-
2
-
-
34548447079
-
Unregulated actin polymerization by WASp causes defects of mitosis and cytokinesis in X-linked neutropenia
-
Moulding DA et al. 2007 Unregulated actin polymerization by WASp causes defects of mitosis and cytokinesis in X-linked neutropenia. J. Exp. Med. 204, 2213-2224. (doi:10.1084/jem.20062324)
-
(2007)
J. Exp. Med.
, vol.204
, pp. 2213-2224
-
-
Moulding, D.A.1
-
3
-
-
0028361558
-
Granulomatous reaction to Bruch's membrane in age-related macular degeneration
-
Dastgheib K, Green WR. 1994 Granulomatous reaction to Bruch's membrane in age-related macular degeneration. Arch. Ophthalmol. 112, 813-818. (doi:10.1001/archopht.1994. 01090180111045)
-
(1994)
Arch. Ophthalmol.
, vol.112
, pp. 813-818
-
-
Dastgheib, K.1
Green, W.R.2
-
4
-
-
79961000319
-
Rab35 GTPase and OCRL phosphatase remodel lipids and F-actin for successful cytokinesis
-
Dambournet D et al. 2011 Rab35 GTPase and OCRL phosphatase remodel lipids and F-actin for successful cytokinesis. Nat. Cell Biol. 13, 981-988. (doi:10.1038/ncb2279)
-
(2011)
Nat. Cell Biol.
, vol.13
, pp. 981-988
-
-
Dambournet, D.1
-
5
-
-
82755194915
-
Cytokinesis, ploidy and aneuploidy
-
Lacroix B, Maddox AS. 2012 Cytokinesis, ploidy and aneuploidy. J. Pathol. 226, 338-351. (doi:10.1002/path.3013)
-
(2012)
J. Pathol.
, vol.226
, pp. 338-351
-
-
Lacroix, B.1
Maddox, A.S.2
-
6
-
-
79958833384
-
Vesicle trafficking and membrane remodelling in cytokinesis
-
Neto H, Collins LL, Gould GW. 2011 Vesicle trafficking and membrane remodelling in cytokinesis. Biochem. J. 437, 13-24. (doi:10.1042/BJ20110153)
-
(2011)
Biochem. J.
, vol.437
, pp. 13-24
-
-
Neto, H.1
Collins, L.L.2
Gould, G.W.3
-
7
-
-
84869502243
-
Phosphoinositides and cytokinesis: The 'PIP' of the iceberg
-
Echard A. 2012 Phosphoinositides and cytokinesis: the 'PIP' of the iceberg. Cytoskeleton (Hoboken) 69, 893-912. (doi:10.1002/cm.21067)
-
(2012)
Cytoskeleton (Hoboken)
, vol.69
, pp. 893-912
-
-
Echard, A.1
-
8
-
-
84869499939
-
What drosophila spermatocytes tell us about the mechanisms underlying cytokinesis
-
Giansanti MG, Fuller MT. 2012 What Drosophila spermatocytes tell us about the mechanisms underlying cytokinesis. Cytoskeleton (Hoboken) 69, 869-881. (doi:10.1002/cm.21063)
-
(2012)
Cytoskeleton (Hoboken)
, vol.69
, pp. 869-881
-
-
Giansanti, M.G.1
Fuller, M.T.2
-
9
-
-
85008255056
-
Visualization of cleavage furrow proteins in fixed dividing spermatocytes
-
Frappaolo A, Sechi S, Belloni G, Piergentili R, Giansanti MG. 2017 Visualization of cleavage furrow proteins in fixed dividing spermatocytes. Methods Cell Biol. 137, 85-103. (doi:10.1016/bs.mcb.2016. 03.035)
-
(2017)
Methods Cell Biol.
, vol.137
, pp. 85-103
-
-
Frappaolo, A.1
Sechi, S.2
Belloni, G.3
Piergentili, R.4
Giansanti, M.G.5
-
10
-
-
12244268655
-
The drosophila cog5 homologue is required for cytokinesis, cell elongation, and assembly of specialized golgi architecture during spermatogenesis
-
Farkas RM, Giansanti MG, Gatti M, Fuller MT. 2003 The Drosophila Cog5 homologue is required for cytokinesis, cell elongation, and assembly of specialized Golgi architecture during spermatogenesis. Mol. Biol. Cell. 14, 190-200. (doi:10.1091/mbc.E02-06-0343)
-
(2003)
Mol. Biol. Cell.
, vol.14
, pp. 190-200
-
-
Farkas, R.M.1
Giansanti, M.G.2
Gatti, M.3
Fuller, M.T.4
-
11
-
-
84869498236
-
Mutations in cog7 affect golgi structure, meiotic cytokinesis and sperm development during drosophila spermatogenesis
-
Belloni G, Sechi S, Riparbelli MG, Fuller MT, Callaini G, Giansanti MG. 2012 Mutations in Cog7 affect Golgi structure, meiotic cytokinesis and sperm development during Drosophila spermatogenesis. J. Cell Sci. 125, 5441-5452. (doi:10.1242/jcs.108878)
-
(2012)
J. Cell Sci.
, vol.125
, pp. 5441-5452
-
-
Belloni, G.1
Sechi, S.2
Riparbelli, M.G.3
Fuller, M.T.4
Callaini, G.5
Giansanti, M.G.6
-
12
-
-
0036435529
-
Syntaxin 5 is required for cytokinesis and spermatid differentiation in drosophila
-
Xu H, Brill JA, Hsien J, McBride R, Boulianne GL, Trimble WS. 2002 Syntaxin 5 is required for cytokinesis and spermatid differentiation in Drosophila. Dev. Biol. 251, 294-306. (doi:10.1006/dbio.2002.0830)
-
(2002)
Dev. Biol.
, vol.251
, pp. 294-306
-
-
Xu, H.1
Brill, J.A.2
Hsien, J.3
McBride, R.4
Boulianne, G.L.5
Trimble, W.S.6
-
13
-
-
71449124848
-
TRAPPII is required for cleavage furrow ingression and localization of rab11 in dividing male meiotic cells of drosophila
-
Robinett CC, Giansanti MG, Gatti M, Fuller MT. 2009 TRAPPII is required for cleavage furrow ingression and localization of Rab11 in dividing male meiotic cells of Drosophila. J. Cell Sci. 122, 4526-4534. (doi:10.1242/jcs.054536)
-
(2009)
J. Cell Sci.
, vol.122
, pp. 4526-4534
-
-
Robinett, C.C.1
Giansanti, M.G.2
Gatti, M.3
Fuller, M.T.4
-
14
-
-
37049016221
-
Rab11 is required for membrane trafficking and actomyosin ring constriction in meiotic cytokinesis of drosophila males
-
Giansanti MG, Belloni G, Gatti M. 2007 Rab11 is required for membrane trafficking and actomyosin ring constriction in meiotic cytokinesis of Drosophila males. Mol. Biol. Cell 18, 5034-5047. (doi:10.1091/mbc.E07-05-0415)
-
(2007)
Mol. Biol. Cell
, vol.18
, pp. 5034-5047
-
-
Giansanti, M.G.1
Belloni, G.2
Gatti, M.3
-
15
-
-
38349032896
-
Spermatocyte cytokinesis requires rapid membrane addition mediated by ARF6 on central spindle recycling endosomes
-
Dyer N, Rebollo E, Domínguez P, Elkhatib N, Chavrier P, Daviet L, González C, González-Gaitán M. 2007 Spermatocyte cytokinesis requires rapid membrane addition mediated by ARF6 on central spindle recycling endosomes. Development 134, 4437-4447. (doi:10.1242/dev.010983)
-
(2007)
Development
, vol.134
, pp. 4437-4447
-
-
Dyer, N.1
Rebollo, E.2
Domínguez, P.3
Elkhatib, N.4
Chavrier, P.5
Daviet, L.6
González, C.7
González-Gaitán, M.8
-
16
-
-
84869099034
-
COPI-mediated membrane trafficking is required for cytokinesis in drosophila male meiotic divisions
-
Kitazawa D, Yamaguchi M, Mori H, Inoue YH. 2012 COPI-mediated membrane trafficking is required for cytokinesis in Drosophila male meiotic divisions. J. Cell Sci. 125, 3649-3660. (doi:10.1242/jcs.103317)
-
(2012)
J. Cell Sci.
, vol.125
, pp. 3649-3660
-
-
Kitazawa, D.1
Yamaguchi, M.2
Mori, H.3
Inoue, Y.H.4
-
17
-
-
84949256757
-
Exocyst-dependent membrane addition is required for anaphase cell elongation and cytokinesis in drosophila
-
Giansanti MG et al. 2015 Exocyst-dependent membrane addition is required for anaphase cell elongation and cytokinesis in Drosophila. PLoS Genet. 11, e1005632. (doi:10.1371/journal.pgen. 1005632)
-
(2015)
PLoS Genet.
, vol.11
, pp. e1005632
-
-
Giansanti, M.G.1
-
18
-
-
30944444955
-
The class I PITP giotto is required for drosophila cytokinesis
-
Giansanti MG, Bonaccorsi S, Kurek R, Farkas RM, Dimitri P, Fuller MT, Gatti M. 2006 The class I PITP giotto is required for Drosophila cytokinesis. Curr. Biol. 16, 195-201. (doi:0.10.16/j.cub.2005.12.011)
-
(2006)
Curr. Biol.
, vol.16
, pp. 195-201
-
-
Giansanti, M.G.1
Bonaccorsi, S.2
Kurek, R.3
Farkas, R.M.4
Dimitri, P.5
Fuller, M.T.6
Gatti, M.7
-
19
-
-
33745511725
-
The drosophila phosphatidylinositol transfer protein encoded by vibrator is essential to maintain cleavage-furrow ingression in cytokinesis
-
Gatt MK, Glover DM. 2006 The Drosophila phosphatidylinositol transfer protein encoded by vibrator is essential to maintain cleavage-furrow ingression in cytokinesis. J. Cell Sci. 119, 2225-2235. (doi:10.1242/jcs.02933)
-
(2006)
J. Cell Sci.
, vol.119
, pp. 2225-2235
-
-
Gatt, M.K.1
Glover, D.M.2
-
20
-
-
0033824820
-
A phospholipid kinase regulates actin organization and intercellular bridge formation during germline cytokinesis
-
Brill JA, Hime GR, Scharer-Schuksz M, Fuller MT. 2000 A phospholipid kinase regulates actin organization and intercellular bridge formation during germline cytokinesis. Development 127, 3855-3864.
-
(2000)
Development
, vol.127
, pp. 3855-3864
-
-
Brill, J.A.1
Hime, G.R.2
Scharer-Schuksz, M.3
Fuller, M.T.4
-
21
-
-
74049162362
-
Dual roles for the drosophila PI 4-kinase four wheel drive in localizing rab11 during cytokinesis
-
Polevoy G, Wei HC, Wong R, Szentpetery Z, Kim YJ, Goldbach P, Steinbach SK, Balla T, Brill JA. 2009 Dual roles for the Drosophila PI 4-kinase four wheel drive in localizing Rab11 during cytokinesis. J. Cell Biol. 187, 847-858. (doi:10.1083/jcb.200908107)
-
(2009)
J. Cell Biol.
, vol.187
, pp. 847-858
-
-
Polevoy, G.1
Wei, H.C.2
Wong, R.3
Szentpetery, Z.4
Kim, Y.J.5
Goldbach, P.6
Steinbach, S.K.7
Balla, T.8
Brill, J.A.9
-
22
-
-
84924275768
-
The multiple cellular functions of the oncoprotein golgi phosphoprotein 3
-
Sechi S, Frappaolo A, Belloni G, Colotti G, Giansanti MG. 2015 The multiple cellular functions of the oncoprotein Golgi phosphoprotein 3. Oncotarget 6, 3493-3506. (doi:10.18632/oncotarget.3051)
-
(2015)
Oncotarget
, vol.6
, pp. 3493-3506
-
-
Sechi, S.1
Frappaolo, A.2
Belloni, G.3
Colotti, G.4
Giansanti, M.G.5
-
23
-
-
84901594239
-
GOLPH3 is essential for contractile ring formation and rab11 localization to the cleavage site during cytokinesis in drosophila melanogaster
-
Sechi S, Colotti G, Belloni G, Mattei V, Frappaolo A, Raffa GD, Fuller MT, Giansanti MG. 2014 GOLPH3 is essential for contractile ring formation and Rab11 localization to the cleavage site during cytokinesis in Drosophila melanogaster. PLoS Genet. 10, e1004305. (doi:10.1371/journal.pgen.1004305)
-
(2014)
PLoS Genet.
, vol.10
, pp. e1004305
-
-
Sechi, S.1
Colotti, G.2
Belloni, G.3
Mattei, V.4
Frappaolo, A.5
Raffa, G.D.6
Fuller, M.T.7
Giansanti, M.G.8
-
24
-
-
84921750755
-
The roles of the oncoprotein GOLPH3 in contractile ring assembly and membrane trafficking during cytokinesis
-
Sechi S, Frappaolo A, Belloni G, Giansanti MG. 2015 The roles of the oncoprotein GOLPH3 in contractile ring assembly and membrane trafficking during cytokinesis. Biochem. Soc. Trans. 43, 117-121. (doi:10.1042/BST20140264)
-
(2015)
Biochem. Soc. Trans.
, vol.43
, pp. 117-121
-
-
Sechi, S.1
Frappaolo, A.2
Belloni, G.3
Giansanti, M.G.4
-
25
-
-
78751656754
-
Role of the rab GTPases in membrane trafficking and cell physiology
-
Hutagalung AH, Novick PJ. 2011 Role of the Rab GTPases in membrane trafficking and cell physiology. Physiol. Rev. 91, 119-149. (doi:10.1152/physrev.00059.2009)
-
(2011)
Physiol. Rev.
, vol.91
, pp. 119-149
-
-
Hutagalung, A.H.1
Novick, P.J.2
-
26
-
-
84880816067
-
Rab GTPases and membrane identity: Causal or inconsequential?
-
Barr FA. 2013 Rab GTPases and membrane identity: causal or inconsequential? J. Cell Biol. 202, 191-199. (doi:10.1083/jcb.201306010)
-
(2013)
J. Cell Biol.
, vol.202
, pp. 191-199
-
-
Barr, F.A.1
-
27
-
-
0034698202
-
Rab1 recruitment of p115 into a cis-SNARE complex: Programming budding COPII for fusion
-
Allan BB, Moyer BD, Balch WE. 2000 Rab1 recruitment of p115 into a cis-SNARE complex: programming budding COPII for fusion. Science 289, 444-448. (doi:10.1126/science.289.5478.444)
-
(2000)
Science
, vol.289
, pp. 444-448
-
-
Allan, B.B.1
Moyer, B.D.2
Balch, W.E.3
-
28
-
-
0035024551
-
Rab1 interaction with a GM130 effector complex regulates COPII vesicle cis-golgi tethering
-
Moyer BD, Allan BB, Balch WE. 2001 Rab1 interaction with a GM130 effector complex regulates COPII vesicle cis-Golgi tethering. Traffic 2, 268-276. (doi:10.1034/j.1600-0854.2001.1o007.x)
-
(2001)
Traffic
, vol.2
, pp. 268-276
-
-
Moyer, B.D.1
Allan, B.B.2
Balch, W.E.3
-
29
-
-
0035035657
-
The golgi matrix protein GM130: A specific interacting partner of the small GTPase rab1b
-
Weide T, Bayer M, Köster M, Siebrasse JP, Peters R, Barnekow A. 2001 The Golgi matrix protein GM130: a specific interacting partner of the small GTPase Rab1B. EMBO Rep. 2, 336-341. (doi:10.1093/embo-reports/kve065)
-
(2001)
EMBO Rep.
, vol.2
, pp. 336-341
-
-
Weide, T.1
Bayer, M.2
Köster, M.3
Siebrasse, J.P.4
Peters, R.5
Barnekow, A.6
-
30
-
-
34347386746
-
Rab1B interacts with GBF1 and modulates both ARF1 dynamics and COPI association
-
Monetta P, Slavin I, Romero N, Alvarez C. 2007 Rab1B interacts with GBF1 and modulates both ARF1 dynamics and COPI association. Mol. Biol. Cell. 18, 2400-2410. (doi:10.1091/mbc.E06-11-1005)
-
(2007)
Mol. Biol. Cell.
, vol.18
, pp. 2400-2410
-
-
Monetta, P.1
Slavin, I.2
Romero, N.3
Alvarez, C.4
-
31
-
-
84912068759
-
Rab1A is an mTORC1 activator and a colorectal oncogene
-
Thomas JD, Zhang YJ, Wei YH, Cho JH, Morris LE, Wang HY, Zheng XF. 2014 Rab1A is an mTORC1 activator and a colorectal oncogene. Cancer Cell 26, 754-769. (doi:10.1016/j.ccell.2014.09.008)
-
(2014)
Cancer Cell
, vol.26
, pp. 754-769
-
-
Thomas, J.D.1
Zhang, Y.J.2
Wei, Y.H.3
Cho, J.H.4
Morris, L.E.5
Wang, H.Y.6
Zheng, X.F.7
-
32
-
-
84940749205
-
Aberrant amino acid signaling promotes growth and metastasis of hepatocellular carcinomas through rab1a-dependent activation of mTORC1 by rab1a
-
Xu BH, Li XX, Yang Y, Zhang MY, Rao HL, Wang HY, Zheng XF. 2015 Aberrant amino acid signaling promotes growth and metastasis of hepatocellular carcinomas through Rab1A-dependent activation of mTORC1 by Rab1A. Oncotarget 6, 20 813-20 828. (doi:10.18632/oncotarget.5175)
-
(2015)
Oncotarget
, vol.6
, pp. 813-828
-
-
Xu, B.H.1
Li, X.X.2
Yang, Y.3
Zhang, M.Y.4
Rao, H.L.5
Wang, H.Y.6
Zheng, X.F.7
-
33
-
-
84893801398
-
Drosophila tempura, a novel protein prenyltransferase α subunit, regulates notch signaling via rab1 and rab11
-
Charng WL et al. 2014 Drosophila Tempura, a novel protein prenyltransferase α subunit, regulates Notch signaling via Rab1 and Rab11. PLoS Biol. 12, e1001777. (doi:10.1371/journal.pbio.1001777)
-
(2014)
PLoS Biol.
, vol.12
, pp. e1001777
-
-
Charng, W.L.1
-
34
-
-
77956527508
-
Regulation of integrin beta 1 recycling to lipid rafts by rab1a to promote cell migration
-
Wang C, Yoo Y, Fan H, Kim E, Guan KL, Guan JL. 2010 Regulation of integrin beta 1 recycling to lipid rafts by Rab1A to promote cell migration. J. Biol. Chem. 285, 29 398-29 405. (doi:10.1074/jbc.M110.141440)
-
(2010)
J. Biol. Chem.
, vol.285
, pp. 398-405
-
-
Wang, C.1
Yoo, Y.2
Fan, H.3
Kim, E.4
Guan, K.L.5
Guan, J.L.6
-
35
-
-
25844489089
-
Trs85 (Gsg1), a component of the TRAPP complexes, is required for the organization of the preautophagosomal structure during selective autophagy via the cvt pathway
-
Meiling-Wesse K, Eppel UD, Krick R, Barth H, Appelles A, Voss C, Eskelinen EL, Thumm M. 2005 Trs85 (Gsg1), a component of the TRAPP complexes, is required for the organization of the preautophagosomal structure during selective autophagy via the Cvt pathway. J. Biol. Chem. 280, 33 669-33 678. (doi:10.1074/jbc.M501701200)
-
(2005)
J. Biol. Chem.
, vol.280
, pp. 669-678
-
-
Meiling-Wesse, K.1
Eppel, U.D.2
Krick, R.3
Barth, H.4
Appelles, A.5
Voss, C.6
Eskelinen, E.L.7
Thumm, M.8
-
36
-
-
84957649648
-
Ypt1/Rab1 regulates hrr25/CK1delta kinase activity in ER-golgi traffic and macroautophagy
-
Wang J, Davis S, Menon S, Zhang J, Ding J, Cervantes S, Miller E, Jiang Y, Ferro-Novick S. 2015 Ypt1/Rab1 regulates Hrr25/CK1delta kinase activity in ER-Golgi traffic and macroautophagy. J. Cell Biol. 210, 273-285. (doi:10.1083/jcb.201408075)
-
(2015)
J. Cell Biol.
, vol.210
, pp. 273-285
-
-
Wang, J.1
Davis, S.2
Menon, S.3
Zhang, J.4
Ding, J.5
Cervantes, S.6
Miller, E.7
Jiang, Y.8
Ferro-Novick, S.9
-
37
-
-
84962087266
-
Rab1 in cell signaling, cancer and other diseases
-
Yang XZ, Li XX, Zhang YJ, Rodriguez-Rodriguez L, Xiang MQ, Wang HY, Zheng XF. 2016 Rab1 in cell signaling, cancer and other diseases. Oncogene 35, 5699-5704. (doi:10.1038/onc.2016.81)
-
(2016)
Oncogene
, vol.35
, pp. 5699-5704
-
-
Yang, X.Z.1
Li, X.X.2
Zhang, Y.J.3
Rodriguez-Rodriguez, L.4
Xiang, M.Q.5
Wang, H.Y.6
Zheng, X.F.7
-
38
-
-
84917743583
-
Expression pattern of the PRDX2, RAB1A, RAB1B, RAB5A and RAB25 genes in normal and cancer cervical tissues
-
Nikoshkov A, Broliden K, Attarha S, Sviatoha V, Hellstrom AC, Mints M, Andersson S. 2015 Expression pattern of the PRDX2, RAB1A, RAB1B, RAB5A and RAB25 genes in normal and cancer cervical tissues. Int. J. Oncol. 46, 107-112. (doi:10.3892/ijo.2014.2724)
-
(2015)
Int. J. Oncol.
, vol.46
, pp. 107-112
-
-
Nikoshkov, A.1
Broliden, K.2
Attarha, S.3
Sviatoha, V.4
Hellstrom, A.C.5
Mints, M.6
Andersson, S.7
-
39
-
-
84937706053
-
Loss of rab1b promotes triple-negative breast cancer metastasis by activating TGF-beta/SMAD signaling
-
Jiang HL, Sun HF, Gao SP, Li LD, Hu X, Wu J, Jin W. 2015 Loss of Rab1B promotes triple-negative breast cancer metastasis by activating TGF-beta/SMAD signaling. Oncotarget 6, 16 352-16 365. (doi:10.18632/oncotarget.3877)
-
(2015)
Oncotarget
, vol.6
, pp. 352-365
-
-
Jiang, H.L.1
Sun, H.F.2
Gao, S.P.3
Li, L.D.4
Hu, X.5
Wu, J.6
Jin, W.7
-
40
-
-
84901490134
-
MIR-221 promotes the development of androgen independence in prostate cancer cells via downregulation of HECTD2 and rab1a
-
Sun T, Wang X, He HH, Sweeney CJ, Liu SX, Brown M, Balk S, Lee GS, Kantoff PW. 2014 MIR-221 promotes the development of androgen independence in prostate cancer cells via downregulation of HECTD2 and Rab1A. Oncogene 33, 2790-2800. (doi:10.1038/onc.2013.230)
-
(2014)
Oncogene
, vol.33
, pp. 2790-2800
-
-
Sun, T.1
Wang, X.2
He, H.H.3
Sweeney, C.J.4
Liu, S.X.5
Brown, M.6
Balk, S.7
Lee, G.S.8
Kantoff, P.W.9
-
41
-
-
0035824897
-
Increased myocardial rab GTPase expression: A consequence and cause of cardiomyopathy
-
Wu G et al. 2001 Increased myocardial Rab GTPase expression: a consequence and cause of cardiomyopathy. Circ. Res. 89, 1130-1137. (doi:10.1161/hh2401.100427)
-
(2001)
Circ. Res.
, vol.89
, pp. 1130-1137
-
-
Wu, G.1
-
42
-
-
33746533924
-
Alpha-synuclein blocks ER-golgi traffic and rab1 rescues neuron loss in Parkinson's models
-
Cooper AA et al. 2006 Alpha-synuclein blocks ER-Golgi traffic and Rab1 rescues neuron loss in Parkinson's models. Science 313, 324-328. (doi:10.1126/science.1129462)
-
(2006)
Science
, vol.313
, pp. 324-328
-
-
Cooper, A.A.1
-
43
-
-
84857834456
-
Rab1A over-expression prevents golgi apparatus fragmentation and partially corrects motor deficits in an alpha-synuclein based rat model of Parkinson's disease
-
Coune PG, Bensadoun JC, Aebischer P, Schneider BL. 2011 Rab1A over-expression prevents Golgi apparatus fragmentation and partially corrects motor deficits in an alpha-synuclein based rat model of Parkinson's disease. J. Parkinsons Dis. 1, 373-387. (doi:10.3233/JPD-2011-11058)
-
(2011)
J. Parkinsons Dis.
, vol.1
, pp. 373-387
-
-
Coune, P.G.1
Bensadoun, J.C.2
Aebischer, P.3
Schneider, B.L.4
-
44
-
-
84962856846
-
PITPNC1 recruits RAB1B to the golgi network to drive malignant secretion
-
Halberg N, Sengelaub CA, Navrazhina K, Molina H, Uryu K, Tavazoie SF. 2016 PITPNC1 recruits RAB1B to the Golgi network to drive malignant secretion. Cancer Cell 29, 339-353. (doi:10.1016/j.ccell.2016. 02.013)
-
(2016)
Cancer Cell
, vol.29
, pp. 339-353
-
-
Halberg, N.1
Sengelaub, C.A.2
Navrazhina, K.3
Molina, H.4
Uryu, K.5
Tavazoie, S.F.6
-
45
-
-
2342624047
-
Genetic dissection of meiotic cytokinesis in drosophila males
-
Giansanti MG, Farkas RM, Bonaccorsi S, Lindsley DL, Wakimoto BT, Fuller MT, Gatti M. 2004 Genetic dissection of meiotic cytokinesis in Drosophila males. Mol. Biol. Cell. 15, 2509-2522. (doi:10.1091/mbc.E03-08-0603)
-
(2004)
Mol. Biol. Cell.
, vol.15
, pp. 2509-2522
-
-
Giansanti, M.G.1
Farkas, R.M.2
Bonaccorsi, S.3
Lindsley, D.L.4
Wakimoto, B.T.5
Fuller, M.T.6
Gatti, M.7
-
46
-
-
0035798385
-
Prenylation of rab GTPases: Molecular mechanisms and involvement in genetic disease
-
Pereira-Leal JB, Seabra MC. 2001 Prenylation of Rab GTPases: molecular mechanisms and involvement in genetic disease. J. Mol. Biol. 313, 889-901. (doi:10.1016/S0014-5793(01)02483-8)
-
(2001)
J. Mol. Biol.
, vol.313
, pp. 889-901
-
-
Pereira-Leal, J.B.1
Seabra, M.C.2
-
47
-
-
52249107516
-
A role for very-long-chain fatty acids in furrow ingression during cytokinesis in drosophila spermatocytes
-
Szafer-Glusman E, Giansanti MG, Nishihama R, Bolival B, Pringle J, Gatti M, Fuller MT. 2008 A role for very-long-chain fatty acids in furrow ingression during cytokinesis in Drosophila spermatocytes. Curr. Biol. 18, 1426-1431. (doi:10.1016/j.cub.2008. 08.061)
-
(2008)
Curr. Biol.
, vol.18
, pp. 1426-1431
-
-
Szafer-Glusman, E.1
Giansanti, M.G.2
Nishihama, R.3
Bolival, B.4
Pringle, J.5
Gatti, M.6
Fuller, M.T.7
-
48
-
-
0037043336
-
Cortical recruitment of nonmuscle myosin II in early syncytial drosophila embryos: Its role in nuclear axial expansion and its regulation by cdc2 activity
-
Royou A, Sullivan W, Karess R. 2002 Cortical recruitment of nonmuscle myosin II in early syncytial Drosophila embryos: its role in nuclear axial expansion and its regulation by Cdc2 activity. J. Cell Biol. 158, 127-137. (doi:10.1083/jcb. 200203148)
-
(2002)
J. Cell Biol.
, vol.158
, pp. 127-137
-
-
Royou, A.1
Sullivan, W.2
Karess, R.3
-
49
-
-
0032523956
-
Pavarotti encodes a kinesin-like protein required to organize the central spindle and contractile ring for cytokinesis
-
Adams RR, Tavares AA, Salzberg A, Bellen HJ, Glover DM. 1998 Pavarotti encodes a kinesin-like protein required to organize the central spindle and contractile ring for cytokinesis. Genes Dev. 12, 1483-1494. (doi:10.1101/gad.12.10.1483)
-
(1998)
Genes Dev.
, vol.12
, pp. 1483-1494
-
-
Adams, R.R.1
Tavares, A.A.2
Salzberg, A.3
Bellen, H.J.4
Glover, D.M.5
-
50
-
-
0034645066
-
Lava lamp, a novel peripheral golgi protein, is required for drosophila melanogaster cellularization
-
Sisson JC, Field C, Ventura R, Royou A, Sullivan W. 2000 Lava lamp, a novel peripheral Golgi protein, is required for Drosophila melanogaster cellularization. J. Cell Biol. 151, 905-918. (doi:10.1083/jcb. 151.4.905)
-
(2000)
J. Cell Biol.
, vol.151
, pp. 905-918
-
-
Sisson, J.C.1
Field, C.2
Ventura, R.3
Royou, A.4
Sullivan, W.5
-
51
-
-
84874602579
-
Rab1B overexpression modifies golgi size and gene expression in HeLa cells and modulates the thyrotrophin response in thyroid cells in culture
-
Romero N et al. 2013 Rab1B overexpression modifies Golgi size and gene expression in HeLa cells and modulates the thyrotrophin response in thyroid cells in culture. Mol. Biol. Cell. 24, 617-632. (doi:10.1091/mbc.E12-07-0530)
-
(2013)
Mol. Biol. Cell.
, vol.24
, pp. 617-632
-
-
Romero, N.1
-
52
-
-
77954368281
-
The phosphatidylinositol 4-kinase PI4KIIIα is required for the recruitment of GBF1 to golgi membranes
-
Dumaresq-Doiron K, Savard MF, Akam S, Costantino S, Lefrancois S. 2010 The phosphatidylinositol 4-kinase PI4KIIIα is required for the recruitment of GBF1 to Golgi membranes. J. Cell Sci. 123, 2273-2280. (doi:10.1242/jcs.055798)
-
(2010)
J. Cell Sci.
, vol.123
, pp. 2273-2280
-
-
Dumaresq-Doiron, K.1
Savard, M.F.2
Akam, S.3
Costantino, S.4
Lefrancois, S.5
-
53
-
-
84863280154
-
GBF1 (Gartenzwerg)-dependent secretion is required for drosophila tubulogenesis
-
Wang S, Meyer H, Ochoa-Espinosa A, Buchwald U, Onel S, Altenhein B, Heinisch JJ, Affolter M, Paululat A. 2012 GBF1 (Gartenzwerg)-dependent secretion is required for Drosophila tubulogenesis. J. Cell Sci. 125, 461-472. (doi:10.1242/jcs.092551)
-
(2012)
J. Cell Sci.
, vol.125
, pp. 461-472
-
-
Wang, S.1
Meyer, H.2
Ochoa-Espinosa, A.3
Buchwald, U.4
Onel, S.5
Altenhein, B.6
Heinisch, J.J.7
Affolter, M.8
Paululat, A.9
-
54
-
-
84873630243
-
Molecular insights into vesicle tethering at the golgi by the conserved oligomeric golgi (COG) complex and the golgin TATA element modulatory factor (TMF)
-
Miller VJ et al. 2013 Molecular insights into vesicle tethering at the Golgi by the conserved oligomeric Golgi (COG) complex and the golgin TATA element modulatory factor (TMF). J. Biol. Chem. 288, 4229-4240. (doi:10.1074/jbc.M112.426767)
-
(2013)
J. Biol. Chem.
, vol.288
, pp. 4229-4240
-
-
Miller, V.J.1
-
55
-
-
12344288635
-
Parallel chemical genetic and genome-wide RNAi screens identify cytokinesis inhibitors and targets
-
Eggert US, Kiger AA, Richter C, Perlman ZE, Perrimon N, Mitchison TJ, Field CM. 2004 Parallel chemical genetic and genome-wide RNAi screens identify cytokinesis inhibitors and targets. PLoS Biol. 2, e379. (doi:10.1371/journal.pbio.0020379)
-
(2004)
PLoS Biol.
, vol.2
, pp. e379
-
-
Eggert, U.S.1
Kiger, A.A.2
Richter, C.3
Perlman, Z.E.4
Perrimon, N.5
Mitchison, T.J.6
Field, C.M.7
-
56
-
-
44649182251
-
Vesicles and actin are targeted to the cleavage furrow via furrow microtubules and the central spindle
-
Albertson R, Cao J, Hsieh TS, Sullivan W. 2008 Vesicles and actin are targeted to the cleavage furrow via furrow microtubules and the central spindle. J Cell Biol. 181, 777-790. (doi:10.1083/jcb. 200803096)
-
(2008)
J Cell Biol.
, vol.181
, pp. 777-790
-
-
Albertson, R.1
Cao, J.2
Hsieh, T.S.3
Sullivan, W.4
-
57
-
-
70450223327
-
The golgi apparatus: Lessons from drosophila
-
Kondylis V, Rabouille C. 2009 The Golgi apparatus: lessons from Drosophila. FEBS Lett. 583, 3827-3838. (doi:10.1016/j.febslet.2009.09.048)
-
(2009)
FEBS Lett.
, vol.583
, pp. 3827-3838
-
-
Kondylis, V.1
Rabouille, C.2
-
58
-
-
0033950864
-
Turning on ARF: The sec7 family of guanine-nucleotide-exchange factors
-
Jackson CL, Casanova JE. 2000 Turning on ARF: the Sec7 family of guanine-nucleotide-exchange factors. Trends Cell Biol. 10, 60-67. (doi:10.1016/S0962-8924(99)01699-2)
-
(2000)
Trends Cell Biol.
, vol.10
, pp. 60-67
-
-
Jackson, C.L.1
Casanova, J.E.2
-
59
-
-
70349835304
-
GOLPH3 bridges phosphatidylinositol-4-phosphate and actomyosin to stretch and shape the golgi to promote budding
-
Dippold HC et al. 2009 GOLPH3 bridges phosphatidylinositol-4-phosphate and actomyosin to stretch and shape the Golgi to promote budding. Cell 139, 337-351. (doi:10.1016/j.cell.2009.07.052)
-
(2009)
Cell
, vol.139
, pp. 337-351
-
-
Dippold, H.C.1
-
60
-
-
70350115572
-
MTrs130 is a component of a mammalian TRAPPII complex, a rab1 GEF that binds to COPIcoated vesicles
-
Yamasaki A, Menon S, Yu S, Barrowman J, Meerloo T, Oorschot V, Klumperman J, Satoh A, Ferro-Novick S. 2009 mTrs130 is a component of a mammalian TRAPPII complex, a Rab1 GEF that binds to COPIcoated vesicles. Mol. Biol. Cell 20, 4205-4215. (doi:10.1091/mbc.E09-05-0387)
-
(2009)
Mol. Biol. Cell
, vol.20
, pp. 4205-4215
-
-
Yamasaki, A.1
Menon, S.2
Yu, S.3
Barrowman, J.4
Meerloo, T.5
Oorschot, V.6
Klumperman, J.7
Satoh, A.8
Ferro-Novick, S.9
-
61
-
-
33847208186
-
Conservation of the TRAPP-II specific subunits of a ypt/Rab exchanger complex
-
Cox R, Chen SH, Yoo E, Segev N. 2007 Conservation of the TRAPP-II specific subunits of a Ypt/Rab exchanger complex. BMC Evol. Biol. 7, 12. (doi:10.1186/1471-2148-7-12)
-
(2007)
BMC Evol. Biol.
, vol.7
, pp. 12
-
-
Cox, R.1
Chen, S.H.2
Yoo, E.3
Segev, N.4
-
62
-
-
84964820976
-
Roles of the TRAPP-II complex and the exocyst in membrane deposition during fission yeast cytokinesis
-
Wang N, Lee IJ, Rask G, Wu JQ. 2016 Roles of the TRAPP-II complex and the exocyst in membrane deposition during fission yeast cytokinesis. PLoS Biol. 14, e1002437. (doi:10.1371/journal.pbio. 1002437)
-
(2016)
PLoS Biol.
, vol.14
, pp. e1002437
-
-
Wang, N.1
Lee, I.J.2
Rask, G.3
Wu, J.Q.4
-
63
-
-
84902079417
-
Plant cytokinesis is orchestrated by the sequential action of the TRAPPII and exocyst tethering complexes
-
Rybak K et al. 2014 Plant cytokinesis is orchestrated by the sequential action of the TRAPPII and exocyst tethering complexes. Dev. Cell. 29, 607-620. (doi:10.1016/j.devcel.2014.04.029)
-
(2014)
Dev. Cell.
, vol.29
, pp. 607-620
-
-
Rybak, K.1
-
64
-
-
0037352272
-
A discrete transcriptional silencer in the bam gene determines asymmetric division of the drosophila germline stem cell
-
Chen D, McKearin DM. 2003 A discrete transcriptional silencer in the bam gene determines asymmetric division of the Drosophila germline stem cell. Development 130, 1159-1170. (doi:10.1242/dev.00325)
-
(2003)
Development
, vol.130
, pp. 1159-1170
-
-
Chen, D.1
McKearin, D.M.2
-
65
-
-
80054699755
-
Role of survivin in cytokinesis revealed by a separation-of-function allele
-
Szafer-Glusman E, Fuller MT, Giansanti MG. 2011 Role of Survivin in cytokinesis revealed by a separation-of-function allele. Mol. Biol. Cell 22, 3779-3790. (doi:10.1091/mbc.E11-06-0569)
-
(2011)
Mol. Biol. Cell
, vol.22
, pp. 3779-3790
-
-
Szafer-Glusman, E.1
Fuller, M.T.2
Giansanti, M.G.3
-
66
-
-
0025306949
-
Interphase nuclear envelope lamins form a discontinuous network that interacts with only a fraction of the chromatin in the nuclear periphery
-
Paddy MR, Belmont AS, Saumweber H, Agard DA, Sedat JW. 1990 Interphase nuclear envelope lamins form a discontinuous network that interacts with only a fraction of the chromatin in the nuclear periphery. Cell 62, 89-106. (doi:10.1016/0092-8674(90)90243-8)
-
(1990)
Cell
, vol.62
, pp. 89-106
-
-
Paddy, M.R.1
Belmont, A.S.2
Saumweber, H.3
Agard, D.A.4
Sedat, J.W.5
-
67
-
-
0027437850
-
Cdi1, a human G1 and S phase protein phosphatase that associates with cdk2
-
Gyuris J, Golemis E, Chertkov H, Brent R. 1993 Cdi1, a human G1 and S phase protein phosphatase that associates with Cdk2. Cell 75, 791-803. (doi:10.1016/0092-8674(93)90498-F)
-
(1993)
Cell
, vol.75
, pp. 791-803
-
-
Gyuris, J.1
Golemis, E.2
Chertkov, H.3
Brent, R.4
-
68
-
-
84883574636
-
Saccharomyces cerevisiae dma proteins participate in cytokinesis by controlling two different pathways
-
Cassani C, Raspelli E, Santo N, Chiroli E, Lucchini G, Fraschini R. 2013 Saccharomyces cerevisiae Dma proteins participate in cytokinesis by controlling two different pathways. Cell Cycle 12, 2794-2808. (doi:10.4161/cc.25869)
-
(2013)
Cell Cycle
, vol.12
, pp. 2794-2808
-
-
Cassani, C.1
Raspelli, E.2
Santo, N.3
Chiroli, E.4
Lucchini, G.5
Fraschini, R.6
-
69
-
-
33751550233
-
RacGAP50C is sufficient to signal cleavage furrow formation during cytokinesis
-
D'Avino PP, Savoian MS, Capalbo L, Glover DM. 2006 RacGAP50C is sufficient to signal cleavage furrow formation during cytokinesis. J. Cell Sci. 119, 4402-4408. (doi:10.1242/jcs.03210)
-
(2006)
J. Cell Sci.
, vol.119
, pp. 4402-4408
-
-
D'Avino, P.P.1
Savoian, M.S.2
Capalbo, L.3
Glover, D.M.4
|