-
1
-
-
0035798385
-
Evolution of the Rab family of small GTP-binding proteins
-
Pereira-Leal J.B., and Seabra M.C. Evolution of the Rab family of small GTP-binding proteins. J. Mol. Biol. 313 (2001) 889-901
-
(2001)
J. Mol. Biol.
, vol.313
, pp. 889-901
-
-
Pereira-Leal, J.B.1
Seabra, M.C.2
-
2
-
-
0033739462
-
Alternative splicing of the human Rab6A gene generates two close but functionally different isoforms
-
Echard A., Opdam F.J., de Leeuw H.J., Jollivet F., Savelkoul P., Hendriks W., et al. Alternative splicing of the human Rab6A gene generates two close but functionally different isoforms. Mol. Biol. Cell 11 (2000) 3819-3833
-
(2000)
Mol. Biol. Cell
, vol.11
, pp. 3819-3833
-
-
Echard, A.1
Opdam, F.J.2
de Leeuw, H.J.3
Jollivet, F.4
Savelkoul, P.5
Hendriks, W.6
-
3
-
-
0033841775
-
The small GTPase Rab6B, a novel Rab6 subfamily member, is cell-type specifically expressed and localised to the Golgi apparatus
-
Opdam F.J., Echard A., Croes H.J., van den Hurk J.A., van de Vorstenbosch R.A., Ginsel L.A., et al. The small GTPase Rab6B, a novel Rab6 subfamily member, is cell-type specifically expressed and localised to the Golgi apparatus. J. Cell Sci. 113 (2000) 2725-2735
-
(2000)
J. Cell Sci.
, vol.113
, pp. 2725-2735
-
-
Opdam, F.J.1
Echard, A.2
Croes, H.J.3
van den Hurk, J.A.4
van de Vorstenbosch, R.A.5
Ginsel, L.A.6
-
4
-
-
0027095750
-
The small GTP-binding protein rab6p is distributed from medial Golgi to the trans-Golgi network as determined by a confocal microscopic approach
-
Antony C., Cibert C., Geraud G., Santa Maria A., Maro B., Mayau V., and Goud B. The small GTP-binding protein rab6p is distributed from medial Golgi to the trans-Golgi network as determined by a confocal microscopic approach. J. Cell Sci. 103 (1992) 785-796
-
(1992)
J. Cell Sci.
, vol.103
, pp. 785-796
-
-
Antony, C.1
Cibert, C.2
Geraud, G.3
Santa Maria, A.4
Maro, B.5
Mayau, V.6
Goud, B.7
-
5
-
-
34547414652
-
Rab6 regulates transport and targeting of exocytotic carriers
-
Grigoriev I., Splinter D., Keijzer N., Wulf P.S., Demmers J., Ohtsuka T., et al. Rab6 regulates transport and targeting of exocytotic carriers. Dev. Cell 13 (2007) 305-314
-
(2007)
Dev. Cell
, vol.13
, pp. 305-314
-
-
Grigoriev, I.1
Splinter, D.2
Keijzer, N.3
Wulf, P.S.4
Demmers, J.5
Ohtsuka, T.6
-
6
-
-
33947279578
-
Visualization and quantification of vesicle trafficking on a three-dimensional cytoskeleton network in living cells
-
Racine V., Sachse M., Salamero J., Fraisier V., Trubuil A., and Sibarita J.B. Visualization and quantification of vesicle trafficking on a three-dimensional cytoskeleton network in living cells. J. Microsc. 225 (2007) 214-228
-
(2007)
J. Microsc.
, vol.225
, pp. 214-228
-
-
Racine, V.1
Sachse, M.2
Salamero, J.3
Fraisier, V.4
Trubuil, A.5
Sibarita, J.B.6
-
7
-
-
0037428439
-
Biochemical and genetic evidence for the involvement of yeast Ypt6-GTPase in protein retrieval to different Golgi compartments
-
Luo Z., and Gallwitz D. Biochemical and genetic evidence for the involvement of yeast Ypt6-GTPase in protein retrieval to different Golgi compartments. J. Biol. Chem. 278 (2003) 791-799
-
(2003)
J. Biol. Chem.
, vol.278
, pp. 791-799
-
-
Luo, Z.1
Gallwitz, D.2
-
8
-
-
34548568979
-
Rab6-interacting protein 1 links Rab6 and Rab11 function
-
Miserey-Lenkei S., Waharte F., Boulet A., Cuif M.H., Tenza D., El Marjou A., et al. Rab6-interacting protein 1 links Rab6 and Rab11 function. Traffic 8 (2007) 1385-1403
-
(2007)
Traffic
, vol.8
, pp. 1385-1403
-
-
Miserey-Lenkei, S.1
Waharte, F.2
Boulet, A.3
Cuif, M.H.4
Tenza, D.5
El Marjou, A.6
-
9
-
-
0036221752
-
Characterization of novel Rab6-interacting proteins involved in endosome-to-TGN transport
-
Monier S., Jollivet F., Janoueix-Lerosey I., Johannes L., and Goud B. Characterization of novel Rab6-interacting proteins involved in endosome-to-TGN transport. Traffic 3 (2002) 289-297
-
(2002)
Traffic
, vol.3
, pp. 289-297
-
-
Monier, S.1
Jollivet, F.2
Janoueix-Lerosey, I.3
Johannes, L.4
Goud, B.5
-
10
-
-
0037128205
-
Early/recycling endosomes-to-TGN transport involves two SNARE complexes and a Rab6 isoform
-
Mallard F., Tang B.L., Galli T., Tenza D., Saint-Pol A., Yue X., et al. Early/recycling endosomes-to-TGN transport involves two SNARE complexes and a Rab6 isoform. J. Cell Biol. 156 (2002) 653-664
-
(2002)
J. Cell Biol.
, vol.156
, pp. 653-664
-
-
Mallard, F.1
Tang, B.L.2
Galli, T.3
Tenza, D.4
Saint-Pol, A.5
Yue, X.6
-
11
-
-
18844367752
-
Characterization of the human GARP (Golgi associated retrograde protein) complex
-
Liewen H., Meinhold-Heerlein I., Oliveira V., Schwarzenbacher R., Luo G., Wadle A., et al. Characterization of the human GARP (Golgi associated retrograde protein) complex. Exp. Cell Res. 306 (2005) 24-34
-
(2005)
Exp. Cell Res.
, vol.306
, pp. 24-34
-
-
Liewen, H.1
Meinhold-Heerlein, I.2
Oliveira, V.3
Schwarzenbacher, R.4
Luo, G.5
Wadle, A.6
-
12
-
-
33644870151
-
Rab6A and Rab6A′ GTPases play non-overlapping roles in membrane trafficking
-
Del Nery E., Miserey-Lenkei S., Falguieres T., Nizak C., Johannes L., Perez F., and Goud B. Rab6A and Rab6A′ GTPases play non-overlapping roles in membrane trafficking. Traffic 7 (2006) 394-407
-
(2006)
Traffic
, vol.7
, pp. 394-407
-
-
Del Nery, E.1
Miserey-Lenkei, S.2
Falguieres, T.3
Nizak, C.4
Johannes, L.5
Perez, F.6
Goud, B.7
-
13
-
-
33646423848
-
Transport of ricin from endosomes to the Golgi apparatus is regulated by Rab6A and Rab6A′
-
Utskarpen A., Slagsvold H.H., Iversen T.G., Walchli S., and Sandvig K. Transport of ricin from endosomes to the Golgi apparatus is regulated by Rab6A and Rab6A′. Traffic 7 (2006) 663-672
-
(2006)
Traffic
, vol.7
, pp. 663-672
-
-
Utskarpen, A.1
Slagsvold, H.H.2
Iversen, T.G.3
Walchli, S.4
Sandvig, K.5
-
14
-
-
0033224214
-
Evidence for a COP-I-independent transport route from the Golgi complex to the endoplasmic reticulum
-
Girod A., Storrie B., Simpson J.C., Johannes L., Goud B., Roberts L.M., et al. Evidence for a COP-I-independent transport route from the Golgi complex to the endoplasmic reticulum. Nat. Cell Biol. 1 (1999) 423-430
-
(1999)
Nat. Cell Biol.
, vol.1
, pp. 423-430
-
-
Girod, A.1
Storrie, B.2
Simpson, J.C.3
Johannes, L.4
Goud, B.5
Roberts, L.M.6
-
15
-
-
0031056545
-
GTP-bound forms of rab6 induce the redistribution of Golgi proteins into the endoplasmic reticulum
-
Martinez O., Antony C., Pehau-Arnaudet G., Berger E.G., Salamero J., and Goud B. GTP-bound forms of rab6 induce the redistribution of Golgi proteins into the endoplasmic reticulum. Proc. Natl Acad. Sci. USA 94 (1997) 1828-1833
-
(1997)
Proc. Natl Acad. Sci. USA
, vol.94
, pp. 1828-1833
-
-
Martinez, O.1
Antony, C.2
Pehau-Arnaudet, G.3
Berger, E.G.4
Salamero, J.5
Goud, B.6
-
16
-
-
0033571602
-
Rab6 coordinates a novel Golgi to ER retrograde transport pathway in live cells
-
White J., Johannes L., Mallard F., Girod A., Grill S., Reinsch S., et al. Rab6 coordinates a novel Golgi to ER retrograde transport pathway in live cells. J. Cell Biol. 147 (1999) 743-760
-
(1999)
J. Cell Biol.
, vol.147
, pp. 743-760
-
-
White, J.1
Johannes, L.2
Mallard, F.3
Girod, A.4
Grill, S.5
Reinsch, S.6
-
17
-
-
11144265757
-
Regulation of microtubule-dependent recycling at the trans-Golgi network by Rab6A and Rab6A′
-
Young J., Stauber T., del Nery E., Vernos I., Pepperkok R., and Nilsson T. Regulation of microtubule-dependent recycling at the trans-Golgi network by Rab6A and Rab6A′. Mol. Biol. Cell 16 (2005) 162-177
-
(2005)
Mol. Biol. Cell
, vol.16
, pp. 162-177
-
-
Young, J.1
Stauber, T.2
del Nery, E.3
Vernos, I.4
Pepperkok, R.5
Nilsson, T.6
-
18
-
-
38749150383
-
Rab and Arl GTPase family members cooperate in the localization of the golgin GCC185
-
Burguete A.S., Fenn T.D., Brunger A.T., and Pfeffer S.R. Rab and Arl GTPase family members cooperate in the localization of the golgin GCC185. Cell 132 (2008) 286-298
-
(2008)
Cell
, vol.132
, pp. 286-298
-
-
Burguete, A.S.1
Fenn, T.D.2
Brunger, A.T.3
Pfeffer, S.R.4
-
19
-
-
0027240379
-
A cytosolic complex of p62 and rab6 associates with TGN38/41 and is involved in budding of exocytic vesicles from the trans-Golgi network
-
Jones S.M., Crosby J.R., Salamero J., and Howell K.E. A cytosolic complex of p62 and rab6 associates with TGN38/41 and is involved in budding of exocytic vesicles from the trans-Golgi network. J. Cell Biol. 122 (1993) 775-788
-
(1993)
J. Cell Biol.
, vol.122
, pp. 775-788
-
-
Jones, S.M.1
Crosby, J.R.2
Salamero, J.3
Howell, K.E.4
-
20
-
-
0037108473
-
The Rab6 GTPase regulates recruitment of the dynactin complex to Golgi membranes
-
Short B., Preisinger C., Schaletzky J., Kopajtich R., and Barr F.A. The Rab6 GTPase regulates recruitment of the dynactin complex to Golgi membranes. Curr. Biol. 12 (2002) 1792-1795
-
(2002)
Curr. Biol.
, vol.12
, pp. 1792-1795
-
-
Short, B.1
Preisinger, C.2
Schaletzky, J.3
Kopajtich, R.4
Barr, F.A.5
-
21
-
-
0036902478
-
Bicaudal-D regulates COPI-independent Golgi-ER transport by recruiting the dynein-dynactin motor complex
-
Matanis T., Akhmanova A., Wulf P., Del Nery E., Weide T., Stepanova T., et al. Bicaudal-D regulates COPI-independent Golgi-ER transport by recruiting the dynein-dynactin motor complex. Nat. Cell Biol. 4 (2002) 986-992
-
(2002)
Nat. Cell Biol.
, vol.4
, pp. 986-992
-
-
Matanis, T.1
Akhmanova, A.2
Wulf, P.3
Del Nery, E.4
Weide, T.5
Stepanova, T.6
-
22
-
-
0033118335
-
Characterization of GAPCenA, a GTPase activating protein for Rab6, part of which associates with the centrosome
-
Cuif M.H., Possmayer F., Zander H., Bordes N., Jollivet F., Couedel-Courteille A., et al. Characterization of GAPCenA, a GTPase activating protein for Rab6, part of which associates with the centrosome. EMBO J. 18 (1999) 1772-1782
-
(1999)
EMBO J.
, vol.18
, pp. 1772-1782
-
-
Cuif, M.H.1
Possmayer, F.2
Zander, H.3
Bordes, N.4
Jollivet, F.5
Couedel-Courteille, A.6
-
23
-
-
26844575152
-
Rab6 interacts with the mint3 adaptor protein
-
Teber I., Nagano F., Kremerskothen J., Bilbilis K., Goud B., and Barnekow A. Rab6 interacts with the mint3 adaptor protein. Biol. Chem. 386 (2005) 671-677
-
(2005)
Biol. Chem.
, vol.386
, pp. 671-677
-
-
Teber, I.1
Nagano, F.2
Kremerskothen, J.3
Bilbilis, K.4
Goud, B.5
Barnekow, A.6
-
24
-
-
0033535617
-
A novel Rab6-interacting domain defines a family of Golgi-targeted coiled-coil proteins
-
Barr F.A. A novel Rab6-interacting domain defines a family of Golgi-targeted coiled-coil proteins. Curr. Biol. 9 (1999) 381-384
-
(1999)
Curr. Biol.
, vol.9
, pp. 381-384
-
-
Barr, F.A.1
-
25
-
-
0032559265
-
Interaction of a Golgi-associated kinesin-like protein with Rab6
-
Echard A., Jollivet F., Martinez O., Lacapere J.J., Rousselet A., Janoueix-Lerosey I., and Goud B. Interaction of a Golgi-associated kinesin-like protein with Rab6. Science 279 (1998) 580-585
-
(1998)
Science
, vol.279
, pp. 580-585
-
-
Echard, A.1
Jollivet, F.2
Martinez, O.3
Lacapere, J.J.4
Rousselet, A.5
Janoueix-Lerosey, I.6
Goud, B.7
-
26
-
-
85080841975
-
-
Draper, R. (2007). Rab6A. UCSD-Nature Molecule Pages (doi:10.1038/mp.a001995.01).
-
Draper, R. (2007). Rab6A. UCSD-Nature Molecule Pages (doi:10.1038/mp.a001995.01).
-
-
-
-
27
-
-
31444439569
-
A role for the Rab6A′ GTPase in the inactivation of the Mad2-spindle checkpoint
-
Miserey-Lenkei S., Couedel-Courteille A., Del Nery E., Bardin S., Piel M., Racine V., et al. A role for the Rab6A′ GTPase in the inactivation of the Mad2-spindle checkpoint. EMBO J. 25 (2006) 278-289
-
(2006)
EMBO J.
, vol.25
, pp. 278-289
-
-
Miserey-Lenkei, S.1
Couedel-Courteille, A.2
Del Nery, E.3
Bardin, S.4
Piel, M.5
Racine, V.6
-
28
-
-
0034280113
-
Systematic subcellular localization of novel proteins identified by large-scale cDNA sequencing
-
Simpson J.C., Wellenreuther R., Poustka A., Pepperkok R., and Wiemann S. Systematic subcellular localization of novel proteins identified by large-scale cDNA sequencing. EMBO Rep. 1 (2000) 287-292
-
(2000)
EMBO Rep.
, vol.1
, pp. 287-292
-
-
Simpson, J.C.1
Wellenreuther, R.2
Poustka, A.3
Pepperkok, R.4
Wiemann, S.5
-
29
-
-
0037012561
-
WTH3, a new member of the Rab6 gene family, and multidrug resistance
-
Shan J., Yuan L., Budman D.R., and Xu H.P. WTH3, a new member of the Rab6 gene family, and multidrug resistance. Biochim. Biophys. Acta 1589 (2002) 112-123
-
(2002)
Biochim. Biophys. Acta
, vol.1589
, pp. 112-123
-
-
Shan, J.1
Yuan, L.2
Budman, D.R.3
Xu, H.P.4
-
30
-
-
6344222240
-
High-content screening microscopy identifies novel proteins with a putative role in secretory membrane traffic
-
Starkuviene V., Liebel U., Simpson J.C., Erfle H., Poustka A., Wiemann S., and Pepperkok R. High-content screening microscopy identifies novel proteins with a putative role in secretory membrane traffic. Genome Res. 14 (2004) 1948-1956
-
(2004)
Genome Res.
, vol.14
, pp. 1948-1956
-
-
Starkuviene, V.1
Liebel, U.2
Simpson, J.C.3
Erfle, H.4
Poustka, A.5
Wiemann, S.6
Pepperkok, R.7
-
31
-
-
23844499346
-
WTH3, which encodes a small G protein, is differentially regulated in multidrug-resistant and sensitive MCF7 cells
-
Tian K., Jurukovski V., Yuan L., Shan J., and Xu H. WTH3, which encodes a small G protein, is differentially regulated in multidrug-resistant and sensitive MCF7 cells. Cancer Res. 65 (2005) 7421-7428
-
(2005)
Cancer Res.
, vol.65
, pp. 7421-7428
-
-
Tian, K.1
Jurukovski, V.2
Yuan, L.3
Shan, J.4
Xu, H.5
-
32
-
-
27544434739
-
Epigenetic regulation of WTH3 in primary and cultured drug-resistant breast cancer cells
-
Tian K., Jurukovski V., Wang X.P., Kaplan M.H., and Xu H. Epigenetic regulation of WTH3 in primary and cultured drug-resistant breast cancer cells. Cancer Res. 65 (2005) 10024-10031
-
(2005)
Cancer Res.
, vol.65
, pp. 10024-10031
-
-
Tian, K.1
Jurukovski, V.2
Wang, X.P.3
Kaplan, M.H.4
Xu, H.5
-
33
-
-
57149145660
-
Methylation of WTH3, a possible drug resistant gene, inhibits p53 regulated expression
-
Tian K., Wang Y., Huang Y., Sun B., Li Y., and Xu H. Methylation of WTH3, a possible drug resistant gene, inhibits p53 regulated expression. BMC Cancer 8 (2008) 327
-
(2008)
BMC Cancer
, vol.8
, pp. 327
-
-
Tian, K.1
Wang, Y.2
Huang, Y.3
Sun, B.4
Li, Y.5
Xu, H.6
-
34
-
-
34248532843
-
WTH3 is a direct target of the p53 protein
-
Tian K., Wang Y., and Xu H. WTH3 is a direct target of the p53 protein. Br. J. Cancer 96 (2007) 1579-1586
-
(2007)
Br. J. Cancer
, vol.96
, pp. 1579-1586
-
-
Tian, K.1
Wang, Y.2
Xu, H.3
-
35
-
-
0034079713
-
Human LINE retrotransposons generate processed pseudogenes
-
Esnault C., Maestre J., and Heidmann T. Human LINE retrotransposons generate processed pseudogenes. Nat. Genet. 24 (2000) 363-367
-
(2000)
Nat. Genet.
, vol.24
, pp. 363-367
-
-
Esnault, C.1
Maestre, J.2
Heidmann, T.3
-
36
-
-
33747066408
-
The putatively functional Mkrn1-p1 pseudogene is neither expressed nor imprinted, nor does it regulate its source gene in trans
-
Gray T.A., Wilson A., Fortin P.J., and Nicholls R.D. The putatively functional Mkrn1-p1 pseudogene is neither expressed nor imprinted, nor does it regulate its source gene in trans. Proc. Natl Acad. Sci. USA 103 (2006) 12039-12044
-
(2006)
Proc. Natl Acad. Sci. USA
, vol.103
, pp. 12039-12044
-
-
Gray, T.A.1
Wilson, A.2
Fortin, P.J.3
Nicholls, R.D.4
-
37
-
-
0037357461
-
Estimation of divergence times for major lineages of primate species
-
Glazko G.V., and Nei M. Estimation of divergence times for major lineages of primate species. Mol. Biol. Evol. 20 (2003) 424-434
-
(2003)
Mol. Biol. Evol.
, vol.20
, pp. 424-434
-
-
Glazko, G.V.1
Nei, M.2
-
38
-
-
53049104549
-
Does this band make sense? Limits to expression based cancer studies
-
Williams T.K., Yeo C.J., and Brody J. Does this band make sense? Limits to expression based cancer studies. Cancer Lett. 271 (2008) 81-84
-
(2008)
Cancer Lett.
, vol.271
, pp. 81-84
-
-
Williams, T.K.1
Yeo, C.J.2
Brody, J.3
-
39
-
-
22944444569
-
Structural basis of family-wide Rab GTPase recognition by rabenosyn-5
-
Eathiraj S., Pan X., Ritacco C., and Lambright D.G. Structural basis of family-wide Rab GTPase recognition by rabenosyn-5. Nature 436 (2005) 415-419
-
(2005)
Nature
, vol.436
, pp. 415-419
-
-
Eathiraj, S.1
Pan, X.2
Ritacco, C.3
Lambright, D.G.4
-
40
-
-
59849095061
-
Orc1 controls centriole and centrosome copy number in human cells
-
Hemerly A.S., Prasanth S.G., Siddiqui K., and Stillman B. Orc1 controls centriole and centrosome copy number in human cells. Science 323 (2009) 789-793
-
(2009)
Science
, vol.323
, pp. 789-793
-
-
Hemerly, A.S.1
Prasanth, S.G.2
Siddiqui, K.3
Stillman, B.4
-
41
-
-
0034678396
-
The respective contributions of the mother and daughter centrioles to centrosome activity and behavior in vertebrate cells
-
Piel M., Meyer P., Khodjakov A., Rieder C.L., and Bornens M. The respective contributions of the mother and daughter centrioles to centrosome activity and behavior in vertebrate cells. J. Cell Biol. 149 (2000) 317-330
-
(2000)
J. Cell Biol.
, vol.149
, pp. 317-330
-
-
Piel, M.1
Meyer, P.2
Khodjakov, A.3
Rieder, C.L.4
Bornens, M.5
-
42
-
-
0032576605
-
Aggresomes: a cellular response to misfolded proteins
-
Johnston J.A., Ward C.L., and Kopito R.R. Aggresomes: a cellular response to misfolded proteins. J. Cell Biol. 143 (1998) 1883-1898
-
(1998)
J. Cell Biol.
, vol.143
, pp. 1883-1898
-
-
Johnston, J.A.1
Ward, C.L.2
Kopito, R.R.3
-
43
-
-
0033526005
-
GMAP-210, a cis-Golgi network-associated protein, is a minus end microtubule-binding protein
-
Infante C., Ramos-Morales F., Fedriani C., Bornens M., and Rios R.M. GMAP-210, a cis-Golgi network-associated protein, is a minus end microtubule-binding protein. J. Cell Biol. 145 (1999) 83-98
-
(1999)
J. Cell Biol.
, vol.145
, pp. 83-98
-
-
Infante, C.1
Ramos-Morales, F.2
Fedriani, C.3
Bornens, M.4
Rios, R.M.5
-
44
-
-
33644843642
-
Function and regulation of Rnd proteins
-
Chardin P. Function and regulation of Rnd proteins. Nat. Rev., Mol. Cell Biol. 7 (2006) 54-62
-
(2006)
Nat. Rev., Mol. Cell Biol.
, vol.7
, pp. 54-62
-
-
Chardin, P.1
-
45
-
-
33847287364
-
Biochemical and structural characterization of the gem GTPase
-
Splingard A., Menetrey J., Perderiset M., Cicolari J., Regazzoni K., Hamoudi F., et al. Biochemical and structural characterization of the gem GTPase. J. Biol. Chem. 282 (2007) 1905-1915
-
(2007)
J. Biol. Chem.
, vol.282
, pp. 1905-1915
-
-
Splingard, A.1
Menetrey, J.2
Perderiset, M.3
Cicolari, J.4
Regazzoni, K.5
Hamoudi, F.6
-
46
-
-
0034680312
-
Rab6c, a new member of the rab gene family, is involved in drug resistance in MCF7/AdrR cells
-
Shan J., Mason J.M., Yuan L., Barcia M., Porti D., Calabro A., et al. Rab6c, a new member of the rab gene family, is involved in drug resistance in MCF7/AdrR cells. Gene 257 (2000) 67-75
-
(2000)
Gene
, vol.257
, pp. 67-75
-
-
Shan, J.1
Mason, J.M.2
Yuan, L.3
Barcia, M.4
Porti, D.5
Calabro, A.6
-
47
-
-
56449118064
-
Retrocopy contributions to the evolution of the human genome
-
Baertsch R., Diekhans M., Kent W.J., Haussler D., and Brosius J. Retrocopy contributions to the evolution of the human genome. BMC Genomics 9 (2008) 466
-
(2008)
BMC Genomics
, vol.9
, pp. 466
-
-
Baertsch, R.1
Diekhans, M.2
Kent, W.J.3
Haussler, D.4
Brosius, J.5
-
50
-
-
0346752110
-
Millions of years of evolution preserved: a comprehensive catalog of the processed pseudogenes in the human genome
-
Zhang Z., Harrison P.M., Liu Y., and Gerstein M. Millions of years of evolution preserved: a comprehensive catalog of the processed pseudogenes in the human genome. Genome Res. 13 (2003) 2541-2558
-
(2003)
Genome Res.
, vol.13
, pp. 2541-2558
-
-
Zhang, Z.1
Harrison, P.M.2
Liu, Y.3
Gerstein, M.4
-
51
-
-
44349159416
-
Pseudogene-derived small interfering RNAs regulate gene expression in mouse oocytes
-
Tam O.H., Aravin A.A., Stein P., Girard A., Murchison E.P., Cheloufi S., et al. Pseudogene-derived small interfering RNAs regulate gene expression in mouse oocytes. Nature 453 (2008) 534-538
-
(2008)
Nature
, vol.453
, pp. 534-538
-
-
Tam, O.H.1
Aravin, A.A.2
Stein, P.3
Girard, A.4
Murchison, E.P.5
Cheloufi, S.6
-
52
-
-
33846665251
-
Frequent emergence and functional resurrection of processed pseudogenes in the human and mouse genomes
-
Sakai H., Koyanagi K.O., Imanishi T., Itoh T., and Gojobori T. Frequent emergence and functional resurrection of processed pseudogenes in the human and mouse genomes. Gene 389 (2007) 196-203
-
(2007)
Gene
, vol.389
, pp. 196-203
-
-
Sakai, H.1
Koyanagi, K.O.2
Imanishi, T.3
Itoh, T.4
Gojobori, T.5
-
53
-
-
66849111207
-
Single choroideremia gene in nonmammalian vertebrates explains early embryonic lethality of the zebrafish model of choroideremia
-
Moosajee M., Tulloch M., Baron R.A., Gregory-Evans C.Y., Pereira-Leal J.B., and Seabra M.C. Single choroideremia gene in nonmammalian vertebrates explains early embryonic lethality of the zebrafish model of choroideremia. Invest. Ophthalmol. Visual Sci. 50 (2009) 3009-3016
-
(2009)
Invest. Ophthalmol. Visual Sci.
, vol.50
, pp. 3009-3016
-
-
Moosajee, M.1
Tulloch, M.2
Baron, R.A.3
Gregory-Evans, C.Y.4
Pereira-Leal, J.B.5
Seabra, M.C.6
-
54
-
-
43249118306
-
Chromosomal gene movements reflect the recent origin and biology of therian sex chromosomes
-
Potrzebowski L., Vinckenbosch N., Marques A.C., Chalmel F., Jegou B., and Kaessmann H. Chromosomal gene movements reflect the recent origin and biology of therian sex chromosomes. PLoS Biol. 6 (2008) e80
-
(2008)
PLoS Biol.
, vol.6
-
-
Potrzebowski, L.1
Vinckenbosch, N.2
Marques, A.C.3
Chalmel, F.4
Jegou, B.5
Kaessmann, H.6
-
55
-
-
34547624125
-
A novel testis ubiquitin-binding protein gene arose by exon shuffling in hominoids
-
Babushok D.V., Ohshima K., Ostertag E.M., Chen X., Wang Y., Mandal P.K., et al. A novel testis ubiquitin-binding protein gene arose by exon shuffling in hominoids. Genome Res. 17 (2007) 1129-1138
-
(2007)
Genome Res.
, vol.17
, pp. 1129-1138
-
-
Babushok, D.V.1
Ohshima, K.2
Ostertag, E.M.3
Chen, X.4
Wang, Y.5
Mandal, P.K.6
-
56
-
-
20144369898
-
mRNA surveillance of expressed pseudogenes in C. elegans
-
Mitrovich Q.M., and Anderson P. mRNA surveillance of expressed pseudogenes in C. elegans. Curr. Biol. 15 (2005) 963-967
-
(2005)
Curr. Biol.
, vol.15
, pp. 963-967
-
-
Mitrovich, Q.M.1
Anderson, P.2
-
57
-
-
23844445866
-
The structural and mechanistic basis for recycling of Rab proteins between membrane compartments
-
Goody R.S., Rak A., and Alexandrov K. The structural and mechanistic basis for recycling of Rab proteins between membrane compartments. Cell. Mol. Life Sci. 62 (2005) 1657-1670
-
(2005)
Cell. Mol. Life Sci.
, vol.62
, pp. 1657-1670
-
-
Goody, R.S.1
Rak, A.2
Alexandrov, K.3
-
58
-
-
45849119853
-
Birth and rapid subcellular adaptation of a hominoid-specific CDC14 protein
-
Rosso L., Marques A.C., Weier M., Lambert N., Lambot M.A., Vanderhaeghen P., and Kaessmann H. Birth and rapid subcellular adaptation of a hominoid-specific CDC14 protein. PLoS Biol. 6 (2008) e140
-
(2008)
PLoS Biol.
, vol.6
-
-
Rosso, L.1
Marques, A.C.2
Weier, M.3
Lambert, N.4
Lambot, M.A.5
Vanderhaeghen, P.6
Kaessmann, H.7
-
59
-
-
46749156739
-
Large scale screening for novel rab effectors reveals unexpected broad Rab binding specificity
-
Fukuda M., Kanno E., Ishibashi K., and Itoh T. Large scale screening for novel rab effectors reveals unexpected broad Rab binding specificity. Mol. Cell Proteomics 7 (2008) 1031-1042
-
(2008)
Mol. Cell Proteomics
, vol.7
, pp. 1031-1042
-
-
Fukuda, M.1
Kanno, E.2
Ishibashi, K.3
Itoh, T.4
-
60
-
-
33947270830
-
Loss of centrosome integrity induces p38-p53-p21-dependent G1-S arrest
-
Mikule K., Delaval B., Kaldis P., Jurcyzk A., Hergert P., and Doxsey S. Loss of centrosome integrity induces p38-p53-p21-dependent G1-S arrest. Nat. Cell Biol. 9 (2007) 160-170
-
(2007)
Nat. Cell Biol.
, vol.9
, pp. 160-170
-
-
Mikule, K.1
Delaval, B.2
Kaldis, P.3
Jurcyzk, A.4
Hergert, P.5
Doxsey, S.6
-
61
-
-
0037162455
-
Multiple centrosomes arise from tetraploidy checkpoint failure and mitotic centrosome clusters in p53 and RB pocket protein-compromised cells
-
Borel F., Lohez O.D., Lacroix F.B., and Margolis R.L. Multiple centrosomes arise from tetraploidy checkpoint failure and mitotic centrosome clusters in p53 and RB pocket protein-compromised cells. Proc. Natl Acad. Sci. USA 99 (2002) 9819-9824
-
(2002)
Proc. Natl Acad. Sci. USA
, vol.99
, pp. 9819-9824
-
-
Borel, F.1
Lohez, O.D.2
Lacroix, F.B.3
Margolis, R.L.4
-
62
-
-
0037084163
-
Aurora-A overexpression reveals tetraploidization as a major route to centrosome amplification in p53-/- cells
-
Meraldi P., Honda R., and Nigg E.A. Aurora-A overexpression reveals tetraploidization as a major route to centrosome amplification in p53-/- cells. EMBO J. 21 (2002) 483-492
-
(2002)
EMBO J.
, vol.21
, pp. 483-492
-
-
Meraldi, P.1
Honda, R.2
Nigg, E.A.3
-
63
-
-
33749165420
-
The Plk1 target Kizuna stabilizes mitotic centrosomes to ensure spindle bipolarity
-
Oshimori N., Ohsugi M., and Yamamoto T. The Plk1 target Kizuna stabilizes mitotic centrosomes to ensure spindle bipolarity. Nat. Cell Biol. 8 (2006) 1095-1101
-
(2006)
Nat. Cell Biol.
, vol.8
, pp. 1095-1101
-
-
Oshimori, N.1
Ohsugi, M.2
Yamamoto, T.3
-
64
-
-
0012776441
-
Centrosomes split in the presence of impaired DNA integrity during mitosis
-
Hut H.M., Lemstra W., Blaauw E.H., Van Cappellen G.W., Kampinga H.H., and Sibon O.C. Centrosomes split in the presence of impaired DNA integrity during mitosis. Mol. Biol. Cell 14 (2003) 1993-2004
-
(2003)
Mol. Biol. Cell
, vol.14
, pp. 1993-2004
-
-
Hut, H.M.1
Lemstra, W.2
Blaauw, E.H.3
Van Cappellen, G.W.4
Kampinga, H.H.5
Sibon, O.C.6
-
65
-
-
34547420857
-
Plk4-induced centriole biogenesis in human cells
-
Kleylein-Sohn J., Westendorf J., Le Clech M., Habedanck R., Stierhof Y.D., and Nigg E.A. Plk4-induced centriole biogenesis in human cells. Dev. Cell 13 (2007) 190-202
-
(2007)
Dev. Cell
, vol.13
, pp. 190-202
-
-
Kleylein-Sohn, J.1
Westendorf, J.2
Le Clech, M.3
Habedanck, R.4
Stierhof, Y.D.5
Nigg, E.A.6
-
66
-
-
49549117370
-
A tale of too many centrosomes
-
Acilan C., and Saunders W.S. A tale of too many centrosomes. Cell 134 (2008) 572-575
-
(2008)
Cell
, vol.134
, pp. 572-575
-
-
Acilan, C.1
Saunders, W.S.2
-
67
-
-
18844427353
-
Microtubule nucleation and anchoring at the centrosome are independent processes linked by ninein function
-
Delgehyr N., Sillibourne J., and Bornens M. Microtubule nucleation and anchoring at the centrosome are independent processes linked by ninein function. J. Cell Sci. 118 (2005) 1565-1575
-
(2005)
J. Cell Sci.
, vol.118
, pp. 1565-1575
-
-
Delgehyr, N.1
Sillibourne, J.2
Bornens, M.3
-
68
-
-
0024786266
-
p34cdc2 is located in both nucleus and cytoplasm; part is centrosomally associated at G2/M and enters vesicles at anaphase
-
Bailly E., Doree M., Nurse P., and Bornens M. p34cdc2 is located in both nucleus and cytoplasm; part is centrosomally associated at G2/M and enters vesicles at anaphase. EMBO J. 8 (1989) 3985-3995
-
(1989)
EMBO J.
, vol.8
, pp. 3985-3995
-
-
Bailly, E.1
Doree, M.2
Nurse, P.3
Bornens, M.4
-
69
-
-
0028091726
-
Rab proteins form in vivo complexes with two isoforms of the GDP-dissociation inhibitor protein (GDI)
-
Yang C., Slepnev V.I., and Goud B. Rab proteins form in vivo complexes with two isoforms of the GDP-dissociation inhibitor protein (GDI). J. Biol. Chem. 269 (1994) 31891-31899
-
(1994)
J. Biol. Chem.
, vol.269
, pp. 31891-31899
-
-
Yang, C.1
Slepnev, V.I.2
Goud, B.3
-
70
-
-
0037089084
-
Membrane topology and mitochondrial targeting of mitofusins, ubiquitous mammalian homologs of the transmembrane GTPase Fzo
-
Rojo M., Legros F., Chateau D., and Lombes A. Membrane topology and mitochondrial targeting of mitofusins, ubiquitous mammalian homologs of the transmembrane GTPase Fzo. J. Cell Sci. 115 (2002) 1663-1674
-
(2002)
J. Cell Sci.
, vol.115
, pp. 1663-1674
-
-
Rojo, M.1
Legros, F.2
Chateau, D.3
Lombes, A.4
-
71
-
-
26444593986
-
A novel high-throughput (HTP) cloning strategy for site-directed designed chimeragenesis and mutation using the Gateway cloning system
-
Suzuki Y., Kagawa N., Fujino T., Sumiya T., Andoh T., Ishikawa K., et al. A novel high-throughput (HTP) cloning strategy for site-directed designed chimeragenesis and mutation using the Gateway cloning system. Nucleic Acids Res. 33 (2005) e109
-
(2005)
Nucleic Acids Res.
, vol.33
-
-
Suzuki, Y.1
Kagawa, N.2
Fujino, T.3
Sumiya, T.4
Andoh, T.5
Ishikawa, K.6
-
73
-
-
33644874573
-
The UCSC Genome Browser Database: update 2006
-
Hinrichs A.S., Karolchik D., Baertsch R., Barber G.P., Bejerano G., Clawson H., et al. The UCSC Genome Browser Database: update 2006. Nucleic Acids Res. 34 (2006) D590-598
-
(2006)
Nucleic Acids Res.
, vol.34
-
-
Hinrichs, A.S.1
Karolchik, D.2
Baertsch, R.3
Barber, G.P.4
Bejerano, G.5
Clawson, H.6
-
74
-
-
0027968068
-
CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choice
-
Thompson J.D., Higgins D.G., and Gibson T.J. CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choice. Nucleic Acids Res. 22 (1994) 4673-4680
-
(1994)
Nucleic Acids Res.
, vol.22
, pp. 4673-4680
-
-
Thompson, J.D.1
Higgins, D.G.2
Gibson, T.J.3
-
75
-
-
0025288919
-
Small GTP-binding protein associated with Golgi cisternae
-
Goud B., Zahraoui A., Tavitian A., and Saraste J. Small GTP-binding protein associated with Golgi cisternae. Nature 345 (1990) 553-556
-
(1990)
Nature
, vol.345
, pp. 553-556
-
-
Goud, B.1
Zahraoui, A.2
Tavitian, A.3
Saraste, J.4
-
76
-
-
0019887744
-
Phase separation of integral membrane proteins in Triton X-114 solution
-
Bordier C. Phase separation of integral membrane proteins in Triton X-114 solution. J. Biol. Chem. 256 (1981) 1604-1607
-
(1981)
J. Biol. Chem.
, vol.256
, pp. 1604-1607
-
-
Bordier, C.1
-
77
-
-
0027212498
-
Solubilization and purification of enzymatically active glutathione S-transferase (pGEX) fusion proteins
-
Frangioni J.V., and Neel B.G. Solubilization and purification of enzymatically active glutathione S-transferase (pGEX) fusion proteins. Anal. Biochem. 210 (1993) 179-187
-
(1993)
Anal. Biochem.
, vol.210
, pp. 179-187
-
-
Frangioni, J.V.1
Neel, B.G.2
-
78
-
-
0028217893
-
Several small GTP-binding proteins are strongly down-regulated in simian virus 40 (SV40) transformed human keratinocytes and may be required for the maintenance of the normal phenotype
-
Gromov P.S., and Celis J.E. Several small GTP-binding proteins are strongly down-regulated in simian virus 40 (SV40) transformed human keratinocytes and may be required for the maintenance of the normal phenotype. Electrophoresis 15 (1994) 474-481
-
(1994)
Electrophoresis
, vol.15
, pp. 474-481
-
-
Gromov, P.S.1
Celis, J.E.2
|