-
1
-
-
84987413536
-
Investigations on the fine structure of striated muscle fiber read before the Reale Istituto Lombardo, 13 March 1902
-
Veratti E. 1961. Investigations on the fine structure of striated muscle fiber read before the Reale Istituto Lombardo, 13 March 1902. J. Biophys. Biochem. Cytol. 10(Suppl. 4):1-59
-
(1961)
J. Biophys. Biochem. Cytol
, vol.10
, pp. 1-59
-
-
Veratti, E.1
-
2
-
-
84880638696
-
From rags to riches - The history of the endoplasmic reticulum
-
Schuldiner M, Schwappach B. 2013. From rags to riches-the history of the endoplasmic reticulum. Biochim. Biophys. Acta 1833:2389-91
-
(2013)
Biochim. Biophys. Acta
, vol.1833
, pp. 2389-2391
-
-
Schuldiner, M.1
Schwappach, B.2
-
3
-
-
0008759930
-
Studies on the endoplasmic reticulum. II. Simple dispositions in cells in situ
-
56-7-82
-
Palade GE. 1955. Studies on the endoplasmic reticulum. II. Simple dispositions in cells in situ. J. Biophys. Biochem. Cytol. 1:56-7-82
-
(1955)
J. Biophys. Biochem. Cytol.
, vol.1
-
-
Palade, G.E.1
-
4
-
-
0000352663
-
Studies on the endoplasmic reticulum. I. Its identification in cells in situ
-
Palade GE, Porter KR. 1954. Studies on the endoplasmic reticulum. I. Its identification in cells in situ. J. Exp. Med. 100:641-56
-
(1954)
J. Exp. Med.
, vol.100
, pp. 641-656
-
-
Palade, G.E.1
Porter, K.R.2
-
5
-
-
0001659046
-
Studies on the endoplasmic reticulum. III. Its form and distribution in striated muscle cells
-
Porter KR, Palade GE. 1957. Studies on the endoplasmic reticulum. III. Its form and distribution in striated muscle cells. J. Biophys. Biochem. Cytol. 3:269-300
-
(1957)
J. Biophys. Biochem. Cytol.
, vol.3
, pp. 269-300
-
-
Porter, K.R.1
Palade, G.E.2
-
7
-
-
28444472419
-
Pushing the envelope: Structure, function, and dynamics of the nuclear periphery
-
Hetzer MW, Walther TC, Mattaj IW. 2005. Pushing the envelope: structure, function, and dynamics of the nuclear periphery. Annu. Rev. Cell Dev. Biol. 21:347-80
-
(2005)
Annu. Rev. Cell Dev. Biol.
, vol.21
, pp. 347-380
-
-
Hetzer, M.W.1
Walther, T.C.2
Mattaj, I.W.3
-
8
-
-
32044433784
-
The role of the nuclear envelope in cellular organization
-
D'Angelo MA, Hetzer MW. 2006. The role of the nuclear envelope in cellular organization. Cell Mol. Life Sci. 63:316-32
-
(2006)
Cell Mol. Life Sci.
, vol.63
, pp. 316-332
-
-
D'angelo, M.A.1
Hetzer, M.W.2
-
10
-
-
33845480131
-
Autophagy counterbalances endoplasmic reticulum expansion during the unfolded protein response
-
Bernales S, McDonald KL, Walter P. 2006. Autophagy counterbalances endoplasmic reticulum expansion during the unfolded protein response. PLOS Biol. 4:e423
-
(2006)
PLOS Biol.
, vol.4
, pp. e423
-
-
Bernales, S.1
McDonald, K.L.2
Walter, P.3
-
11
-
-
79955488489
-
A 3D analysis of yeast ER structure reveals how ER domains are organized by membrane curvature
-
West M, Zurek N, Hoenger A, Voeltz GK. 2011. A 3D analysis of yeast ER structure reveals how ER domains are organized by membrane curvature. J. Cell Biol. 193:333-46
-
(2011)
J. Cell Biol.
, vol.193
, pp. 333-346
-
-
West, M.1
Zurek, N.2
Hoenger, A.3
Voeltz, G.K.4
-
12
-
-
81355137930
-
The ER in 3D: A multifunctional dynamic membrane network
-
Friedman JR, Voeltz GK. 2011. The ER in 3D: a multifunctional dynamic membrane network. Trends Cell Biol. 21:709-17
-
(2011)
Trends Cell Biol.
, vol.21
, pp. 709-717
-
-
Friedman, J.R.1
Voeltz, G.K.2
-
13
-
-
79251471434
-
Mechanisms determining the morphology of the peripheral ER
-
Shibata Y, Shemesh T, Prinz WA, Palazzo AF, Kozlov MM, Rapoport TA. 2010. Mechanisms determining the morphology of the peripheral ER. Cell 143:774-88
-
(2010)
Cell
, vol.143
, pp. 774-788
-
-
Shibata, Y.1
Shemesh, T.2
Prinz, W.A.3
Palazzo, A.F.4
Kozlov, M.M.5
Rapoport, T.A.6
-
14
-
-
0036776098
-
Structural organization of the endoplasmic reticulum
-
Voeltz GK, Rolls MM, Rapoport TA. 2002. Structural organization of the endoplasmic reticulum.EMBO Rep. 3:944-50
-
(2002)
EMBO Rep.
, vol.3
, pp. 944-950
-
-
Voeltz, G.K.1
Rolls, M.M.2
Rapoport, T.A.3
-
16
-
-
84880516529
-
Stacked endoplasmic reticulum sheets are connected by helicoidal membrane motifs
-
Terasaki M, Shemesh T, Kasthuri N, Klemm RW, Schalek R, et al. 2013. Stacked endoplasmic reticulum sheets are connected by helicoidal membrane motifs. Cell 154:285-96
-
(2013)
Cell
, vol.154
, pp. 285-296
-
-
Terasaki, M.1
Shemesh, T.2
Kasthuri, N.3
Klemm, R.W.4
Schalek, R.5
-
17
-
-
0035038577
-
Endoplasmic reticulum of animal cells and its organization into structural and functional domains
-
Baumann O, Walz B. 2001. Endoplasmic reticulum of animal cells and its organization into structural and functional domains. Int. Rev. Cytol. 205:149-214
-
(2001)
Int. Rev. Cytol
, vol.205
, pp. 149-214
-
-
Baumann, O.1
Walz, B.2
-
19
-
-
0027243406
-
Sorting of membrane components from endosomes and subsequent recycling to the cell surface occurs by a bulk flow process
-
Mayor S, Presley JF, Maxfield FR. 1993. Sorting of membrane components from endosomes and subsequent recycling to the cell surface occurs by a bulk flow process. J. Cell Biol. 121:1257-69
-
(1993)
J. Cell Biol.
, vol.121
, pp. 1257-1269
-
-
Mayor, S.1
Presley, J.F.2
Maxfield, F.R.3
-
20
-
-
0024842857
-
Iterative fractionation of recycling receptors from lysosomally destined ligands in an early sorting endosome
-
Dunn KW, McGraw TE, Maxfield FR. 1989. Iterative fractionation of recycling receptors from lysosomally destined ligands in an early sorting endosome. J. Cell Biol. 109:3303-14
-
(1989)
J. Cell Biol.
, vol.109
, pp. 3303-3314
-
-
Dunn, K.W.1
McGraw, T.E.2
Maxfield, F.R.3
-
21
-
-
84868553879
-
Plasma membrane tethering of the cortical ER necessitates its finely reticulated architecture
-
Zhang D, Vjestica A, Oliferenko S. 2012. Plasma membrane tethering of the cortical ER necessitates its finely reticulated architecture. Curr. Biol. 22:2048-52
-
(2012)
Curr. Biol.
, vol.22
, pp. 2048-2052
-
-
Zhang, D.1
Vjestica, A.2
Oliferenko, S.3
-
22
-
-
0033636778
-
Junctophilins: A novel family of junctional membrane complex proteins
-
Takeshima H, Komazaki S, Nishi M, Iino M, KangawaK. 2000. Junctophilins: a novel family of junctional membrane complex proteins. Mol. Cell 6:11-22
-
(2000)
Mol. Cell
, vol.6
, pp. 11-22
-
-
Takeshima, H.1
Komazaki, S.2
Nishi, M.3
Iino, M.4
Kangawa, K.5
-
23
-
-
0028324398
-
Control of calcium release in functioning skeletal muscle fibers
-
Schneider MF. 1994. Control of calcium release in functioning skeletal muscle fibers. Annu. Rev. Physiol. 56:463-84
-
(1994)
Annu. Rev. Physiol.
, vol.56
, pp. 463-484
-
-
Schneider, M.F.1
-
24
-
-
0024245148
-
Structural evidence for direct interaction between the molecular components of the transverse tubule/sarcoplasmic reticulum junction in skeletal muscle
-
Block BA, Imagawa T, Campbell KP, Franzini-Armstrong C. 1988. Structural evidence for direct interaction between the molecular components of the transverse tubule/sarcoplasmic reticulum junction in skeletal muscle. J. Cell Biol. 107:2587-600
-
(1988)
J. Cell Biol.
, vol.107
, pp. 2587-2600
-
-
Block, B.A.1
Imagawa, T.2
Campbell, K.P.3
Franzini-Armstrong, C.4
-
25
-
-
85006142608
-
Studies of the triad: I. Structure of the junction in frog twitch fibers
-
Franzini-Armstrong C. 1970. Studies of the triad: I. Structure of the junction in frog twitch fibers. J. Cell Biol. 47:488-99
-
(1970)
J. Cell Biol.
, vol.47
, pp. 488-499
-
-
Franzini-Armstrong, C.1
-
27
-
-
0033521586
-
Quasi-synaptic calcium signal transmission between endoplasmic reticulum and mitochondria
-
Csordas G, Thomas AP, Hajnoczky G. 1999. Quasi-synaptic calcium signal transmission between endoplasmic reticulum and mitochondria. EMBO J. 18:96-108
-
(1999)
EMBO J.
, vol.18
, pp. 96-108
-
-
Csordas, G.1
Thomas, A.P.2
Hajnoczky, G.3
-
28
-
-
47949132511
-
Oligomerization of STIM1 couples ER calcium depletion to CRAC channel activation
-
Luik RM, Wang B, Prakriya M, Wu MM, Lewis RS. 2008. Oligomerization of STIM1 couples ER calcium depletion to CRAC channel activation. Nature 454:538-42
-
(2008)
Nature
, vol.454
, pp. 538-542
-
-
Luik, R.M.1
Wang, B.2
Prakriya, M.3
Wu, M.M.4
Lewis, R.S.5
-
29
-
-
61349137530
-
STIM1 clusters and activates CRAC channels via direct binding of a cytosolic domain to Orai1
-
Park CY, Hoover PJ, Mullins FM, Bachhawat P, Covington ED, et al. 2009. STIM1 clusters and activates CRAC channels via direct binding of a cytosolic domain to Orai1. Cell 136:876-90
-
(2009)
Cell
, vol.136
, pp. 876-890
-
-
Park, C.Y.1
Hoover, P.J.2
Mullins, F.M.3
Bachhawat, P.4
Covington, E.D.5
-
32
-
-
0021748350
-
Localization of endoplasmic reticulum in living and glutaraldehyde-fixed cells with fluorescent dyes
-
Terasaki M, Song J, Wong JR, Weiss MJ, Chen LB. 1984. Localization of endoplasmic reticulum in living and glutaraldehyde-fixed cells with fluorescent dyes. Cell 38:101-8
-
(1984)
Cell
, vol.38
, pp. 101-108
-
-
Terasaki, M.1
Song, J.2
Wong, J.R.3
Weiss, M.J.4
Chen, L.B.5
-
33
-
-
0023025842
-
Microtubules and the endoplasmic reticulum are highly interdependent structures
-
Terasaki M, Chen LB, Fujiwara K. 1986. Microtubules and the endoplasmic reticulum are highly interdependent structures. J. Cell Biol. 103:1557-68
-
(1986)
J. Cell Biol.
, vol.103
, pp. 1557-1568
-
-
Terasaki, M.1
Chen, L.B.2
Fujiwara, K.3
-
34
-
-
0032474825
-
Endoplasmic reticulum membrane tubules are distributed by microtubules in living cells using three distinct mechanisms
-
Waterman-Storer CM, Salmon ED. 1998. Endoplasmic reticulum membrane tubules are distributed by microtubules in living cells using three distinct mechanisms. Curr. Biol. 8:798-806
-
(1998)
Curr. Biol.
, vol.8
, pp. 798-806
-
-
Waterman-Storer, C.M.1
Salmon, E.D.2
-
35
-
-
70350164417
-
How and why does the endoplasmic reticulummove?
-
Bola B, Allan V. 2009. How and why does the endoplasmic reticulummove? Biochem. Soc. Trans. 37:961-65
-
(2009)
Biochem. Soc. Trans
, vol.37
, pp. 961-965
-
-
Bola, B.1
Allan, V.2
-
36
-
-
0023693945
-
Dynamic behavior of endoplasmic reticulum in living cells
-
Lee C, Chen LB. 1988. Dynamic behavior of endoplasmic reticulum in living cells. Cell 54:37-46
-
(1988)
Cell
, vol.54
, pp. 37-46
-
-
Lee, C.1
Chen, L.B.2
-
37
-
-
0036198747
-
Endoplasmic reticulum dynamics, inheritance, and cytoskeletal interactions in budding yeast
-
Fehrenbacher KL, Davis D, Wu M, Boldogh I, Pon LA. 2002. Endoplasmic reticulum dynamics, inheritance, and cytoskeletal interactions in budding yeast. Mol. Biol. Cell 13:854-65
-
(2002)
Mol. Biol. Cell
, vol.13
, pp. 854-865
-
-
Fehrenbacher, K.L.1
Davis, D.2
Wu, M.3
Boldogh, I.4
Pon, L.A.5
-
38
-
-
49649084487
-
The reticulon and DP1/Yop1p proteins form immobile oligomers in the tubular endoplasmic reticulum
-
Shibata Y, Voss C, Rist JM, Hu J, Rapoport TA, et al. 2008. The reticulon and DP1/Yop1p proteins form immobile oligomers in the tubular endoplasmic reticulum. J. Biol. Chem. 283:18892-904
-
(2008)
J. Biol. Chem.
, vol.283
, pp. 18892-18904
-
-
Shibata, Y.1
Voss, C.2
Rist, J.M.3
Hu, J.4
Rapoport, T.A.5
-
39
-
-
0032144201
-
Stacks on tracks: The plant Golgi apparatus traffics on an actin/ER network
-
Boevink P, Oparka K, Santa Cruz S, Martin B, Betteridge A, Hawes C. 1998. Stacks on tracks: the plant Golgi apparatus traffics on an actin/ER network. Plant J. 15:441-47
-
(1998)
Plant J.
, vol.15
, pp. 441-447
-
-
Boevink, P.1
Oparka, K.2
Santa Cruz, S.3
Martin, B.4
Betteridge, A.5
Hawes, C.6
-
40
-
-
77951052587
-
Myosin-dependent endoplasmic reticulum motility and F-actin organization in plant cells
-
Ueda H, Yokota E, Kutsuna N, Shimada T, Tamura K, et al. 2010. Myosin-dependent endoplasmic reticulum motility and F-actin organization in plant cells. PNAS 107:6894-99
-
(2010)
PNAS
, vol.107
, pp. 6894-6899
-
-
Ueda, H.1
Yokota, E.2
Kutsuna, N.3
Shimada, T.4
Tamura, K.5
-
41
-
-
0024403341
-
Dynamics of the endoplasmic reticulum in living non-muscle and muscle cells
-
Sanger JM, Dome JS, Mittal B, Somlyo AV, Sanger JW. 1989. Dynamics of the endoplasmic reticulum in living non-muscle and muscle cells. Cell Motil. Cytoskelet. 13:301-19
-
(1989)
Cell Motil. Cytoskelet
, vol.13
, pp. 301-319
-
-
Sanger, J.M.1
Dome, J.S.2
Mittal, B.3
Somlyo, A.V.4
Sanger, J.W.5
-
42
-
-
0036678723
-
Endoplasmic reticulum calcium release is modulated by actin polymerization
-
Wang Y, Mattson MP, Furukawa K. 2002. Endoplasmic reticulum calcium release is modulated by actin polymerization. J. Neurochem. 82:945-52
-
(2002)
J. NeuroChem.
, vol.82
, pp. 945-952
-
-
Wang, Y.1
Mattson, M.P.2
Furukawa, K.3
-
43
-
-
78650515235
-
Myosin-Va transports the endoplasmic reticulum into the dendritic spines of Purkinje neurons
-
Wagner W, Brenowitz SD, Hammer JA 3rd. 2011. Myosin-Va transports the endoplasmic reticulum into the dendritic spines of Purkinje neurons. Nat. Cell Biol. 13:40-48
-
(2011)
Nat. Cell Biol.
, vol.13
, pp. 40-48
-
-
Wagner, W.1
Brenowitz, S.D.2
Hammer, J.A.3
-
44
-
-
0031784059
-
Transport of ER vesicles on actin filaments in neurons by myosin v
-
Tabb JS, Molyneaux BJ, Cohen DL, Kuznetsov SA, Langford GM. 1998. Transport of ER vesicles on actin filaments in neurons by myosin V. J. Cell Sci. 111:3221-34
-
(1998)
J. Cell Sci.
, vol.111
, pp. 3221-3234
-
-
Tabb, J.S.1
Molyneaux, B.J.2
Cohen, D.L.3
Kuznetsov, S.A.4
Langford, G.M.5
-
45
-
-
84898739483
-
ER sheet persistence is coupled to myosin 1c-regulated dynamic actin filament arrays
-
Joensuu M, Belevich I, Ramo O, Nevzorov I, Vihinen H, et al. 2014. ER sheet persistence is coupled to myosin 1c-regulated dynamic actin filament arrays. Mol. Biol. Cell 25:1111-26
-
(2014)
Mol. Biol. Cell
, vol.25
, pp. 1111-1126
-
-
Joensuu, M.1
Belevich, I.2
Ramo, O.3
Nevzorov, I.4
Vihinen, H.5
-
46
-
-
77955459468
-
ER sliding dynamics and ER-mitochondrial contacts occur on acetylated microtubules
-
Friedman JR, Webster BM, Mastronarde DN, Verhey KJ, Voeltz GK. 2010. ER sliding dynamics and ER-mitochondrial contacts occur on acetylated microtubules. J. Cell Biol. 190:363-75
-
(2010)
J. Cell Biol.
, vol.190
, pp. 363-375
-
-
Friedman, J.R.1
Webster, B.M.2
Mastronarde, D.N.3
Verhey, K.J.4
Voeltz, G.K.5
-
47
-
-
38949126881
-
STIM1 is a MT-plusend- tracking protein involved in remodeling of the ER
-
Grigoriev I, Gouveia SM, van der Vaart B, Demmers J, Smyth JT, et al. 2008. STIM1 is a MT-plusend- tracking protein involved in remodeling of the ER. Curr. Biol. 18:177-82
-
(2008)
Curr. Biol.
, vol.18
, pp. 177-182
-
-
Grigoriev, I.1
Gouveia, S.M.2
Van Der Vaart, B.3
Demmers, J.4
Smyth, J.T.5
-
48
-
-
0028019867
-
Kinesin-mediated organelle translocation revealed by specific cellular manipulations
-
Feiguin F, Ferreira A, Kosik KS, Caceres A. 1994. Kinesin-mediated organelle translocation revealed by specific cellular manipulations. J. Cell Biol. 127:1021-39
-
(1994)
J. Cell Biol.
, vol.127
, pp. 1021-1039
-
-
Feiguin, F.1
Ferreira, A.2
Kosik, K.S.3
Caceres, A.4
-
49
-
-
68949167657
-
Role of kinesin-1 and cytoplasmic dynein in endoplasmic reticulum movement in VERO cells
-
Wozniak MJ, Bola B, Brownhill K, Yang YC, Levakova V, Allan VJ. 2009. Role of kinesin-1 and cytoplasmic dynein in endoplasmic reticulum movement in VERO cells. J. Cell Sci. 122:1979-89
-
(2009)
J. Cell Sci.
, vol.122
, pp. 1979-1989
-
-
Wozniak, M.J.1
Bola, B.2
Brownhill, K.3
Yang, Y.C.4
Levakova, V.5
Allan, V.J.6
-
50
-
-
1242349907
-
Kinesin dependent, rapid, bidirectional transport of ER sub-compartment in dendrites of hippocampal neurons
-
Bannai H, Inoue T, Nakayama T, Hattori M, Mikoshiba K. 2004. Kinesin dependent, rapid, bidirectional transport of ER sub-compartment in dendrites of hippocampal neurons. J. Cell Sci. 117:163-75
-
(2004)
J. Cell Sci.
, vol.117
, pp. 163-175
-
-
Bannai, H.1
Inoue, T.2
Nakayama, T.3
Hattori, M.4
Mikoshiba, K.5
-
51
-
-
33751572018
-
Cargo selection by specific kinesin light chain 1 isoforms
-
Wozniak MJ, Allan VJ. 2006. Cargo selection by specific kinesin light chain 1 isoforms. EMBO J. 25:5457-68
-
(2006)
EMBO J.
, vol.25
, pp. 5457-5468
-
-
Wozniak, M.J.1
Allan, V.J.2
-
52
-
-
0029128472
-
Membrane/microtubule tip attachment complexes (TACs) allow the assembly dynamics of plus ends to push and pull membranes into tubulovesicular networks in interphase Xenopus egg extracts
-
Waterman-Storer CM, Gregory J, Parsons SF, Salmon ED. 1995. Membrane/microtubule tip attachment complexes (TACs) allow the assembly dynamics of plus ends to push and pull membranes into tubulovesicular networks in interphase Xenopus egg extracts. J. Cell Biol. 130:1161-69
-
(1995)
J. Cell Biol.
, vol.130
, pp. 1161-1169
-
-
Waterman-Storer, C.M.1
Gregory, J.2
Parsons, S.F.3
Salmon, E.D.4
-
55
-
-
0034618102
-
Mutants affecting the structure of the cortical endoplasmic reticulum in Saccharomyces cerevisiae
-
Prinz WA, Grzyb L, Veenhuis M, Kahana JA, Silver PA, Rapoport TA. 2000. Mutants affecting the structure of the cortical endoplasmic reticulum in Saccharomyces cerevisiae. J. Cell Biol. 150:461-74
-
(2000)
J. Cell Biol.
, vol.150
, pp. 461-474
-
-
Prinz, W.A.1
Grzyb, L.2
Veenhuis, M.3
Kahana, J.A.4
Silver, P.A.5
Rapoport, T.A.6
-
56
-
-
80054844842
-
ER tubules mark sites of mitochondrial division
-
Friedman JR, Lackner LL, West M, DiBenedetto JR, Nunnari J, Voeltz GK. 2011. ER tubules mark sites of mitochondrial division. Science 334:358-62
-
(2011)
Science
, vol.334
, pp. 358-362
-
-
Friedman, J.R.1
Lackner, L.L.2
West, M.3
Dibenedetto, J.R.4
Nunnari, J.5
Voeltz, G.K.6
-
57
-
-
84875462369
-
Endoplasmic reticulum-endosome contact increases as endosomes traffic and mature
-
Friedman JR, Dibenedetto JR, West M, Rowland AA, Voeltz GK. 2013. Endoplasmic reticulum-endosome contact increases as endosomes traffic and mature. Mol. Biol. Cell 24:1030-40
-
(2013)
Mol. Biol. Cell
, vol.24
, pp. 1030-1040
-
-
Friedman, J.R.1
Dibenedetto, J.R.2
West, M.3
Rowland, A.A.4
Voeltz, G.K.5
-
58
-
-
84879899805
-
Local cytoskeletal and organelle interactions impact molecular-motor-driven early endosomal trafficking
-
Zajac AL, Goldman YE, Holzbaur EL, Ostap EM. 2013. Local cytoskeletal and organelle interactions impact molecular-motor-driven early endosomal trafficking. Curr. Biol. 23:1173-80
-
(2013)
Curr. Biol.
, vol.23
, pp. 1173-1180
-
-
Zajac, A.L.1
Goldman, Y.E.2
Holzbaur, E.L.3
Ostap, E.M.4
-
59
-
-
84911472010
-
ER contact sites define the position and timing of endosome fission
-
Rowland AA, Chitwood PJ, Phillips MJ, Voeltz GK. 2014. ER contact sites define the position and timing of endosome fission. Cell 159:1027-41
-
(2014)
Cell
, vol.159
, pp. 1027-1041
-
-
Rowland, A.A.1
Chitwood, P.J.2
Phillips, M.J.3
Voeltz, G.K.4
-
60
-
-
0038799728
-
A reticular rhapsody: Phylogenic evolution and nomenclature of the RTN/Nogo gene family
-
Oertle T, Klinger M, Stuermer CA, Schwab ME. 2003. A reticular rhapsody: phylogenic evolution and nomenclature of the RTN/Nogo gene family. FASEB J. 17:1238-47
-
(2003)
FASEB J.
, vol.17
, pp. 1238-1247
-
-
Oertle, T.1
Klinger, M.2
Stuermer, C.A.3
Schwab, M.E.4
-
61
-
-
84861673568
-
The reticulons: Guardians of the structure and function of the endoplasmic reticulum
-
Di Sano F, Bernardoni P, Piacentini M. 2012. The reticulons: guardians of the structure and function of the endoplasmic reticulum. Exp. Cell Res. 318:1201-7
-
(2012)
Exp. Cell Res.
, vol.318
, pp. 1201-1207
-
-
Di Sano, F.1
Bernardoni, P.2
Piacentini, M.3
-
62
-
-
78149447878
-
Transmembrane domain length is responsible for the ability of a plant reticulon to shape endoplasmic reticulum tubules in vivo
-
Tolley N, Sparkes I, Craddock CP, Eastmond PJ, Runions J, et al. 2010. Transmembrane domain length is responsible for the ability of a plant reticulon to shape endoplasmic reticulum tubules in vivo. Plant J. 64:411-18
-
(2010)
Plant J.
, vol.64
, pp. 411-418
-
-
Tolley, N.1
Sparkes, I.2
Craddock, C.P.3
Eastmond, P.J.4
Runions, J.5
-
63
-
-
0027497328
-
Cloning and expression of alternative transcripts of a novel neuroendocrine-specific gene and identification of its 135-kDa translational product
-
Roebroek AJ, Van de Velde HJ, Van Bokhoven A, Broers JL, Ramaekers FC, Van de Ven WJ. 1993. Cloning and expression of alternative transcripts of a novel neuroendocrine-specific gene and identification of its 135-kDa translational product. J. Biol. Chem. 268:13439-47
-
(1993)
J. Biol. Chem.
, vol.268
, pp. 13439-13447
-
-
Roebroek, A.J.1
Van De Velde, H.J.2
Van Bokhoven, A.3
Broers, J.L.4
Ramaekers, F.C.5
Van De Ven, W.J.6
-
64
-
-
0029981285
-
Genomic organization of the human NSP gene, prototype of a novel gene family encoding reticulons
-
Roebroek AJ, Ayoubi TA, Van de Velde HJ, Schoenmakers EF, Pauli IG, Van de VenWJ. 1996. Genomic organization of the human NSP gene, prototype of a novel gene family encoding reticulons. Genomics 32:191-99
-
(1996)
Genomics
, vol.32
, pp. 191-199
-
-
Roebroek, A.J.1
Ayoubi, T.A.2
Van De Velde, H.J.3
Schoenmakers, E.F.4
Pauli, I.G.5
Van De Ven, W.J.6
-
65
-
-
0032127131
-
CDNA cloning, genomic organization, and expression of the human RTN2 gene, a member of a gene family encoding reticulons
-
Roebroek AJ, Contreras B, Pauli IG, Van de VenWJ. 1998. cDNA cloning, genomic organization, and expression of the human RTN2 gene, a member of a gene family encoding reticulons. Genomics 51:98-106
-
(1998)
Genomics
, vol.51
, pp. 98-106
-
-
Roebroek, A.J.1
Contreras, B.2
Pauli, I.G.3
Van De Ven, W.J.4
-
66
-
-
0033562960
-
Cloning of a novel member of the reticulon gene family (RTN3): Gene structure and chromosomal localization to 11q13
-
Moreira EF, Jaworski CJ, Rodriguez IR. 1999. Cloning of a novel member of the reticulon gene family (RTN3): gene structure and chromosomal localization to 11q13. Genomics 58:73-81
-
(1999)
Genomics
, vol.58
, pp. 73-81
-
-
Moreira, E.F.1
Jaworski, C.J.2
Rodriguez, I.R.3
-
67
-
-
0034719371
-
Identification of the Nogo inhibitor of axon regeneration as a Reticulon protein
-
GrandPré T, Nakamura F, Vartanian T, Strittmatter SM. 2000. Identification of the Nogo inhibitor of axon regeneration as a Reticulon protein. Nature 403:439-44
-
(2000)
Nature
, vol.403
, pp. 439-444
-
-
Grandpré, T.1
Nakamura, F.2
Vartanian, T.3
Strittmatter, S.M.4
-
68
-
-
0037225041
-
Genomic structure and functional characterisation of the promoters of human and mouse nogo/rtn4
-
Oertle T, Huber C, van der Putten H, Schwab ME. 2003. Genomic structure and functional characterisation of the promoters of human and mouse nogo/rtn4. J. Mol. Biol. 325:299-323
-
(2003)
J. Mol. Biol.
, vol.325
, pp. 299-323
-
-
Oertle, T.1
Huber, C.2
Van Der Putten, H.3
Schwab, M.E.4
-
69
-
-
0036297098
-
Caenorhabditis elegans reticulon interacts with RME-1 during embryogenesis
-
Iwahashi J, Kawasaki I, Kohara Y, Gengyo-Ando K, Mitani S, et al. 2002. Caenorhabditis elegans reticulon interacts with RME-1 during embryogenesis. Biochem. Biophys. Res. Commun. 293:698-704
-
(2002)
Biochem. Biophys. Res. Commun.
, vol.293
, pp. 698-704
-
-
Iwahashi, J.1
Kawasaki, I.2
Kohara, Y.3
Gengyo-Ando, K.4
Mitani, S.5
-
70
-
-
32044445021
-
A class of membrane proteins shaping the tubular endoplasmic reticulum
-
Voeltz GK, Prinz WA, Shibata Y, Rist JM, Rapoport TA. 2006. A class of membrane proteins shaping the tubular endoplasmic reticulum. Cell 124:573-86
-
(2006)
Cell
, vol.124
, pp. 573-586
-
-
Voeltz, G.K.1
Prinz, W.A.2
Shibata, Y.3
Rist, J.M.4
Rapoport, T.A.5
-
71
-
-
37249073837
-
Overexpression of a plant reticulon remodels the lumen of the cortical endoplasmic reticulum but does not perturb protein transport
-
Tolley N, Sparkes IA, Hunter PR, Craddock CP, Nuttall J, et al. 2008. Overexpression of a plant reticulon remodels the lumen of the cortical endoplasmic reticulum but does not perturb protein transport. Traffic 9:94-102
-
(2008)
Traffic
, vol.9
, pp. 94-102
-
-
Tolley, N.1
Sparkes, I.A.2
Hunter, P.R.3
Craddock, C.P.4
Nuttall, J.5
-
72
-
-
40449124075
-
The reticulons: A family of proteins with diverse functions
-
Yang YS, Strittmatter SM. 2007. The reticulons: a family of proteins with diverse functions. Genome Biol. 8:234
-
(2007)
Genome Biol.
, vol.8
, pp. 234
-
-
Yang, Y.S.1
Strittmatter, S.M.2
-
73
-
-
84862760991
-
Molecular basis for sculpting the endoplasmic reticulum membrane
-
Lin S, Sun S, Hu J. 2012. Molecular basis for sculpting the endoplasmic reticulum membrane. Int. J. Biochem. Cell Biol. 44:1436-43
-
(2012)
Int. J. Biochem. Cell Biol.
, vol.44
, pp. 1436-1443
-
-
Lin, S.1
Sun, S.2
Hu, J.3
-
74
-
-
78650010073
-
Reticulon short hairpin transmembrane domains are used to shape ER tubules
-
Zurek N, Sparks L, Voeltz G. 2011. Reticulon short hairpin transmembrane domains are used to shape ER tubules. Traffic 12:28-41
-
(2011)
Traffic
, vol.12
, pp. 28-41
-
-
Zurek, N.1
Sparks, L.2
Voeltz, G.3
-
75
-
-
33847164931
-
Two hydrophobic segments of the RTN1 family determine the ER localization and retention
-
Iwahashi J, Hamada N, Watanabe H. 2007. Two hydrophobic segments of the RTN1 family determine the ER localization and retention. Biochem. Biophys. Res. Commun. 355:508-12
-
(2007)
Biochem. Biophys. Res. Commun.
, vol.355
, pp. 508-512
-
-
Iwahashi, J.1
Hamada, N.2
Watanabe, H.3
-
76
-
-
23044443637
-
Reticulon 3 is involved in membrane trafficking between the endoplasmic reticulum and Golgi
-
Wakana Y, Koyama S, Nakajima K, Hatsuzawa K, Nagahama M, et al. 2005. Reticulon 3 is involved in membrane trafficking between the endoplasmic reticulum and Golgi. Biochem. Biophys. Res. Commun. 334:1198-205
-
(2005)
Biochem. Biophys. Res. Commun.
, vol.334
, pp. 1198-1205
-
-
Wakana, Y.1
Koyama, S.2
Nakajima, K.3
Hatsuzawa, K.4
Nagahama, M.5
-
77
-
-
41949122637
-
Reticulon RTN2B regulates trafficking and function of neuronal glutamate transporter EAAC1
-
Liu Y, Vidensky S, Ruggiero AM, Maier S, Sitte HH, Rothstein JD. 2008. Reticulon RTN2B regulates trafficking and function of neuronal glutamate transporter EAAC1. J. Biol. Chem. 283:6561-71
-
(2008)
J. Biol. Chem.
, vol.283
, pp. 6561-6571
-
-
Liu, Y.1
Vidensky, S.2
Ruggiero, A.M.3
Maier, S.4
Sitte, H.H.5
Rothstein, J.D.6
-
78
-
-
2042465892
-
Reticulon 1C/neuroendocrinespecific protein C interacts with SNARE proteins
-
Steiner P, Kulangara K, Sarria JC, Glauser L, Regazzi R, Hirling H. 2004. Reticulon 1C/neuroendocrinespecific protein C interacts with SNARE proteins. J. Neurochem. 89:569-80
-
(2004)
J. NeuroChem.
, vol.89
, pp. 569-580
-
-
Steiner, P.1
Kulangara, K.2
Sarria, J.C.3
Glauser, L.4
Regazzi, R.5
Hirling, H.6
-
79
-
-
40049085592
-
Membrane proteins of the endoplasmic reticulum induce high-curvature tubules
-
Hu J, Shibata Y, Voss C, Shemesh T, Li Z, et al. 2008. Membrane proteins of the endoplasmic reticulum induce high-curvature tubules. Science 319:1247-50
-
(2008)
Science
, vol.319
, pp. 1247-1250
-
-
Hu, J.1
Shibata, Y.2
Voss, C.3
Shemesh, T.4
Li, Z.5
-
80
-
-
36849012562
-
Endoplasmic reticulum remains continuous and undergoes sheet-to-tubule transformation during cell division in mammalian cells
-
Puhka M, Vihinen H, Joensuu M, Jokitalo E. 2007. Endoplasmic reticulum remains continuous and undergoes sheet-to-tubule transformation during cell division in mammalian cells. J. Cell Biol. 179:895-909
-
(2007)
J. Cell Biol.
, vol.179
, pp. 895-909
-
-
Puhka, M.1
Vihinen, H.2
Joensuu, M.3
Jokitalo, E.4
-
81
-
-
0036000025
-
Targeting of rough endoplasmic reticulum membrane proteins and ribosomes in invertebrate neurons
-
Rolls MM, Hall DH, Victor M, Stelzer EH, Rapoport TA. 2002. Targeting of rough endoplasmic reticulum membrane proteins and ribosomes in invertebrate neurons. Mol. Biol. Cell 13:1778-91
-
(2002)
Mol. Biol. Cell
, vol.13
, pp. 1778-1791
-
-
Rolls, M.M.1
Hall, D.H.2
Victor, M.3
Stelzer, E.H.4
Rapoport, T.A.5
-
82
-
-
0027284699
-
Characterization of a novel 63 kDa membrane protein. Implications for the organization of the ER-to-Golgi pathway
-
Schweizer A, Ericsson M, Bachi T, Griffiths G, Hauri HP. 1993. Characterization of a novel 63 kDa membrane protein. Implications for the organization of the ER-to-Golgi pathway. J. Cell Sci. 104:671-83
-
(1993)
J. Cell Sci.
, vol.104
, pp. 671-683
-
-
Schweizer, A.1
Ericsson, M.2
Bachi, T.3
Griffiths, G.4
Hauri, H.P.5
-
83
-
-
0035844877
-
Subdomainspecific localization ofCLIMP-63 (p63) in the endoplasmic reticulum ismediated by its luminalα-helical segment
-
Klopfenstein DR, Klumperman J, Lustig A, Kammerer RA, Oorschot V, Hauri HP. 2001. Subdomainspecific localization ofCLIMP-63 (p63) in the endoplasmic reticulum ismediated by its luminalα-helical segment. J. Cell Biol. 153:1287-300
-
(2001)
J. Cell Biol.
, vol.153
, pp. 1287-1300
-
-
Klopfenstein, D.R.1
Klumperman, J.2
Lustig, A.3
Kammerer, R.A.4
Oorschot, V.5
Hauri, H.P.6
-
84
-
-
0029045019
-
Reassessment of the subcellular localization of p63
-
Schweizer A, Rohrer J, Slot JW, Geuze HJ, Kornfeld S. 1995. Reassessment of the subcellular localization of p63. J. Cell Sci. 108(Part 6):2477-85
-
(1995)
J. Cell Sci.
, vol.108
, pp. 2477-2485
-
-
Schweizer, A.1
Rohrer, J.2
Slot, J.W.3
Geuze, H.J.4
Kornfeld, S.5
-
85
-
-
0032476663
-
A novel direct interaction of endoplasmic reticulum with microtubules
-
Klopfenstein DR, Kappeler F, Hauri HP. 1998. A novel direct interaction of endoplasmic reticulum with microtubules. EMBO J. 17:6168-77
-
(1998)
EMBO J.
, vol.17
, pp. 6168-6177
-
-
Klopfenstein, D.R.1
Kappeler, F.2
Hauri, H.P.3
-
86
-
-
69249205412
-
Homotypic fusion of ER membranes requires the dynamin-like GTPase atlastin
-
Orso G, Pendin D, Liu S, Tosetto J, Moss TJ, et al. 2009. Homotypic fusion of ER membranes requires the dynamin-like GTPase atlastin. Nature 460:978-83
-
(2009)
Nature
, vol.460
, pp. 978-983
-
-
Orso, G.1
Pendin, D.2
Liu, S.3
Tosetto, J.4
Moss, T.J.5
-
87
-
-
68049096310
-
A class of dynamin-like GTPases involved in the generation of the tubular ER network
-
Hu J, Shibata Y, Zhu PP, Voss C, Rismanchi N, et al. 2009. A class of dynamin-like GTPases involved in the generation of the tubular ER network. Cell 138:549-61
-
(2009)
Cell
, vol.138
, pp. 549-561
-
-
Hu, J.1
Shibata, Y.2
Zhu, P.P.3
Voss, C.4
Rismanchi, N.5
-
88
-
-
0742281520
-
Cellular localization, oligomerization, andmembrane association of the hereditary spastic paraplegia 3A (SPG3A) protein atlastin
-
Zhu PP, Patterson A, Lavoie B, Stadler J, Shoeb M, et al. 2003. Cellular localization, oligomerization, andmembrane association of the hereditary spastic paraplegia 3A (SPG3A) protein atlastin. J. Biol. Chem. 278:49063-71
-
(2003)
J. Biol. Chem.
, vol.278
, pp. 49063-49071
-
-
Zhu, P.P.1
Patterson, A.2
Lavoie, B.3
Stadler, J.4
Shoeb, M.5
-
89
-
-
33750445482
-
Mitochondrial fusion and fission in mammals
-
Chan DC. 2006. Mitochondrial fusion and fission in mammals. Annu. Rev. Cell Dev. Biol. 22:79-99
-
(2006)
Annu. Rev. Cell Dev. Biol.
, vol.22
, pp. 79-99
-
-
Chan, D.C.1
-
90
-
-
84873566460
-
Structural basis for conformational switching and GTP loading of the large G protein atlastin
-
Byrnes LJ, Singh A, Szeto K, Benvin NM, O'Donnell JP, et al. 2013. Structural basis for conformational switching and GTP loading of the large G protein atlastin. EMBO J. 32:369-84
-
(2013)
EMBO J.
, vol.32
, pp. 369-384
-
-
Byrnes, L.J.1
Singh, A.2
Szeto, K.3
Benvin, N.M.4
O'donnell, J.P.5
-
91
-
-
79952774592
-
Structures of the atlastin GTPase provide insight into homotypic fusion of endoplasmic reticulum membranes
-
Bian X, Klemm RW, Liu TY, Zhang M, Sun S, et al. 2011. Structures of the atlastin GTPase provide insight into homotypic fusion of endoplasmic reticulum membranes. PNAS 108:3976-81
-
(2011)
PNAS
, vol.108
, pp. 3976-3981
-
-
Bian, X.1
Klemm, R.W.2
Liu, T.Y.3
Zhang, M.4
Sun, S.5
-
92
-
-
79952298783
-
Structural basis for the nucleotide-dependent dimerization of the large G protein atlastin-1/SPG3A
-
Byrnes LJ, Sondermann H. 2011. Structural basis for the nucleotide-dependent dimerization of the large G protein atlastin-1/SPG3A. PNAS 108:2216-21
-
(2011)
PNAS
, vol.108
, pp. 2216-2221
-
-
Byrnes, L.J.1
Sondermann, H.2
-
93
-
-
80053640739
-
GTP-dependent packing of a three-helix bundle is required for atlastin-mediated fusion
-
Pendin D, Tosetto J, Moss TJ, Andreazza C, Moro S, et al. 2011. GTP-dependent packing of a three-helix bundle is required for atlastin-mediated fusion. PNAS 108:16283-88
-
(2011)
PNAS
, vol.108
, pp. 16283-16288
-
-
Pendin, D.1
Tosetto, J.2
Moss, T.J.3
Andreazza, C.4
Moro, S.5
-
94
-
-
84880617526
-
Untangling the web: Mechanisms underlying ER network formation
-
Goyal U, Blackstone C. 2013. Untangling the web: mechanisms underlying ER network formation. Biochim. Biophys. Acta 1833:2492-98
-
(2013)
Biochim. Biophys. Acta
, vol.1833
, pp. 2492-2498
-
-
Goyal, U.1
Blackstone, C.2
-
95
-
-
79960580492
-
Membrane fusion by the GTPase atlastin requires a conserved C-terminal cytoplasmic tail and dimerization through the middle domain
-
Moss TJ, Andreazza C, Verma A, Daga A, McNew JA. 2011. Membrane fusion by the GTPase atlastin requires a conserved C-terminal cytoplasmic tail and dimerization through the middle domain. PNAS 108:11133-38
-
(2011)
PNAS
, vol.108
, pp. 11133-11138
-
-
Moss, T.J.1
Andreazza, C.2
Verma, A.3
Daga, A.4
McNew, J.A.5
-
96
-
-
84864651815
-
Lipid interaction of theCterminus and association of the transmembrane segments facilitate atlastin-mediated homotypic endoplasmic reticulum fusion
-
Liu TY, Bian X, Sun S, Hu X, Klemm RW, et al. 2012. Lipid interaction of theCterminus and association of the transmembrane segments facilitate atlastin-mediated homotypic endoplasmic reticulum fusion. PNAS 109:e2146-54
-
(2012)
PNAS
, vol.109
, pp. e2146-e2154
-
-
Liu, T.Y.1
Bian, X.2
Sun, S.3
Hu, X.4
Klemm, R.W.5
-
97
-
-
84876011203
-
Endoplasmic reticulum structure and interconnections with other organelles
-
English AR, Voeltz GK. 2013. Endoplasmic reticulum structure and interconnections with other organelles. Cold Spring Harb. Perspect. Biol. 5:a013227
-
(2013)
Cold Spring Harb. Perspect. Biol.
, vol.5
, pp. a013227
-
-
English, A.R.1
Voeltz, G.K.2
-
98
-
-
84861925930
-
The dynamin-like GTPase Sey1p mediates homotypic ER fusion in S. Cerevisiae
-
Anwar K, Klemm RW, Condon A, Severin KN, Zhang M, et al. 2012. The dynamin-like GTPase Sey1p mediates homotypic ER fusion in S. cerevisiae. J. Cell Biol. 197:209-17
-
(2012)
J. Cell Biol.
, vol.197
, pp. 209-217
-
-
Anwar, K.1
Klemm, R.W.2
Condon, A.3
Severin, K.N.4
Zhang, M.5
-
99
-
-
84863195175
-
ER network formation requires a balance of the dynamin-like GTPase Sey1p and the Lunapark family member Lnp1p
-
Chen S, Novick P, Ferro-Novick S. 2012. ER network formation requires a balance of the dynamin-like GTPase Sey1p and the Lunapark family member Lnp1p. Nat. Cell Biol. 14:707-16
-
(2012)
Nat. Cell Biol.
, vol.14
, pp. 707-716
-
-
Chen, S.1
Novick, P.2
Ferro-Novick, S.3
-
101
-
-
84873358822
-
Rab10 GTPase regulates ER dynamics and morphology
-
English AR, Voeltz GK. 2013. Rab10 GTPase regulates ER dynamics and morphology. Nat. Cell Biol. 15:169-78
-
(2013)
Nat. Cell Biol.
, vol.15
, pp. 169-178
-
-
English, A.R.1
Voeltz, G.K.2
-
102
-
-
84902324691
-
Rab18 and a Rab18 GEF complex are required for normal ER structure
-
Gerondopoulos A, Bastos RN, Yoshimura S, Anderson R, Carpanini S, et al. 2014. Rab18 and a Rab18 GEF complex are required for normal ER structure. J. Cell Biol. 205:707-20
-
(2014)
J. Cell Biol.
, vol.205
, pp. 707-720
-
-
Gerondopoulos, A.1
Bastos, R.N.2
Yoshimura, S.3
Anderson, R.4
Carpanini, S.5
-
103
-
-
77957020240
-
Emerging themes of ER organization in the development and maintenance of axons
-
Renvoise B, Blackstone C. 2010. Emerging themes of ER organization in the development and maintenance of axons. Curr. Opin. Neurobiol. 20:531-37
-
(2010)
Curr. Opin. Neurobiol
, vol.20
, pp. 531-537
-
-
Renvoise, B.1
Blackstone, C.2
-
104
-
-
84856099972
-
Local zones of endoplasmic reticulum complexity confine cargo in neuronal dendrites
-
Cui-Wang T, Hanus C, Cui T, Helton T, Bourne J, et al. 2012. Local zones of endoplasmic reticulum complexity confine cargo in neuronal dendrites. Cell 148:309-21
-
(2012)
Cell
, vol.148
, pp. 309-321
-
-
Cui-Wang, T.1
Hanus, C.2
Cui, T.3
Helton, T.4
Bourne, J.5
-
105
-
-
0028136685
-
Continuous network of endoplasmic reticulum in cerebellar Purkinje neurons
-
Terasaki M, Slater NT, Fein A, Schmidek A, Reese TS. 1994. Continuous network of endoplasmic reticulum in cerebellar Purkinje neurons. PNAS 91:7510-14
-
(1994)
PNAS
, vol.91
, pp. 7510-7514
-
-
Terasaki, M.1
Slater, N.T.2
Fein, A.3
Schmidek, A.4
Reese, T.S.5
-
106
-
-
0031023590
-
Three-dimensional organization of smooth endoplasmic reticulum in hippocampal CA1 dendrites and dendritic spines of the immature and mature rat
-
Spacek J, Harris KM. 1997. Three-dimensional organization of smooth endoplasmic reticulum in hippocampal CA1 dendrites and dendritic spines of the immature and mature rat. J. Neurosci. 17:190-203
-
(1997)
J. Neurosci
, vol.17
, pp. 190-203
-
-
Spacek, J.1
Harris, K.M.2
-
107
-
-
0037447204
-
How does an axon grow?
-
Goldberg JL. 2003. How does an axon grow? Genes Dev. 17:941-58
-
(2003)
Genes Dev.
, vol.17
, pp. 941-958
-
-
Goldberg, J.L.1
-
108
-
-
84903458925
-
The role of endoplasmic reticulum in amyloid precursor protein processing and trafficking: Implications for Alzheimer's disease
-
Placido AI, Pereira CM, Duarte AI, Candeias E, Correia SC, et al. 2014. The role of endoplasmic reticulum in amyloid precursor protein processing and trafficking: Implications for Alzheimer's disease. Biochim. Biophys. Acta 1842:1444-53
-
(2014)
Biochim. Biophys. Acta
, vol.1842
, pp. 1444-1453
-
-
Placido, A.I.1
Pereira, C.M.2
Duarte, A.I.3
Candeias, E.4
Correia, S.C.5
-
110
-
-
4644357534
-
Reticulon family members modulate BACE1 activity and amyloid-βpeptide generation
-
He W, Lu Y, Qahwash I, Hu XY, Chang A, Yan R. 2004. Reticulon family members modulate BACE1 activity and amyloid-βpeptide generation. Nat. Med. 10:959-65
-
(2004)
Nat. Med.
, vol.10
, pp. 959-965
-
-
He, W.1
Lu, Y.2
Qahwash, I.3
Hu, X.Y.4
Chang, A.5
Yan, R.6
-
111
-
-
84875599536
-
Mitochondria-associated ER membranes in Alzheimer disease
-
Schon EA, Area-Gomez E. 2013. Mitochondria-associated ER membranes in Alzheimer disease. Mol. Cell Neurosci. 55:26-36
-
(2013)
Mol. Cell Neurosci
, vol.55
, pp. 26-36
-
-
Schon, E.A.1
Area-Gomez, E.2
-
112
-
-
76849108962
-
Fatty acid composition of frontal, temporal and parietal neocortex in the normal human brain and in Alzheimer's disease
-
Fraser T, Tayler H, Love S. 2010. Fatty acid composition of frontal, temporal and parietal neocortex in the normal human brain and in Alzheimer's disease. Neurochem. Res. 35:503-13
-
(2010)
Neurochem. Res.
, vol.35
, pp. 503-513
-
-
Fraser, T.1
Tayler, H.2
Love, S.3
-
114
-
-
33847686377
-
Proteomic and functional alterations in brain mitochondria from Tg2576 mice occur before amyloid plaque deposition
-
Gillardon F, Rist W, Kussmaul L, Vogel J, Berg M, et al. 2007. Proteomic and functional alterations in brain mitochondria from Tg2576 mice occur before amyloid plaque deposition. Proteomics 7:605-16
-
(2007)
Proteomics
, vol.7
, pp. 605-616
-
-
Gillardon, F.1
Rist, W.2
Kussmaul, L.3
Vogel, J.4
Berg, M.5
-
115
-
-
64349099993
-
The role of abnormal mitochondrial dynamics in the pathogenesis of Alzheimer's disease
-
Wang X, Su B, Zheng L, Perry G, Smith MA, Zhu X. 2009. The role of abnormal mitochondrial dynamics in the pathogenesis of Alzheimer's disease. J. Neurochem. 109(Suppl. 1):153-59
-
(2009)
J. NeuroChem.
, vol.109
, pp. 153-159
-
-
Wang, X.1
Su, B.2
Zheng, L.3
Perry, G.4
Smith, M.A.5
Zhu, X.6
-
116
-
-
84877337663
-
Modulation of the endoplasmic reticulum-mitochondria interface in Alzheimer's disease and related models
-
Hedskog L, Pinho CM, Filadi R, Ronnback A, Hertwig L, et al. 2013. Modulation of the endoplasmic reticulum-mitochondria interface in Alzheimer's disease and related models. PNAS 110:7916-21
-
(2013)
PNAS
, vol.110
, pp. 7916-7921
-
-
Hedskog, L.1
Pinho, C.M.2
Filadi, R.3
Ronnback, A.4
Hertwig, L.5
-
117
-
-
84868524156
-
Upregulated function of mitochondria-associated ER membranes in Alzheimer disease
-
Area-Gomez E, del Carmen Lara Castillo M, Tambini MD, Guardia-Laguarta C, de Groof AJC, et al. 2012. Upregulated function of mitochondria-associated ER membranes in Alzheimer disease. EMBO J. 31:4106-23
-
(2012)
EMBO J.
, vol.31
, pp. 4106-4123
-
-
Area-Gomez, E.1
Del Carmen Lara Castillo, M.2
Tambini, M.D.3
Guardia-Laguarta, C.4
De Groof Ajc5
-
118
-
-
84862300133
-
Generation of Alzheimer disease-associated amyloid β42/43 peptide by γ-secretase can be inhibited directly by modulation of membrane thickness
-
Winkler E, Kamp F, Scheuring J, Ebke A, Fukumori A, Steiner H. 2012. Generation of Alzheimer disease-associated amyloid β42/43 peptide by γ-secretase can be inhibited directly by modulation of membrane thickness. J. Biol. Chem. 287:21326-34
-
(2012)
J. Biol. Chem.
, vol.287
, pp. 21326-21334
-
-
Winkler, E.1
Kamp, F.2
Scheuring, J.3
Ebke, A.4
Fukumori, A.5
Steiner, H.6
-
119
-
-
0037185026
-
Phosphatidylserine transport to the mitochondria is regulated by ubiquitination
-
Schumacher MM, Choi JY, Voelker DR. 2002. Phosphatidylserine transport to the mitochondria is regulated by ubiquitination. J. Biol. Chem. 277:51033-42
-
(2002)
J. Biol. Chem.
, vol.277
, pp. 51033-51042
-
-
Schumacher, M.M.1
Choi, J.Y.2
Voelker, D.R.3
-
120
-
-
0027973135
-
A unique mitochondria-associated membrane fraction from rat liver has a high capacity for lipid synthesis and contains pre-Golgi secretory proteins including nascent lipoproteins
-
Rusinol AE, Cui Z, Chen MH, Vance JE. 1994. A unique mitochondria-associated membrane fraction from rat liver has a high capacity for lipid synthesis and contains pre-Golgi secretory proteins including nascent lipoproteins. J. Biol. Chem. 269:27494-502
-
(1994)
J. Biol. Chem.
, vol.269
, pp. 27494-27502
-
-
Rusinol, A.E.1
Cui, Z.2
Chen, M.H.3
Vance, J.E.4
-
121
-
-
84862701627
-
Cellular pathways of hereditary spastic paraplegia
-
Blackstone C. 2012. Cellular pathways of hereditary spastic paraplegia. Annu. Rev. Neurosci. 35:25-47
-
(2012)
Annu. Rev. Neurosci
, vol.35
, pp. 25-47
-
-
Blackstone, C.1
-
122
-
-
77954218288
-
Further assembly required: Construction and dynamics of the endoplasmic reticulum network
-
Park SH, Blackstone C. 2010. Further assembly required: construction and dynamics of the endoplasmic reticulum network. EMBO Rep. 11:515-21
-
(2010)
EMBO Rep.
, vol.11
, pp. 515-521
-
-
Park, S.H.1
Blackstone, C.2
-
123
-
-
79955635826
-
Mutation screening of spastin, atlastin, and REEP1 in hereditary spastic paraplegia
-
McCorquodale DS 3rd, Ozomaro U, Huang J, Montenegro G, Kushman A, et al. 2011. Mutation screening of spastin, atlastin, and REEP1 in hereditary spastic paraplegia. Clin. Genet. 79:523-30
-
(2011)
Clin. Genet.
, vol.79
, pp. 523-530
-
-
McCorquodale, D.S.1
Ozomaro, U.2
Huang, J.3
Montenegro, G.4
Kushman, A.5
-
124
-
-
55549094109
-
Hereditary spastic paraplegia: Clinical features and pathogenetic mechanisms
-
Salinas S, Proukakis C, Crosby A, Warner TT. 2008. Hereditary spastic paraplegia: clinical features and pathogenetic mechanisms. Lancet Neurol. 7:1127-38
-
(2008)
Lancet Neurol.
, vol.7
, pp. 1127-1138
-
-
Salinas, S.1
Proukakis, C.2
Crosby, A.3
Warner, T.T.4
-
125
-
-
44349157134
-
Atlastin GTPases are required for Golgi apparatus and ER morphogenesis
-
Rismanchi N, Soderblom C, Stadler J, Zhu PP, Blackstone C. 2008. Atlastin GTPases are required for Golgi apparatus and ER morphogenesis. Hum. Mol. Genet. 17:1591-604
-
(2008)
Hum. Mol. Genet.
, vol.17
, pp. 1591-1604
-
-
Rismanchi, N.1
Soderblom, C.2
Stadler, J.3
Zhu, P.P.4
Blackstone, C.5
-
126
-
-
33645834754
-
SPG3A protein atlastin-1 is enriched in growth cones and promotes axon elongation during neuronal development
-
Zhu PP, Soderblom C, Tao-Cheng JH, Stadler J, Blackstone C. 2006. SPG3A protein atlastin-1 is enriched in growth cones and promotes axon elongation during neuronal development. Hum. Mol. Genet. 15:1343-53
-
(2006)
Hum. Mol. Genet.
, vol.15
, pp. 1343-1353
-
-
Zhu, P.P.1
Soderblom, C.2
Tao-Cheng, J.H.3
Stadler, J.4
Blackstone, C.5
-
127
-
-
80052773707
-
Lgl1 activation of rab10 promotes axonal membrane trafficking underlying neuronal polarization
-
Wang T, Liu Y, Xu XH, Deng CY, Wu KY, et al. 2011. Lgl1 activation of rab10 promotes axonal membrane trafficking underlying neuronal polarization. Dev. Cell 21:431-44
-
(2011)
Dev. Cell
, vol.21
, pp. 431-444
-
-
Wang, T.1
Liu, Y.2
Xu, X.H.3
Deng, C.Y.4
Wu, K.Y.5
-
128
-
-
33746554263
-
Mutations in the novel mitochondrial protein REEP1 cause hereditary spastic paraplegia type 31
-
Zuchner S, Wang G, Tran-Viet KN, Nance MA, Gaskell PC, et al. 2006. Mutations in the novel mitochondrial protein REEP1 cause hereditary spastic paraplegia type 31. Am. J. Hum. Genet. 79:365-69
-
(2006)
Am. J. Hum. Genet.
, vol.79
, pp. 365-369
-
-
Zuchner, S.1
Wang, G.2
Tran-Viet, K.N.3
Nance, M.A.4
Gaskell, P.C.5
-
129
-
-
8844270180
-
RTP family members induce functional expression of mammalian odorant receptors
-
Saito H, Kubota M, Roberts RW, Chi Q, Matsunami H. 2004. RTP family members induce functional expression of mammalian odorant receptors. Cell 119:679-91
-
(2004)
Cell
, vol.119
, pp. 679-691
-
-
Saito, H.1
Kubota, M.2
Roberts, R.W.3
Chi, Q.4
Matsunami, H.5
-
130
-
-
84885072054
-
A spastic paraplegia mouse model reveals REEP1-dependent ER shaping
-
Beetz C, Koch N, Khundadze M, Zimmer G, Nietzsche S, et al. 2013. A spastic paraplegia mouse model reveals REEP1-dependent ER shaping. J. Clin. Investig. 123:4273-82
-
(2013)
J. Clin. Investig
, vol.123
, pp. 4273-4282
-
-
Beetz, C.1
Koch, N.2
Khundadze, M.3
Zimmer, G.4
Nietzsche, S.5
-
131
-
-
33746094658
-
Interaction of two hereditary spastic paraplegia gene products, spastin and atlastin, suggests a common pathway for axonal maintenance
-
Evans K, Keller C, Pavur K, Glasgow K, Conn B, Lauring B. 2006. Interaction of two hereditary spastic paraplegia gene products, spastin and atlastin, suggests a common pathway for axonal maintenance. PNAS 103:10666-71
-
(2006)
PNAS
, vol.103
, pp. 10666-10671
-
-
Evans, K.1
Keller, C.2
Pavur, K.3
Glasgow, K.4
Conn, B.5
Lauring, B.6
-
132
-
-
31144453436
-
Spastin and atlastin, two proteins mutated in autosomal-dominant hereditary spastic paraplegia, are binding partners
-
Sanderson CM, Connell JW, Edwards TL, Bright NA, Duley S, et al. 2006. Spastin and atlastin, two proteins mutated in autosomal-dominant hereditary spastic paraplegia, are binding partners. Hum. Mol. Genet. 15:307-18
-
(2006)
Hum. Mol. Genet.
, vol.15
, pp. 307-318
-
-
Sanderson, C.M.1
Connell, J.W.2
Edwards, T.L.3
Bright, N.A.4
Duley, S.5
-
133
-
-
0141507081
-
Replication of hepatitis C virus RNA occurs in amembrane-bound replication complex containing nonstructural viral proteins and RNA
-
El-Hage N, Luo G. 2003. Replication of hepatitis C virus RNA occurs in amembrane-bound replication complex containing nonstructural viral proteins and RNA. J. Gen. Virol. 84:2761-69
-
(2003)
J. Gen. Virol
, vol.84
, pp. 2761-2769
-
-
El-Hage, N.1
Luo, G.2
-
134
-
-
0345144016
-
Identification of the hepatitis C virus RNA replication complex in Huh-7 cells harboring subgenomic replicons
-
Gosert R, Egger D, Lohmann V, Bartenschlager R, Blum HE, et al. 2003. Identification of the hepatitis C virus RNA replication complex in Huh-7 cells harboring subgenomic replicons. J. Virol. 77:5487-92
-
(2003)
J. Virol
, vol.77
, pp. 5487-5492
-
-
Gosert, R.1
Egger, D.2
Lohmann, V.3
Bartenschlager, R.4
Blum, H.E.5
-
135
-
-
0029941322
-
Immunolocalization of the dengue virus nonstructural glycoprotein NS1 suggests a role in viral RNA replication
-
Mackenzie JM, Jones MK, Young PR. 1996. Immunolocalization of the dengue virus nonstructural glycoprotein NS1 suggests a role in viral RNA replication. Virology 220:232-40
-
(1996)
Virology
, vol.220
, pp. 232-240
-
-
Mackenzie, J.M.1
Jones, M.K.2
Young, P.R.3
-
136
-
-
54749157085
-
SARS-coronavirus replication is supported by a reticulovesicular network of modified endoplasmic reticulum
-
Knoops K, Kikkert M, Worm SH, Zevenhoven-Dobbe JC, van der Meer Y, et al. 2008. SARS-coronavirus replication is supported by a reticulovesicular network of modified endoplasmic reticulum. PLOS Biol. 6:e226
-
(2008)
PLOS Biol.
, vol.6
, pp. e226
-
-
Knoops, K.1
Kikkert, M.2
Worm, S.H.3
Zevenhoven-Dobbe, J.C.4
Van Der Meer, Y.5
-
137
-
-
0036204740
-
A positive-strand RNA virus replication complex parallels form and function of retrovirus capsids
-
Schwartz M, Chen J, Janda M, Sullivan M, den Boon J, Ahlquist P. 2002. A positive-strand RNA virus replication complex parallels form and function of retrovirus capsids. Mol. Cell 9:505-14
-
(2002)
Mol. Cell
, vol.9
, pp. 505-514
-
-
Schwartz, M.1
Chen, J.2
Janda, M.3
Sullivan, M.4
Den Boon, J.5
Ahlquist, P.6
-
138
-
-
79952365639
-
Subcellular localization and rearrangement of endoplasmic reticulum by brome mosaic virus capsid protein
-
Bamunusinghe D, Seo JK, Rao AL. 2011. Subcellular localization and rearrangement of endoplasmic reticulum by brome mosaic virus capsid protein. J. Virol. 85:2953-63
-
(2011)
J. Virol
, vol.85
, pp. 2953-2963
-
-
Bamunusinghe, D.1
Seo, J.K.2
Rao, A.L.3
-
139
-
-
0036223410
-
Japanese encephalitis virus infection initiates endoplasmic reticulum stress and an unfolded protein response
-
Su HL, Liao CL, Lin YL. 2002. Japanese encephalitis virus infection initiates endoplasmic reticulum stress and an unfolded protein response. J. Virol. 76:4162-71
-
(2002)
J. Virol
, vol.76
, pp. 4162-4171
-
-
Su, H.L.1
Liao, C.L.2
Lin, Y.L.3
-
140
-
-
0036100578
-
Expression of hepatitis C virus proteins induces distinct membrane alterations including a candidate viral replication complex
-
Egger D, Wolk B, Gosert R, Bianchi L, Blum HE, et al. 2002. Expression of hepatitis C virus proteins induces distinct membrane alterations including a candidate viral replication complex. J. Virol. 76:5974-84
-
(2002)
J. Virol
, vol.76
, pp. 5974-5984
-
-
Egger, D.1
Wolk, B.2
Gosert, R.3
Bianchi, L.4
Blum, H.E.5
-
141
-
-
64649097038
-
Composition and three-dimensional architecture of the dengue virus replication and assembly sites
-
Welsch S, Miller S, Romero-Brey I, Merz A, Bleck CK, et al. 2009. Composition and three-dimensional architecture of the dengue virus replication and assembly sites. Cell Host Microbe 5:365-75
-
(2009)
Cell Host Microbe
, vol.5
, pp. 365-375
-
-
Welsch, S.1
Miller, S.2
Romero-Brey, I.3
Merz, A.4
Bleck, C.K.5
-
142
-
-
77957957039
-
Organelle-likemembrane compartmentalization of positive-strand RNA virus replication factories
-
den Boon JA, Ahlquist P. 2010. Organelle-likemembrane compartmentalization of positive-strand RNA virus replication factories. Annu. Rev. Microbiol. 64:241-56
-
(2010)
Annu. Rev. Microbiol.
, vol.64
, pp. 241-256
-
-
Den Boon, J.A.1
Ahlquist, P.2
-
143
-
-
77958004276
-
Membrane-shaping host reticulon proteins play crucial roles in viral RNA replication compartment formation and function
-
Diaz A, Wang X, Ahlquist P. 2010. Membrane-shaping host reticulon proteins play crucial roles in viral RNA replication compartment formation and function. PNAS 107:16291-96
-
(2010)
PNAS
, vol.107
, pp. 16291-16296
-
-
Diaz, A.1
Wang, X.2
Ahlquist, P.3
-
144
-
-
84865302600
-
Role of host reticulon proteins in rearranging membranes for positive-strand RNA virus replication
-
Diaz A, Ahlquist P. 2012. Role of host reticulon proteins in rearranging membranes for positive-strand RNA virus replication. Curr. Opin. Microbiol. 15:519-24
-
(2012)
Curr. Opin. Microbiol.
, vol.15
, pp. 519-524
-
-
Diaz, A.1
Ahlquist, P.2
-
145
-
-
34247149857
-
Reticulon 3 binds the 2C protein of enterovirus 71 and is required for viral replication
-
Tang WF, Yang SY, Wu BW, Jheng JR, Chen YL, et al. 2007. Reticulon 3 binds the 2C protein of enterovirus 71 and is required for viral replication. J. Biol. Chem. 282:5888-98
-
(2007)
J. Biol. Chem.
, vol.282
, pp. 5888-5898
-
-
Tang, W.F.1
Yang, S.Y.2
Wu, B.W.3
Jheng, J.R.4
Chen, Y.L.5
-
146
-
-
84916599169
-
Reticulon 3 interacts with NS4B of the hepatitis C virus and negatively regulates viral replication by disrupting NS4B self-interaction
-
Wu MJ, Ke PY, Hsu JT, Yeh CT, Horng JT. 2014. Reticulon 3 interacts with NS4B of the hepatitis C virus and negatively regulates viral replication by disrupting NS4B self-interaction. Cell Microbiol. 16:1603-18
-
(2014)
Cell Microbiol.
, vol.16
, pp. 1603-1618
-
-
Wu, M.J.1
Ke, P.Y.2
Hsu, J.T.3
Yeh, C.T.4
Horng, J.T.5
-
147
-
-
0242624460
-
The hepatitis C virus nonstructural protein 4B is an integral endoplasmic reticulum membrane protein
-
Hugle T, Fehrmann F, Bieck E, Kohara M, Krausslich HG, et al. 2001. The hepatitis C virus nonstructural protein 4B is an integral endoplasmic reticulum membrane protein. Virology 284:70-81
-
(2001)
Virology
, vol.284
, pp. 70-81
-
-
Hugle, T.1
Fehrmann, F.2
Bieck, E.3
Kohara, M.4
Krausslich, H.G.5
-
148
-
-
18144425099
-
Mobility of the hepatitis C virus NS4B protein on the endoplasmic reticulum membrane and membrane-associated foci
-
Gretton SN, Taylor AI, McLauchlan J. 2005. Mobility of the hepatitis C virus NS4B protein on the endoplasmic reticulum membrane and membrane-associated foci. J. Gen. Virol. 86:1415-21
-
(2005)
J. Gen. Virol
, vol.86
, pp. 1415-1421
-
-
Gretton, S.N.1
Taylor, A.I.2
McLauchlan, J.3
-
149
-
-
84883321889
-
Severe acute respiratory syndrome coronavirus nonstructural proteins 3, 4, and 6 induce double-membrane vesicles
-
Angelini MM, Akhlaghpour M, Neuman BW, Buchmeier MJ. 2013. Severe acute respiratory syndrome coronavirus nonstructural proteins 3, 4, and 6 induce double-membrane vesicles. mBio 4:e00524-13
-
(2013)
MBio
, vol.4
, pp. e00524-e00613
-
-
Angelini, M.M.1
Akhlaghpour, M.2
Neuman, B.W.3
Buchmeier, M.J.4
|