Cells
, vol.30
, Issue.2
, pp. 243-252
-
-
Mourikis, P.1
-
31
-
-
0242330138
-
Nodal-dependent Cripto signaling promotes cardiomyogenesis and redirects the neural fate of embryonic stem cells
-
Parisi S, et al. (2003) Nodal-dependent Cripto signaling promotes cardiomyogenesis and redirects the neural fate of embryonic stem cells. J Cell Biol 163(2):303-314.
-
(2003)
J Cell Biol
, vol.163
, Issue.2
, pp. 303-314
-
-
Parisi, S.1
-
32
-
-
0037689525
-
Induction of functional neovascularization by combined VEGF and angiopoietin-1 gene transfer using AAV vectors
-
Arsic N, et al. (2003) Induction of functional neovascularization by combined VEGF and angiopoietin-1 gene transfer using AAV vectors. Mol Ther 7(4):450-459.
-
(2003)
Mol Ther
, vol.7
, Issue.4
, pp. 450-459
-
-
Arsic, N.1
-
33
-
-
0032494182
-
Development of approaches to improve cell survival in myoblast transfer therapy
-
Qu Z, et al. (1998) Development of approaches to improve cell survival in myoblast transfer therapy. J Cell Biol 142(5):1257-1267.
-
(1998)
J Cell Biol
, vol.142
, Issue.5
, pp. 1257-1267
-
-
Qu, Z.1
-
34
-
-
0033987913
-
Membrane-anchorage of Cripto protein by glycosylphosphatidylinositol and its distribution during early mouse development
-
Minchiotti G, et al. (2000) Membrane-anchorage of Cripto protein by glycosylphosphatidylinositol and its distribution during early mouse development. Mech Dev 90(2):133-142.
-
(2000)
Mech Dev
, vol.90
, Issue.2
, pp. 133-142
-
-
Minchiotti, G.1
-
35
-
-
85047692622
-
Decrypting the role of Cripto in tumorigenesis
-
Shen MM (2003) Decrypting the role of Cripto in tumorigenesis. J Clin Invest 112(4):500-502.
-
(2003)
J Clin Invest
, vol.112
, Issue.4
, pp. 500-502
-
-
Shen, M.M.1
-
36
-
-
0034704106
-
Myostatin, a negative regulator of muscle growth, functions by inhibiting myoblast proliferation
-
Thomas M, et al. (2000) Myostatin, a negative regulator of muscle growth, functions by inhibiting myoblast proliferation. J Biol Chem 275(51):40235-40243.
-
(2000)
J Biol Chem
, vol.275
, Issue.51
, pp. 40235-40243
-
-
Thomas, M.1
-
37
-
-
84867410773
-
Skeletal muscle stem cells: Effects of aging and metabolism on muscle regenerative function
-
Jang YC, Sinha M, Cerletti M, Dall'Osso C, Wagers AJ (2011) Skeletal muscle stem cells: Effects of aging and metabolism on muscle regenerative function. Cold Spring Harb Symp Quant Biol 76:101-111.
-
(2011)
Cold Spring Harb Symp Quant Biol
, vol.76
, pp. 101-111
-
-
Jang, Y.C.1
Sinha, M.2
Cerletti, M.3
Dall'Osso, C.4
Wagers, A.J.5
-
38
-
-
0346849710
-
Satellite cells attract monocytes and use macrophages as a support to escape apoptosis and enhance muscle growth
-
Chazaud B, et al. (2003) Satellite cells attract monocytes and use macrophages as a support to escape apoptosis and enhance muscle growth. J Cell Biol 163(5):1133-1143.
-
(2003)
J Cell Biol
, vol.163
, Issue.5
, pp. 1133-1143
-
-
Chazaud, B.1
-
39
-
-
79955706482
-
G-CSF influences mouse skeletal muscle development and regeneration by stimulating myoblast proliferation
-
Hara M, et al. (2011) G-CSF influences mouse skeletal muscle development and regeneration by stimulating myoblast proliferation. J Exp Med 208(4):715-727.
-
(2011)
J Exp Med
, vol.208
, Issue.4
, pp. 715-727
-
-
Hara, M.1
-
40
-
-
0141768237
-
Myostatin negatively regulates satellite cell activation and self-renewal
-
McCroskery S, et al. (2003) Myostatin negatively regulates satellite cell activation and self-renewal. J Cell Biol 162(6):1135-1147.
-
(2003)
J Cell Biol
, vol.162
, Issue.6
, pp. 1135-1147
-
-
McCroskery, S.1
-
41
-
-
67650071006
-
Follistatin induces muscle hypertrophy through satellite cell proliferation and inhibition of both myostatin and activin
-
Gilson H, et al. (2009) Follistatin induces muscle hypertrophy through satellite cell proliferation and inhibition of both myostatin and activin. Am J Physiol Endocrinol Metab 297(1):E157-E164.
-
(2009)
Am J Physiol Endocrinol Metab
, vol.297
, Issue.1
-
-
Gilson, H.1
-
42
-
-
77951022683
-
Cellular mechanisms and local progenitor activation to regulate skeletal muscle mass
-
Cassano M, et al. (2009) Cellular mechanisms and local progenitor activation to regulate skeletal muscle mass. J Muscle Res Cell Motil 30(7-8):243-253.
-
(2009)
J Muscle Res Cell Motil
, vol.30
, Issue.7-8
, pp. 243-253
-
-
Cassano, M.1
-
44
-
-
0038636430
-
Mechanisms involved in the inhibition of myoblast proliferation and differentiation by myostatin
-
Joulia D, et al. (2003) Mechanisms involved in the inhibition of myoblast proliferation and differentiation by myostatin. Exp Cell Res 286(2):263-275.
-
(2003)
Exp Cell Res
, vol.286
, Issue.2
, pp. 263-275
-
-
Joulia, D.1
-
45
-
-
33644893041
-
Myostatin imposes reversible quiescence on embryonic muscle precursors
-
Amthor H, Otto A, Macharia R, McKinnell I, Patel K (2006) Myostatin imposes reversible quiescence on embryonic muscle precursors. Dev Dyn 235(3):672-680.
-
(2006)
Dev Dyn
, vol.235
, Issue.3
, pp. 672-680
-
-
Amthor, H.1
Otto, A.2
Macharia, R.3
McKinnell, I.4
Patel, K.5
-
46
-
-
40349085764
-
Myostatin promotes the terminal differentiation of embryonic muscle progenitors
-
Manceau M, et al. (2008) Myostatin promotes the terminal differentiation of embryonic muscle progenitors. Genes Dev 22(5):668-681.
-
(2008)
Genes Dev
, vol.22
, Issue.5
, pp. 668-681
-
-
Manceau, M.1
-
47
-
-
66149128151
-
Muscle hypertrophy driven by myostatin blockade does not require stem/precursor-cell activity
-
Amthor H, et al. (2009) Muscle hypertrophy driven by myostatin blockade does not require stem/precursor-cell activity. Proc Natl Acad Sci USA 106(18):7479-7484.
-
(2009)
Proc Natl Acad Sci USA
, vol.106
, Issue.18
, pp. 7479-7484
-
-
Amthor, H.1
-
48
-
-
79952302811
-
Activin-A and myostatin response and steroid regulation in human myometrium: Disruption of their signalling in uterine fibroid
-
Ciarmela P, et al. (2011) Activin-A and myostatin response and steroid regulation in human myometrium: Disruption of their signalling in uterine fibroid. J Clin Endocrinol Metab 96(3):755-765.
-
(2011)
J Clin Endocrinol Metab
, vol.96
, Issue.3
, pp. 755-765
-
-
Ciarmela, P.1
-
49
-
-
84858186606
-
Cell-type specific regulation of myostatin signaling
-
Kemaladewi DU, et al. (2012) Cell-type specific regulation of myostatin signaling. FASEB J 26(4):1462-1472.
-
(2012)
FASEB J
, vol.26
, Issue.4
, pp. 1462-1472
-
-
Kemaladewi, D.U.1
-
50
-
-
0028264320
-
Primary mouse myoblast purification, characterization, and transplantation for cell-mediated gene therapy
-
Rando TA, Blau HM (1994) Primary mouse myoblast purification, characterization, and transplantation for cell-mediated gene therapy. J Cell Biol 125(6):1275-1287.
-
(1994)
J Cell Biol
, vol.125
, Issue.6
, pp. 1275-1287
-
-
Rando, T.A.1
Blau, H.M.2
-
51
-
-
25444461424
-
Direct isolation of satellite cells for skeletal muscle regeneration
-
Montarras D, et al. (2005) Direct isolation of satellite cells for skeletal muscle regeneration. Science 309(5743):2064-2067.
-
(2005)
Science
, vol.309
, Issue.5743
, pp. 2064-2067
-
-
Montarras, D.1
-
52
-
-
0028790747
-
Culturing satellite cells from living single muscle fiber explants
-
Rosenblatt JD, Lunt AI, Parry DJ, Partridge TA (1995) Culturing satellite cells from living single muscle fiber explants. In Vitro Cell Dev Biol Anim 31(10):773-779.
-
(1995)
In Vitro Cell Dev Biol Anim
, vol.31
, Issue.10
, pp. 773-779
-
-
Rosenblatt, J.D.1
Lunt, A.I.2
Parry, D.J.3
Partridge, T.A.4
-
53
-
-
69249249201
-
Autocrine and paracrine angiopoietin 1/Tie-2 signaling promotes muscle satellite cell self-renewal
-
Abou-Khalil R, et al. (2009) Autocrine and paracrine angiopoietin 1/Tie-2 signaling promotes muscle satellite cell self-renewal. Cell Stem Cell 5(3):298-309.
-
(2009)
Cell Stem Cell
, vol.5
, Issue.3
, pp. 298-309
-
-
Abou-Khalil, R.1
-
54
-
-
0033000369
-
Abrogation of the Cripto gene in mouse leads to failure of postgastrulation morphogenesis and lack of differentiation of cardiomyocytes
-
Xu C, et al. (1999) Abrogation of the Cripto gene in mouse leads to failure of postgastrulation morphogenesis and lack of differentiation of cardiomyocytes. Development 126(3):483-494.
-
(1999)
Development
, vol.126
, Issue.3
, pp. 483-494
-
-
Xu, C.1
-
55
-
-
70350643488
-
Proteolysis activation and proteome alterations in murine skeletal muscle submitted to 1 week of hindlimb suspension
-
Ferreira R, et al. (2009) Proteolysis activation and proteome alterations in murine skeletal muscle submitted to 1 week of hindlimb suspension. Eur J Appl Physiol 107(5):553-563.
-
(2009)
Eur J Appl Physiol
, vol.107
, Issue.5
, pp. 553-563
-
-
Ferreira, R.1
-
56
-
-
41949137589
-
Cripto is a noncompetitive activin antagonist that forms analogous signaling complexes with activin and nodal
-
Kelber JA, Shani G, Booker EC, Vale WW, Gray PC (2008) Cripto is a noncompetitive activin antagonist that forms analogous signaling complexes with activin and nodal. J Biol Chem 283(8):4490-4500.
-
(2008)
J Biol Chem
, vol.283
, Issue.8
, pp. 4490-4500
-
-
Kelber, J.A.1
Shani, G.2
Booker, E.C.3
Vale, W.W.4
Gray, P.C.5
|