-
1
-
-
33646177549
-
At the heart of the chromosome: SMC proteins in action
-
Hirano T. At the heart of the chromosome: SMC proteins in action. Nat. Rev., Mol. Cell Biol. 7 (2006) 311-322
-
(2006)
Nat. Rev., Mol. Cell Biol.
, vol.7
, pp. 311-322
-
-
Hirano, T.1
-
2
-
-
22244481613
-
The structure and function of SMC and kleisin complexes
-
Nasmyth K., and Haering C.H. The structure and function of SMC and kleisin complexes. Annu. Rev. Biochem. 74 (2005) 595-648
-
(2005)
Annu. Rev. Biochem.
, vol.74
, pp. 595-648
-
-
Nasmyth, K.1
Haering, C.H.2
-
3
-
-
34347239300
-
Cohesin regulation: fashionable ways to wear a ring
-
Losada A. Cohesin regulation: fashionable ways to wear a ring. Chromosoma 116 (2007) 321-329
-
(2007)
Chromosoma
, vol.116
, pp. 321-329
-
-
Losada, A.1
-
4
-
-
22344439942
-
Dynamic molecular linkers of the genome: the first decade ofSMC proteins
-
Losada A., and Hirano T. Dynamic molecular linkers of the genome: the first decade ofSMC proteins. Genes Dev. 19 (2005) 1269-1287
-
(2005)
Genes Dev.
, vol.19
, pp. 1269-1287
-
-
Losada, A.1
Hirano, T.2
-
5
-
-
0034618070
-
Identification and characterization of SA/Scc3p subunits in the Xenopus and human cohesin complexes
-
Losada A., Yokochi T., Kobayashi R., and Hirano T. Identification and characterization of SA/Scc3p subunits in the Xenopus and human cohesin complexes. J. Cell Biol. 150 (2000) 405-416
-
(2000)
J. Cell Biol.
, vol.150
, pp. 405-416
-
-
Losada, A.1
Yokochi, T.2
Kobayashi, R.3
Hirano, T.4
-
6
-
-
0037017393
-
Condensin and cohesin display different arm conformations with characteristic hinge angles
-
Anderson D.E., Losada A., Erickson H.P., and Hirano T. Condensin and cohesin display different arm conformations with characteristic hinge angles. J. Cell Biol. 156 (2002) 419-424
-
(2002)
J. Cell Biol.
, vol.156
, pp. 419-424
-
-
Anderson, D.E.1
Losada, A.2
Erickson, H.P.3
Hirano, T.4
-
7
-
-
0036242551
-
Molecular architecture of SMC proteins and the yeast cohesin complex
-
Haering C.H., Lowe J., Hochwagen A., and Nasmyth K. Molecular architecture of SMC proteins and the yeast cohesin complex. Mol. Cell 9 (2002) 773-788
-
(2002)
Mol. Cell
, vol.9
, pp. 773-788
-
-
Haering, C.H.1
Lowe, J.2
Hochwagen, A.3
Nasmyth, K.4
-
8
-
-
34548074957
-
In vivo analysis of cohesin architecture using FRET in the budding yeast Saccharomyces cerevisiae
-
Mc Intyre J., Muller E.G., Weitzer S., Snydsman B.E., Davis T.N., and Uhlmann F. In vivo analysis of cohesin architecture using FRET in the budding yeast Saccharomyces cerevisiae. EMBO J. 26 (2007) 3783-3793
-
(2007)
EMBO J.
, vol.26
, pp. 3783-3793
-
-
Mc Intyre, J.1
Muller, E.G.2
Weitzer, S.3
Snydsman, B.E.4
Davis, T.N.5
Uhlmann, F.6
-
9
-
-
0037459376
-
Chromosomal cohesin forms a ring
-
Gruber S., Haering C.H., and Nasmyth K. Chromosomal cohesin forms a ring. Cell 112 (2003) 765-777
-
(2003)
Cell
, vol.112
, pp. 765-777
-
-
Gruber, S.1
Haering, C.H.2
Nasmyth, K.3
-
10
-
-
34447309306
-
A physical assay for sister chromatid cohesion in vitro
-
Ivanov D., and Nasmyth K. A physical assay for sister chromatid cohesion in vitro. Mol. Cell 27 (2007) 300-310
-
(2007)
Mol. Cell
, vol.27
, pp. 300-310
-
-
Ivanov, D.1
Nasmyth, K.2
-
11
-
-
29144519877
-
Targeting of cohesin by transcriptionally silent chromatin
-
Chang C.R., Wu C.S., Hom Y., and Gartenberg M.R. Targeting of cohesin by transcriptionally silent chromatin. Genes Dev. 19 (2005) 3031-3042
-
(2005)
Genes Dev.
, vol.19
, pp. 3031-3042
-
-
Chang, C.R.1
Wu, C.S.2
Hom, Y.3
Gartenberg, M.R.4
-
12
-
-
0033859660
-
Cohesin's binding to chromosomes depends on a separate complex consisting of Scc2 and Scc4 proteins
-
Ciosk R., Shirayama M., Shevchenko A., Tanaka T., Toth A., Shevchenko A., and Nasmyth K. Cohesin's binding to chromosomes depends on a separate complex consisting of Scc2 and Scc4 proteins. Mol. Cell 5 (2000) 243-254
-
(2000)
Mol. Cell
, vol.5
, pp. 243-254
-
-
Ciosk, R.1
Shirayama, M.2
Shevchenko, A.3
Tanaka, T.4
Toth, A.5
Shevchenko, A.6
Nasmyth, K.7
-
13
-
-
2642565901
-
NIPBL, encoding a homolog of fungal Scc2-type sister chromatid cohesion proteins and fly Nipped-B, is mutated in Cornelia de Lange syndrome
-
Tonkin E.T., Wang T.J., Lisgo S., Bamshad M.J., and Strachan T. NIPBL, encoding a homolog of fungal Scc2-type sister chromatid cohesion proteins and fly Nipped-B, is mutated in Cornelia de Lange syndrome. Nat. Genet. 36 (2004) 636-641
-
(2004)
Nat. Genet.
, vol.36
, pp. 636-641
-
-
Tonkin, E.T.1
Wang, T.J.2
Lisgo, S.3
Bamshad, M.J.4
Strachan, T.5
-
14
-
-
2642542322
-
Cornelia de Lange syndrome is caused by mutations in NIPBL, the human homolog of Drosophila melanogaster Nipped-B
-
Krantz I.D., McCallum J., DeScipio C., Kaur M., Gillis L.A., Yaeger D., Jukofsky L., Wasserman N., Bottani A., Morris C.A., Nowaczyk M.J., Toriello H., Bamshad M.J., Carey J.C., Rappaport E., Kawauchi S., Lander A.D., Calof A.L., Li H.H., Devoto M., and Jackson L.G. Cornelia de Lange syndrome is caused by mutations in NIPBL, the human homolog of Drosophila melanogaster Nipped-B. Nat. Genet. 36 (2004) 631-635
-
(2004)
Nat. Genet.
, vol.36
, pp. 631-635
-
-
Krantz, I.D.1
McCallum, J.2
DeScipio, C.3
Kaur, M.4
Gillis, L.A.5
Yaeger, D.6
Jukofsky, L.7
Wasserman, N.8
Bottani, A.9
Morris, C.A.10
Nowaczyk, M.J.11
Toriello, H.12
Bamshad, M.J.13
Carey, J.C.14
Rappaport, E.15
Kawauchi, S.16
Lander, A.D.17
Calof, A.L.18
Li, H.H.19
Devoto, M.20
Jackson, L.G.21
more..
-
15
-
-
33646178283
-
A screen for cohesion mutants uncovers Ssl3, the fission yeast counterpart of the cohesin loading factor Scc4
-
Bernard P., Drogat J., Maure J.F., Dheur S., Vaur S., Genier S., and Javerzat J.P. A screen for cohesion mutants uncovers Ssl3, the fission yeast counterpart of the cohesin loading factor Scc4. Curr. Biol. 16 (2006) 875-881
-
(2006)
Curr. Biol.
, vol.16
, pp. 875-881
-
-
Bernard, P.1
Drogat, J.2
Maure, J.F.3
Dheur, S.4
Vaur, S.5
Genier, S.6
Javerzat, J.P.7
-
16
-
-
33646199189
-
Human Scc4 is required for cohesin binding to chromatin, sister-chromatid cohesion, and mitotic progression
-
Watrin E., Schleiffer A., Tanaka K., Eisenhaber F., Nasmyth K., and Peters J.M. Human Scc4 is required for cohesin binding to chromatin, sister-chromatid cohesion, and mitotic progression. Curr. Biol. 16 (2006) 863-874
-
(2006)
Curr. Biol.
, vol.16
, pp. 863-874
-
-
Watrin, E.1
Schleiffer, A.2
Tanaka, K.3
Eisenhaber, F.4
Nasmyth, K.5
Peters, J.M.6
-
17
-
-
33747368147
-
Metazoan Scc4 homologs link sister chromatid cohesion to cell and axon migration guidance
-
Seitan V.C., Banks P., Laval S., Majid N.A., Dorsett D., Rana A., Smith J., Bateman A., Krpic S., Hostert A., Rollins R.A., Erdjument-Bromage H., Tempst P., Benard C.Y., Hekimi S., Newbury S.F., and Strachan T. Metazoan Scc4 homologs link sister chromatid cohesion to cell and axon migration guidance. PLoS Biol. 4 (2006) E242
-
(2006)
PLoS Biol.
, vol.4
-
-
Seitan, V.C.1
Banks, P.2
Laval, S.3
Majid, N.A.4
Dorsett, D.5
Rana, A.6
Smith, J.7
Bateman, A.8
Krpic, S.9
Hostert, A.10
Rollins, R.A.11
Erdjument-Bromage, H.12
Tempst, P.13
Benard, C.Y.14
Hekimi, S.15
Newbury, S.F.16
Strachan, T.17
-
18
-
-
0242490999
-
ATP hydrolysis is required for cohesin's association with chromosomes
-
Arumugam P., Gruber S., Tanaka K., Haering C.H., Mechtler K., and Nasmyth K. ATP hydrolysis is required for cohesin's association with chromosomes. Curr. Biol. 13 (2003) 1941-1953
-
(2003)
Curr. Biol.
, vol.13
, pp. 1941-1953
-
-
Arumugam, P.1
Gruber, S.2
Tanaka, K.3
Haering, C.H.4
Mechtler, K.5
Nasmyth, K.6
-
19
-
-
4644280172
-
Scc2 couples replication licensing to sister chromatid cohesion in Xenopus egg extracts
-
Gillespie P.J., and Hirano T. Scc2 couples replication licensing to sister chromatid cohesion in Xenopus egg extracts. Curr. Biol. 14 (2004) 1598-1603
-
(2004)
Curr. Biol.
, vol.14
, pp. 1598-1603
-
-
Gillespie, P.J.1
Hirano, T.2
-
20
-
-
5444220661
-
Recruitment of Xenopus Scc2 and cohesin to chromatin requires the pre-replication complex
-
Takahashi T.S., Yiu P., Chou M.F., Gygi S., and Walter J.C. Recruitment of Xenopus Scc2 and cohesin to chromatin requires the pre-replication complex. Nat. Cell Biol. 6 (2004) 991-996
-
(2004)
Nat. Cell Biol.
, vol.6
, pp. 991-996
-
-
Takahashi, T.S.1
Yiu, P.2
Chou, M.F.3
Gygi, S.4
Walter, J.C.5
-
21
-
-
0242540364
-
A model for ATP hydrolysis-dependent binding of cohesin to DNA
-
Weitzer S., Lehane C., and Uhlmann F. A model for ATP hydrolysis-dependent binding of cohesin to DNA. Curr. Biol. 13 (2003) 1930-1940
-
(2003)
Curr. Biol.
, vol.13
, pp. 1930-1940
-
-
Weitzer, S.1
Lehane, C.2
Uhlmann, F.3
-
22
-
-
33750021276
-
Evidence that loading of cohesin onto chromosomes involves opening of its SMC hinge
-
Gruber S., Arumugam P., Katou Y., Kuglitsch D., Helmhart W., Shirahige K., and Nasmyth K. Evidence that loading of cohesin onto chromosomes involves opening of its SMC hinge. Cell 127 (2006) 523-537
-
(2006)
Cell
, vol.127
, pp. 523-537
-
-
Gruber, S.1
Arumugam, P.2
Katou, Y.3
Kuglitsch, D.4
Helmhart, W.5
Shirahige, K.6
Nasmyth, K.7
-
23
-
-
33846472968
-
A multi-step pathway for the establishment of sister chromatid cohesion
-
Milutinovich M., Unal E., Ward C., Skibbens R.V., and Koshland D. A multi-step pathway for the establishment of sister chromatid cohesion. PLoS Genet. 3 (2007) e12
-
(2007)
PLoS Genet.
, vol.3
-
-
Milutinovich, M.1
Unal, E.2
Ward, C.3
Skibbens, R.V.4
Koshland, D.5
-
24
-
-
30744441604
-
Opening closed arms: long-distance activation of SMC ATPase by hinge-DNA interactions
-
Hirano M., and Hirano T. Opening closed arms: long-distance activation of SMC ATPase by hinge-DNA interactions. Mol. Cell 21 (2006) 175-186
-
(2006)
Mol. Cell
, vol.21
, pp. 175-186
-
-
Hirano, M.1
Hirano, T.2
-
25
-
-
19344366459
-
Genome-wide mapping of the cohesin complex in the yeast Saccharomyces cerevisiae
-
Glynn E.F., Megee P.C., Yu H.G., Mistrot C., Unal E., Koshland D.E., DeRisi J.L., and Gerton J.L. Genome-wide mapping of the cohesin complex in the yeast Saccharomyces cerevisiae. PLoS Biol. 2 (2004) E259
-
(2004)
PLoS Biol.
, vol.2
-
-
Glynn, E.F.1
Megee, P.C.2
Yu, H.G.3
Mistrot, C.4
Unal, E.5
Koshland, D.E.6
DeRisi, J.L.7
Gerton, J.L.8
-
26
-
-
3242880374
-
Cohesin relocation from sites of chromosomal loading to places of convergent transcription
-
Lengronne A., Katou Y., Mori S., Yokobayashi S., Kelly G.P., Itoh T., Watanabe Y., Shirahige K., and Uhlmann F. Cohesin relocation from sites of chromosomal loading to places of convergent transcription. Nature 430 (2004) 573-578
-
(2004)
Nature
, vol.430
, pp. 573-578
-
-
Lengronne, A.1
Katou, Y.2
Mori, S.3
Yokobayashi, S.4
Kelly, G.P.5
Itoh, T.6
Watanabe, Y.7
Shirahige, K.8
Uhlmann, F.9
-
27
-
-
38349177548
-
Association of cohesin and Nipped-B with transcriptionally active regions of the Drosophila melanogaster genome
-
Misulovin Z., Schwartz Y.B., Li X.Y., Kahn T.G., Gause M., Macarthur S., Fay J.C., Eisen M.B., Pirrotta V., Biggin M.D., and Dorsett D. Association of cohesin and Nipped-B with transcriptionally active regions of the Drosophila melanogaster genome. Chromosoma 117 (2008) 89-102
-
(2008)
Chromosoma
, vol.117
, pp. 89-102
-
-
Misulovin, Z.1
Schwartz, Y.B.2
Li, X.Y.3
Kahn, T.G.4
Gause, M.5
Macarthur, S.6
Fay, J.C.7
Eisen, M.B.8
Pirrotta, V.9
Biggin, M.D.10
Dorsett, D.11
-
28
-
-
39149121436
-
Cohesin mediates transcriptional insulation by CCCTC-binding factor
-
Wendt K.S., Yoshida K., Itoh T., Bando M., Koch B., Schirghuber E., Tsutsumi S., Nagae G., Ishihara K., Mishiro T., Yahata K., Imamoto F., Aburatani H., Nakao M., Imamoto N., Maeshima K., Shirahige K., and Peters J.M. Cohesin mediates transcriptional insulation by CCCTC-binding factor. Nature 451 (2008) 796-801
-
(2008)
Nature
, vol.451
, pp. 796-801
-
-
Wendt, K.S.1
Yoshida, K.2
Itoh, T.3
Bando, M.4
Koch, B.5
Schirghuber, E.6
Tsutsumi, S.7
Nagae, G.8
Ishihara, K.9
Mishiro, T.10
Yahata, K.11
Imamoto, F.12
Aburatani, H.13
Nakao, M.14
Imamoto, N.15
Maeshima, K.16
Shirahige, K.17
Peters, J.M.18
-
29
-
-
37549014536
-
Transcription alters chromosomal locations of cohesin in Saccharomyces cerevisiae
-
Bausch C., Noone S., Henry J.M., Gaudenz K., Sanderson B., Seidel C., and Gerton J.L. Transcription alters chromosomal locations of cohesin in Saccharomyces cerevisiae. Mol. Cell Biol. 27 (2007) 8522-8532
-
(2007)
Mol. Cell Biol.
, vol.27
, pp. 8522-8532
-
-
Bausch, C.1
Noone, S.2
Henry, J.M.3
Gaudenz, K.4
Sanderson, B.5
Seidel, C.6
Gerton, J.L.7
-
30
-
-
36249021097
-
Displacement and re-accumulation of centromeric cohesin during transient pre-anaphase centromere splitting
-
Ocampo-Hafalla M.T., Katou Y., Shirahige K., and Uhlmann F. Displacement and re-accumulation of centromeric cohesin during transient pre-anaphase centromere splitting. Chromosoma 116 (2007) 531-544
-
(2007)
Chromosoma
, vol.116
, pp. 531-544
-
-
Ocampo-Hafalla, M.T.1
Katou, Y.2
Shirahige, K.3
Uhlmann, F.4
-
31
-
-
38349164450
-
Functional links between Drosophila Nipped-B and cohesin in somatic and meiotic cells
-
Gause M., Webber H.A., Misulovin Z., Haller G., Rollins R.A., Eissenberg J.C., Bickel S.E., and Dorsett D. Functional links between Drosophila Nipped-B and cohesin in somatic and meiotic cells. Chromosoma 117 (2008) 51-66
-
(2008)
Chromosoma
, vol.117
, pp. 51-66
-
-
Gause, M.1
Webber, H.A.2
Misulovin, Z.3
Haller, G.4
Rollins, R.A.5
Eissenberg, J.C.6
Bickel, S.E.7
Dorsett, D.8
-
32
-
-
33846949409
-
The enhancement of pericentromeric cohesin association by conserved kinetochore components promotes high-fidelity chromosome segregation and is sensitive to microtubule-based tension
-
Eckert C.A., Gravdahl D.J., and Megee P.C. The enhancement of pericentromeric cohesin association by conserved kinetochore components promotes high-fidelity chromosome segregation and is sensitive to microtubule-based tension. Genes Dev. 21 (2007) 278-291
-
(2007)
Genes Dev.
, vol.21
, pp. 278-291
-
-
Eckert, C.A.1
Gravdahl, D.J.2
Megee, P.C.3
-
33
-
-
0035930750
-
Requirement of heterochromatin for cohesion at centromeres
-
Bernard P., Maure J.F., Partridge J.F., Genier S., Javerzat J.P., and Allshire R.C. Requirement of heterochromatin for cohesion at centromeres. Science 294 (2001) 2539-2542
-
(2001)
Science
, vol.294
, pp. 2539-2542
-
-
Bernard, P.1
Maure, J.F.2
Partridge, J.F.3
Genier, S.4
Javerzat, J.P.5
Allshire, R.C.6
-
34
-
-
0036144420
-
Recruitment of cohesin to heterochromatic regions by Swi6/HP1 in fission yeast
-
Nonaka N., Kitajima T., Yokobayashi S., Xiao G., Yamamoto M., Grewal S.I., and Watanabe Y. Recruitment of cohesin to heterochromatic regions by Swi6/HP1 in fission yeast. Nat. Cell Biol. 4 (2002) 89-93
-
(2002)
Nat. Cell Biol.
, vol.4
, pp. 89-93
-
-
Nonaka, N.1
Kitajima, T.2
Yokobayashi, S.3
Xiao, G.4
Yamamoto, M.5
Grewal, S.I.6
Watanabe, Y.7
-
35
-
-
0033670940
-
Holding your own: establishing sister chromatid cohesion
-
Skibbens R.V. Holding your own: establishing sister chromatid cohesion. Genome Res. 10 (2000) 1664-1671
-
(2000)
Genome Res.
, vol.10
, pp. 1664-1671
-
-
Skibbens, R.V.1
-
36
-
-
0033083727
-
Yeast cohesion complex requires a conserved protein, Eco1p(Ctf7), to establish cohesion between sister chromatids during DNA replication
-
Toth A., Ciosk R., Uhlmann F., Galova M., Schleiffer A., and Nasmyth K. Yeast cohesion complex requires a conserved protein, Eco1p(Ctf7), to establish cohesion between sister chromatids during DNA replication. Genes Dev. 13 (1999) 320-333
-
(1999)
Genes Dev.
, vol.13
, pp. 320-333
-
-
Toth, A.1
Ciosk, R.2
Uhlmann, F.3
Galova, M.4
Schleiffer, A.5
Nasmyth, K.6
-
37
-
-
0037383721
-
Mechanical link between cohesion establishment and DNA replication: Ctf7p/Eco1p, a cohesion establishment factor, associates with three different replication factor C complexes
-
Kenna M.A., and Skibbens R.V. Mechanical link between cohesion establishment and DNA replication: Ctf7p/Eco1p, a cohesion establishment factor, associates with three different replication factor C complexes. Mol. Cell Biol. 23 (2003) 2999-3007
-
(2003)
Mol. Cell Biol.
, vol.23
, pp. 2999-3007
-
-
Kenna, M.A.1
Skibbens, R.V.2
-
38
-
-
33747882922
-
PCNA controls establishment of sister chromatid cohesion during S phase
-
Moldovan G.L., Pfander B., and Jentsch S. PCNA controls establishment of sister chromatid cohesion during S phase. Mol. Cell 23 (2006) 723-732
-
(2006)
Mol. Cell
, vol.23
, pp. 723-732
-
-
Moldovan, G.L.1
Pfander, B.2
Jentsch, S.3
-
39
-
-
0037133040
-
Eco1 is a novel acetyltransferase that can acetylate proteins involved in cohesion
-
Ivanov D., Schleiffer A., Eisenhaber F., Mechtler K., Haering C.H., and Nasmyth K. Eco1 is a novel acetyltransferase that can acetylate proteins involved in cohesion. Curr. Biol. 12 (2002) 323-328
-
(2002)
Curr. Biol.
, vol.12
, pp. 323-328
-
-
Ivanov, D.1
Schleiffer, A.2
Eisenhaber, F.3
Mechtler, K.4
Haering, C.H.5
Nasmyth, K.6
-
40
-
-
12544256548
-
Ctf7p/Eco1p exhibits acetyltransferase activity-but does it matter?
-
Brands A., and Skibbens R.V. Ctf7p/Eco1p exhibits acetyltransferase activity-but does it matter?. Curr Biol 15 (2005) R50-R51
-
(2005)
Curr Biol
, vol.15
-
-
Brands, A.1
Skibbens, R.V.2
-
41
-
-
0344663967
-
Two putative acetyltransferases, san and deco, are required for establishing sister chromatid cohesion in Drosophila
-
Williams B.C., Garrett-Engele C.M., Li Z., Williams E.V., Rosenman E.D., and Goldberg M.L. Two putative acetyltransferases, san and deco, are required for establishing sister chromatid cohesion in Drosophila. Curr. Biol. 13 (2003) 2025-2036
-
(2003)
Curr. Biol.
, vol.13
, pp. 2025-2036
-
-
Williams, B.C.1
Garrett-Engele, C.M.2
Li, Z.3
Williams, E.V.4
Rosenman, E.D.5
Goldberg, M.L.6
-
42
-
-
34249009554
-
The acetyltransferase activity of an stabilizes the mitotic cohesin at the centromeres in a shugoshin-independent manner
-
Hou F., Chu C.W., Kong X., Yokomori K., and Zou H. The acetyltransferase activity of an stabilizes the mitotic cohesin at the centromeres in a shugoshin-independent manner. J. Cell Biol. 177 (2007) 587-597
-
(2007)
J. Cell Biol.
, vol.177
, pp. 587-597
-
-
Hou, F.1
Chu, C.W.2
Kong, X.3
Yokomori, K.4
Zou, H.5
-
43
-
-
23044514962
-
Two human orthologues of Eco1/Ctf7 acetyltransferases are both required for proper sister-chromatid cohesion
-
Hou F., and Zou H. Two human orthologues of Eco1/Ctf7 acetyltransferases are both required for proper sister-chromatid cohesion. Mol. Biol. Cell 16 (2005) 3908-3918
-
(2005)
Mol. Biol. Cell
, vol.16
, pp. 3908-3918
-
-
Hou, F.1
Zou, H.2
-
44
-
-
0035051062
-
Saccharomyces cerevisiae CTF18and CTF4 are required for sister chromatid cohesion
-
Hanna J.S., Kroll E.S., Lundblad V., and Spencer F.A. Saccharomyces cerevisiae CTF18and CTF4 are required for sister chromatid cohesion. Mol. Cell Biol. 21 (2001) 3144-3158
-
(2001)
Mol. Cell Biol.
, vol.21
, pp. 3144-3158
-
-
Hanna, J.S.1
Kroll, E.S.2
Lundblad, V.3
Spencer, F.A.4
-
45
-
-
0035947084
-
Identification of RFC(Ctf18p, Ctf8p,Dcc1p): an alternative RFC complex required for sister chromatid cohesion in S. cerevisiae
-
Mayer M.L., Gygi S.P., Aebersold R., and Hieter P. Identification of RFC(Ctf18p, Ctf8p,Dcc1p): an alternative RFC complex required for sister chromatid cohesion in S. cerevisiae. Mol. Cell 7 (2001) 959-970
-
(2001)
Mol. Cell
, vol.7
, pp. 959-970
-
-
Mayer, M.L.1
Gygi, S.P.2
Aebersold, R.3
Hieter, P.4
-
46
-
-
33645717628
-
GINS maintains association of Cdc45 with MCM in replisome progression complexes at eukaryotic DNA replication forks
-
Gambus A., Jones R.C., Sanchez-Diaz A., Kanemaki M., van Deursen F., Edmondson R.D., and Labib K. GINS maintains association of Cdc45 with MCM in replisome progression complexes at eukaryotic DNA replication forks. Nat. Cell Biol. 8 (2006) 358-366
-
(2006)
Nat. Cell Biol.
, vol.8
, pp. 358-366
-
-
Gambus, A.1
Jones, R.C.2
Sanchez-Diaz, A.3
Kanemaki, M.4
van Deursen, F.5
Edmondson, R.D.6
Labib, K.7
-
47
-
-
0042337435
-
The alternative Ctf18-Dcc1-Ctf8-replication factor C complex required for sister chromatid cohesion loads proliferating cell nuclear antigen onto DNA
-
Bermudez V.P., Maniwa Y., Tappin I., Ozato K., Yokomori K., and Hurwitz J. The alternative Ctf18-Dcc1-Ctf8-replication factor C complex required for sister chromatid cohesion loads proliferating cell nuclear antigen onto DNA. Proc. Natl. Acad. Sci. U. S. A. 100 (2003) 10237-10242
-
(2003)
Proc. Natl. Acad. Sci. U. S. A.
, vol.100
, pp. 10237-10242
-
-
Bermudez, V.P.1
Maniwa, Y.2
Tappin, I.3
Ozato, K.4
Yokomori, K.5
Hurwitz, J.6
-
48
-
-
33845657930
-
The DNA helicase ChlR1 is required for sister chromatid cohesion in mammalian cells
-
Parish J.L., Rosa J., Wang X., Lahti J.M., Doxsey S.J., and Androphy E.J. The DNA helicase ChlR1 is required for sister chromatid cohesion in mammalian cells. J. Cell Sci. 119 (2006) 4857-4865
-
(2006)
J. Cell Sci.
, vol.119
, pp. 4857-4865
-
-
Parish, J.L.1
Rosa, J.2
Wang, X.3
Lahti, J.M.4
Doxsey, S.J.5
Androphy, E.J.6
-
49
-
-
0037384875
-
Saccharomyces cerevisiae DNA polymerase epsilon and polymerase sigma interact physically and functionally, suggesting a role for polymerase epsilon in sister chromatid cohesion
-
Edwards S., Li C.M., Levy D.L., Brown J., Snow P.M., and Campbell J.L. Saccharomyces cerevisiae DNA polymerase epsilon and polymerase sigma interact physically and functionally, suggesting a role for polymerase epsilon in sister chromatid cohesion. Mol. Cell Biol. 23 (2003) 2733-2748
-
(2003)
Mol. Cell Biol.
, vol.23
, pp. 2733-2748
-
-
Edwards, S.1
Li, C.M.2
Levy, D.L.3
Brown, J.4
Snow, P.M.5
Campbell, J.L.6
-
50
-
-
12144286837
-
Identification of protein complexes required for efficient sister chromatid cohesion
-
Mayer M.L., Pot I., Chang M., Xu H., Aneliunas V., Kwok T., Newitt R., Aebersold R., Boone C., Brown G.W., and Hieter P. Identification of protein complexes required for efficient sister chromatid cohesion. Mol. Biol. Cell 15 (2004) 1736-1745
-
(2004)
Mol. Biol. Cell
, vol.15
, pp. 1736-1745
-
-
Mayer, M.L.1
Pot, I.2
Chang, M.3
Xu, H.4
Aneliunas, V.5
Kwok, T.6
Newitt, R.7
Aebersold, R.8
Boone, C.9
Brown, G.W.10
Hieter, P.11
-
51
-
-
4444292553
-
Sister-chromatid cohesion mediated by the alternative RF-CCtf18/Dcc1/Ctf8, the helicase Chl1 and the polymerase-alpha-associated protein Ctf4 is essential for chromatid disjunction during meiosis II
-
Petronczki M., Chwalla B., Siomos M.F., Yokobayashi S., Helmhart W., Deutschbauer A.M., Davis R.W., Watanabe Y., and Nasmyth K. Sister-chromatid cohesion mediated by the alternative RF-CCtf18/Dcc1/Ctf8, the helicase Chl1 and the polymerase-alpha-associated protein Ctf4 is essential for chromatid disjunction during meiosis II. J. Cell Sci. 117 (2004) 3547-3559
-
(2004)
J. Cell Sci.
, vol.117
, pp. 3547-3559
-
-
Petronczki, M.1
Chwalla, B.2
Siomos, M.F.3
Yokobayashi, S.4
Helmhart, W.5
Deutschbauer, A.M.6
Davis, R.W.7
Watanabe, Y.8
Nasmyth, K.9
-
52
-
-
1642360837
-
Chl1p, a DNA helicase-like protein in budding yeast, functions in sister-chromatid cohesion
-
Skibbens R.V. Chl1p, a DNA helicase-like protein in budding yeast, functions in sister-chromatid cohesion. Genetics 166 (2004) 33-42
-
(2004)
Genetics
, vol.166
, pp. 33-42
-
-
Skibbens, R.V.1
-
53
-
-
3142760095
-
The origin recognition complex links replication, sister chromatid cohesion and transcriptional silencing in Saccharomyces cerevisiae
-
Suter B., Tong A., Chang M., Yu L., Brown G.W., Boone C., and Rine J. The origin recognition complex links replication, sister chromatid cohesion and transcriptional silencing in Saccharomyces cerevisiae. Genetics 167 (2004) 579-591
-
(2004)
Genetics
, vol.167
, pp. 579-591
-
-
Suter, B.1
Tong, A.2
Chang, M.3
Yu, L.4
Brown, G.W.5
Boone, C.6
Rine, J.7
-
54
-
-
33748424969
-
Establishment of sister chromatid cohesion at the S. cerevisiae replication fork
-
Lengronne A., McIntyre J., Katou Y., Kanoh Y., Hopfner K.P., Shirahige K., and Uhlmann F. Establishment of sister chromatid cohesion at the S. cerevisiae replication fork. Mol. Cell 23 (2006) 787-799
-
(2006)
Mol. Cell
, vol.23
, pp. 787-799
-
-
Lengronne, A.1
McIntyre, J.2
Katou, Y.3
Kanoh, Y.4
Hopfner, K.P.5
Shirahige, K.6
Uhlmann, F.7
-
55
-
-
4644244326
-
Structure and stability of cohesin's Smc1-kleisin interaction
-
Haering C.H., Schoffnegger D., Nishino T., Helmhart W., Nasmyth K., and Lowe J. Structure and stability of cohesin's Smc1-kleisin interaction. Mol. Cell 15 (2004) 951-964
-
(2004)
Mol. Cell
, vol.15
, pp. 951-964
-
-
Haering, C.H.1
Schoffnegger, D.2
Nishino, T.3
Helmhart, W.4
Nasmyth, K.5
Lowe, J.6
-
56
-
-
33746486793
-
Live-cell imaging reveals a stable cohesin-chromatin interaction after but not before DNA replication
-
Gerlich D., Koch B., Dupeux F., Peters J.M., and Ellenberg J. Live-cell imaging reveals a stable cohesin-chromatin interaction after but not before DNA replication. Curr. Biol. 16 (2006) 1571-1578
-
(2006)
Curr. Biol.
, vol.16
, pp. 1571-1578
-
-
Gerlich, D.1
Koch, B.2
Dupeux, F.3
Peters, J.M.4
Ellenberg, J.5
-
57
-
-
21044435063
-
Functional contribution of Pds5 to cohesin-mediated cohesion in human cells and Xenopus egg extracts
-
Losada A., Yokochi T., and Hirano T. Functional contribution of Pds5 to cohesin-mediated cohesion in human cells and Xenopus egg extracts. J. Cell Sci. 118 (2005) 2133-2141
-
(2005)
J. Cell Sci.
, vol.118
, pp. 2133-2141
-
-
Losada, A.1
Yokochi, T.2
Hirano, T.3
-
58
-
-
0034645067
-
Characterization of vertebrate cohesin complexes and their regulation in prophase
-
Sumara I., Vorlaufer E., Gieffers C., Peters B.H., and Peters J.M. Characterization of vertebrate cohesin complexes and their regulation in prophase. J. Cell Biol. 151 (2000) 749-762
-
(2000)
J. Cell Biol.
, vol.151
, pp. 749-762
-
-
Sumara, I.1
Vorlaufer, E.2
Gieffers, C.3
Peters, B.H.4
Peters, J.M.5
-
59
-
-
17044424182
-
Sororin, a substrate of the anaphase-promoting complex, is required for sister chromatid cohesion in vertebrates
-
Rankin S., Ayad N.G., and Kirschner M.W. Sororin, a substrate of the anaphase-promoting complex, is required for sister chromatid cohesion in vertebrates. Mol. Cell 18 (2005) 185-200
-
(2005)
Mol. Cell
, vol.18
, pp. 185-200
-
-
Rankin, S.1
Ayad, N.G.2
Kirschner, M.W.3
-
60
-
-
33751237384
-
Wapl controls the dynamic association of cohesin with chromatin
-
Kueng S., Hegemann B., Peters B.H., Lipp J.S., Schleiffer A., Mechtler K., and Peters J.M. Wapl controls the dynamic association of cohesin with chromatin. Cell 127 (2006) 955-967
-
(2006)
Cell
, vol.127
, pp. 955-967
-
-
Kueng, S.1
Hegemann, B.2
Peters, B.H.3
Lipp, J.S.4
Schleiffer, A.5
Mechtler, K.6
Peters, J.M.7
-
61
-
-
33845447400
-
Human Wapl is a cohesin-binding protein that promotes sister-chromatid resolution in mitotic prophase
-
Gandhi R., Gillespie P.J., and Hirano T. Human Wapl is a cohesin-binding protein that promotes sister-chromatid resolution in mitotic prophase. Curr. Biol. 16 (2006) 2406-2417
-
(2006)
Curr. Biol.
, vol.16
, pp. 2406-2417
-
-
Gandhi, R.1
Gillespie, P.J.2
Hirano, T.3
-
62
-
-
28044453063
-
Effects of sister chromatid cohesion proteins on cut gene expression during wing development in Drosophila
-
Dorsett D., Eissenberg J.C., Misulovin Z., Martens A., Redding B., and McKim K. Effects of sister chromatid cohesion proteins on cut gene expression during wing development in Drosophila. Development 132 (2005) 4743-4753
-
(2005)
Development
, vol.132
, pp. 4743-4753
-
-
Dorsett, D.1
Eissenberg, J.C.2
Misulovin, Z.3
Martens, A.4
Redding, B.5
McKim, K.6
-
63
-
-
0344736804
-
Pds5p regulates the maintenance of sister chromatid cohesion and is sumoylated to promote the dissolution of cohesion
-
Stead K., Aguilar C., Hartman T., Drexel M., Meluh P., and Guacci V. Pds5p regulates the maintenance of sister chromatid cohesion and is sumoylated to promote the dissolution of cohesion. J. Cell Biol. 163 (2003) 729-741
-
(2003)
J. Cell Biol.
, vol.163
, pp. 729-741
-
-
Stead, K.1
Aguilar, C.2
Hartman, T.3
Drexel, M.4
Meluh, P.5
Guacci, V.6
-
64
-
-
0034649480
-
Pds5 cooperates with cohesin in maintaining sister chromatid cohesion
-
Panizza S., Tanaka T., Hochwagen A., Eisenhaber F., and Nasmyth K. Pds5 cooperates with cohesin in maintaining sister chromatid cohesion. Curr. Biol. 10 (2000) 1557-1564
-
(2000)
Curr. Biol.
, vol.10
, pp. 1557-1564
-
-
Panizza, S.1
Tanaka, T.2
Hochwagen, A.3
Eisenhaber, F.4
Nasmyth, K.5
-
65
-
-
0034735519
-
Pds5p is an essential chromosomal protein required for both sister chromatid cohesion and condensation in Saccharomyces cerevisiae
-
Hartman T., Stead K., Koshland D., and Guacci V. Pds5p is an essential chromosomal protein required for both sister chromatid cohesion and condensation in Saccharomyces cerevisiae. J. Cell Biol. 151 (2000) 613-626
-
(2000)
J. Cell Biol.
, vol.151
, pp. 613-626
-
-
Hartman, T.1
Stead, K.2
Koshland, D.3
Guacci, V.4
-
66
-
-
33751239101
-
Intersection between the regulators of sister chromatid cohesion establishment and maintenance in budding yeast indicates a multi-step mechanism
-
Noble D., Kenna M.A., Dix M., Skibbens R.V., Unal E., and Guacci V. Intersection between the regulators of sister chromatid cohesion establishment and maintenance in budding yeast indicates a multi-step mechanism. Cell Cycle 5 (2006)
-
(2006)
Cell Cycle
, vol.5
-
-
Noble, D.1
Kenna, M.A.2
Dix, M.3
Skibbens, R.V.4
Unal, E.5
Guacci, V.6
-
67
-
-
0035886715
-
Establishment and maintenance of sister chromatid cohesion in fission yeast by a unique mechanism
-
Tanaka K., Hao Z., Kai M., and Okayama H. Establishment and maintenance of sister chromatid cohesion in fission yeast by a unique mechanism. EMBO J. 20 (2001) 5779-5790
-
(2001)
EMBO J.
, vol.20
, pp. 5779-5790
-
-
Tanaka, K.1
Hao, Z.2
Kai, M.3
Okayama, H.4
-
68
-
-
33947669828
-
Sororin is required for stable binding of cohesin to chromatin and for sister chromatid cohesion in interphase
-
Schmitz J., Watrin E., Lenart P., Mechtler K., and Peters J.M. Sororin is required for stable binding of cohesin to chromatin and for sister chromatid cohesion in interphase. Curr. Biol. 17 (2007) 630-636
-
(2007)
Curr. Biol.
, vol.17
, pp. 630-636
-
-
Schmitz, J.1
Watrin, E.2
Lenart, P.3
Mechtler, K.4
Peters, J.M.5
-
69
-
-
38049035475
-
Cell-cycle regulation of cohesin stability along fission yeast chromosomes
-
Bernard P., Schmidt C.K., Vaur S., Dheur S., Drogat J., Genier S., Ekwall K., Uhlmann F., and Javerzat J.P. Cell-cycle regulation of cohesin stability along fission yeast chromosomes. EMBO J. 27 (2008) 111-121
-
(2008)
EMBO J.
, vol.27
, pp. 111-121
-
-
Bernard, P.1
Schmidt, C.K.2
Vaur, S.3
Dheur, S.4
Drogat, J.5
Genier, S.6
Ekwall, K.7
Uhlmann, F.8
Javerzat, J.P.9
-
70
-
-
0034721656
-
Two distinct pathways remove mammalian cohesin from chromosome arms in prophase and from centromeres in anaphase
-
Waizenegger I.C., Hauf S., Meinke A., and Peters J.M. Two distinct pathways remove mammalian cohesin from chromosome arms in prophase and from centromeres in anaphase. Cell 103 (2000) 399-410
-
(2000)
Cell
, vol.103
, pp. 399-410
-
-
Waizenegger, I.C.1
Hauf, S.2
Meinke, A.3
Peters, J.M.4
-
71
-
-
3142562589
-
Regulation of sister chromatid cohesion between chromosome arms
-
Gimenez-Abian J.F., Sumara I., Hirota T., Hauf S., Gerlich D., de la Torre C., Ellenberg J., and Peters J.M. Regulation of sister chromatid cohesion between chromosome arms. Curr. Biol. 14 (2004) 1187-1193
-
(2004)
Curr. Biol.
, vol.14
, pp. 1187-1193
-
-
Gimenez-Abian, J.F.1
Sumara, I.2
Hirota, T.3
Hauf, S.4
Gerlich, D.5
de la Torre, C.6
Ellenberg, J.7
Peters, J.M.8
-
72
-
-
18044393595
-
Dissociation of cohesin from chromosome arms and loss of arm cohesion during early mitosis depends on phosphorylation of SA2
-
Hauf S., Roitinger E., Koch B., Dittrich C.M., Mechtler K., and Peters J.M. Dissociation of cohesin from chromosome arms and loss of arm cohesion during early mitosis depends on phosphorylation of SA2. PLoS Biol. 3 (2005) e69
-
(2005)
PLoS Biol.
, vol.3
-
-
Hauf, S.1
Roitinger, E.2
Koch, B.3
Dittrich, C.M.4
Mechtler, K.5
Peters, J.M.6
-
73
-
-
0036896143
-
Cohesin release is required for sister chromatid resolution, but not for condensin-mediated compaction, at the onset of mitosis
-
Losada A., Hirano M., and Hirano T. Cohesin release is required for sister chromatid resolution, but not for condensin-mediated compaction, at the onset of mitosis. Genes Dev. 16 (2002) 3004-3016
-
(2002)
Genes Dev.
, vol.16
, pp. 3004-3016
-
-
Losada, A.1
Hirano, M.2
Hirano, T.3
-
74
-
-
0036209010
-
The dissociation of cohesin from chromosomes in prophase is regulated by Polo-like kinase
-
Sumara I., Vorlaufer E., Stukenberg P.T., Kelm O., Redemann N., Nigg E.A., and Peters J.M. The dissociation of cohesin from chromosomes in prophase is regulated by Polo-like kinase. Mol. Cell 9 (2002) 515-525
-
(2002)
Mol. Cell
, vol.9
, pp. 515-525
-
-
Sumara, I.1
Vorlaufer, E.2
Stukenberg, P.T.3
Kelm, O.4
Redemann, N.5
Nigg, E.A.6
Peters, J.M.7
-
75
-
-
34248179475
-
Aurora B controls the association of condensin I but not condensin II with mitotic chromosomes
-
Lipp J.J., Hirota T., Poser I., and Peters J.M. Aurora B controls the association of condensin I but not condensin II with mitotic chromosomes. J. Cell Sci. 120 (2007) 1245-1255
-
(2007)
J. Cell Sci.
, vol.120
, pp. 1245-1255
-
-
Lipp, J.J.1
Hirota, T.2
Poser, I.3
Peters, J.M.4
-
76
-
-
33646098667
-
PP2A is required for centromeric localization of Sgo1 and proper chromosome segregation
-
Tang Z., Shu H., Qi W., Mahmood N.A., Mumby M.C., and Yu H. PP2A is required for centromeric localization of Sgo1 and proper chromosome segregation. Dev. Cell 10 (2006) 575-585
-
(2006)
Dev. Cell
, vol.10
, pp. 575-585
-
-
Tang, Z.1
Shu, H.2
Qi, W.3
Mahmood, N.A.4
Mumby, M.C.5
Yu, H.6
-
77
-
-
33646795889
-
Shugoshin collaborates with protein phosphatase 2A to protect cohesin
-
Kitajima T.S., Sakuno T., Ishiguro K., Iemura S., Natsume T., Kawashima S.A., and Watanabe Y. Shugoshin collaborates with protein phosphatase 2A to protect cohesin. Nature 441 (2006) 46-52
-
(2006)
Nature
, vol.441
, pp. 46-52
-
-
Kitajima, T.S.1
Sakuno, T.2
Ishiguro, K.3
Iemura, S.4
Natsume, T.5
Kawashima, S.A.6
Watanabe, Y.7
-
78
-
-
33646819227
-
Protein phosphatase 2A protects centromeric sister chromatid cohesion during meiosis I
-
Riedel C.G., Katis V.L., Katou Y., Mori S., Itoh T., Helmhart W., Galova M., Petronczki M., Gregan J., Cetin B., Mudrak I., Ogris E., Mechtler K., Pelletier L., Buchholz F., Shirahige K., and Nasmyth K. Protein phosphatase 2A protects centromeric sister chromatid cohesion during meiosis I. Nature 441 (2006) 53-61
-
(2006)
Nature
, vol.441
, pp. 53-61
-
-
Riedel, C.G.1
Katis, V.L.2
Katou, Y.3
Mori, S.4
Itoh, T.5
Helmhart, W.6
Galova, M.7
Petronczki, M.8
Gregan, J.9
Cetin, B.10
Mudrak, I.11
Ogris, E.12
Mechtler, K.13
Pelletier, L.14
Buchholz, F.15
Shirahige, K.16
Nasmyth, K.17
-
79
-
-
18044394368
-
Shugoshin prevents dissociation of cohesin from centromeres during mitosis in vertebrate cells
-
McGuinness B.E., Hirota T., Kudo N.R., Peters J.M., and Nasmyth K. Shugoshin prevents dissociation of cohesin from centromeres during mitosis in vertebrate cells. PLoS Biol. 3 (2005) e86
-
(2005)
PLoS Biol.
, vol.3
-
-
McGuinness, B.E.1
Hirota, T.2
Kudo, N.R.3
Peters, J.M.4
Nasmyth, K.5
-
80
-
-
4444224967
-
Vertebrate shugoshin links sister centromere cohesion and kinetochore microtubule stability in mitosis
-
Salic A., Waters J.C., and Mitchison T.J. Vertebrate shugoshin links sister centromere cohesion and kinetochore microtubule stability in mitosis. Cell 118 (2004) 567-578
-
(2004)
Cell
, vol.118
, pp. 567-578
-
-
Salic, A.1
Waters, J.C.2
Mitchison, T.J.3
-
81
-
-
33947197692
-
Mammalian SGO2 appears at the inner centromere domain and redistributes depending on tension across centromeres during meiosis II and mitosis
-
Gomez R., Valdeolmillos A., Parra M.T., Viera A., Carreiro C., Roncal F., Rufas J.S., Barbero J.L., and Suja J.A. Mammalian SGO2 appears at the inner centromere domain and redistributes depending on tension across centromeres during meiosis II and mitosis. EMBO Rep. 8 (2007) 173-180
-
(2007)
EMBO Rep.
, vol.8
, pp. 173-180
-
-
Gomez, R.1
Valdeolmillos, A.2
Parra, M.T.3
Viera, A.4
Carreiro, C.5
Roncal, F.6
Rufas, J.S.7
Barbero, J.L.8
Suja, J.A.9
-
82
-
-
11844302175
-
The centromeric protein Sgo1 is required to sense lack of tension on mitotic chromosomes
-
Indjeian V.B., Stern B.M., and Murray A.W. The centromeric protein Sgo1 is required to sense lack of tension on mitotic chromosomes. Science 307 (2005) 130-133
-
(2005)
Science
, vol.307
, pp. 130-133
-
-
Indjeian, V.B.1
Stern, B.M.2
Murray, A.W.3
-
83
-
-
33847219959
-
Shugoshin enables tension-generating attachment of kinetochores by loading Aurora tocentromeres
-
Kawashima S.A., Tsukahara T., Langegger M., Hauf S., Kitajima T.S., and Watanabe Y. Shugoshin enables tension-generating attachment of kinetochores by loading Aurora tocentromeres. Genes Dev. 21 (2007) 420-435
-
(2007)
Genes Dev.
, vol.21
, pp. 420-435
-
-
Kawashima, S.A.1
Tsukahara, T.2
Langegger, M.3
Hauf, S.4
Kitajima, T.S.5
Watanabe, Y.6
-
84
-
-
13944261954
-
Human Bub1 defines the persistent cohesion site along the mitotic chromosome by affecting Shugoshin localization
-
Kitajima T.S., Hauf S., Ohsugi M., Yamamoto T., and Watanabe Y. Human Bub1 defines the persistent cohesion site along the mitotic chromosome by affecting Shugoshin localization. Curr. Biol. 15 (2005) 353-359
-
(2005)
Curr. Biol.
, vol.15
, pp. 353-359
-
-
Kitajima, T.S.1
Hauf, S.2
Ohsugi, M.3
Yamamoto, T.4
Watanabe, Y.5
-
85
-
-
33745653601
-
INCENP and Aurora B promote meiotic sister chromatid cohesion through localization of the Shugoshin MEI-S332 in Drosophila
-
Resnick T.D., Satinover D.L., MacIsaac F., Stukenberg P.T., Earnshaw W.C., Orr-Weaver T.L., and Carmena M. INCENP and Aurora B promote meiotic sister chromatid cohesion through localization of the Shugoshin MEI-S332 in Drosophila. Dev. Cell 11 (2006) 57-68
-
(2006)
Dev. Cell
, vol.11
, pp. 57-68
-
-
Resnick, T.D.1
Satinover, D.L.2
MacIsaac, F.3
Stukenberg, P.T.4
Earnshaw, W.C.5
Orr-Weaver, T.L.6
Carmena, M.7
-
86
-
-
11144235699
-
Human Bub1 protects centromeric sister-chromatid cohesion through Shugoshin during mitosis
-
Tang Z., Sun Y., Harley S.E., Zou H., and Yu H. Human Bub1 protects centromeric sister-chromatid cohesion through Shugoshin during mitosis. Proc. Natl. Acad. Sci. U. S. A. 101 (2004) 18012-18017
-
(2004)
Proc. Natl. Acad. Sci. U. S. A.
, vol.101
, pp. 18012-18017
-
-
Tang, Z.1
Sun, Y.2
Harley, S.E.3
Zou, H.4
Yu, H.5
-
87
-
-
29044441785
-
Control of Shugoshin function during fission-yeast meiosis
-
Vaur S., Cubizolles F., Plane G., Genier S., Rabitsch P.K., Gregan J., Nasmyth K., Vanoosthuyse V., Hardwick K.G., and Javerzat J.P. Control of Shugoshin function during fission-yeast meiosis. Curr. Biol. 15 (2005) 2263-2270
-
(2005)
Curr. Biol.
, vol.15
, pp. 2263-2270
-
-
Vaur, S.1
Cubizolles, F.2
Plane, G.3
Genier, S.4
Rabitsch, P.K.5
Gregan, J.6
Nasmyth, K.7
Vanoosthuyse, V.8
Hardwick, K.G.9
Javerzat, J.P.10
-
88
-
-
33947731702
-
Bub1 is essential for assembly of the functional inner centromere
-
Boyarchuk Y., Salic A., Dasso M., and Arnaoutov A. Bub1 is essential for assembly of the functional inner centromere. J. Cell Biol. 176 (2007) 919-928
-
(2007)
J. Cell Biol.
, vol.176
, pp. 919-928
-
-
Boyarchuk, Y.1
Salic, A.2
Dasso, M.3
Arnaoutov, A.4
-
89
-
-
34848910184
-
Bub1 maintains centromeric cohesion by activation of the spindle checkpoint
-
Perera D., Tilston V., Hopwood J.A., Barchi M., Boot-Handford R.P., and Taylor S.S. Bub1 maintains centromeric cohesion by activation of the spindle checkpoint. Dev. Cell 13 (2007) 566-579
-
(2007)
Dev. Cell
, vol.13
, pp. 566-579
-
-
Perera, D.1
Tilston, V.2
Hopwood, J.A.3
Barchi, M.4
Boot-Handford, R.P.5
Taylor, S.S.6
-
90
-
-
33750428233
-
Regulation of mitotic chromosome cohesion by haspin and aurora B
-
Dai J., Sullivan B.A., and Higgins J.M. Regulation of mitotic chromosome cohesion by haspin and aurora B. Dev. Cell 11 (2006) 741-750
-
(2006)
Dev. Cell
, vol.11
, pp. 741-750
-
-
Dai, J.1
Sullivan, B.A.2
Higgins, J.M.3
-
91
-
-
34547491228
-
PHB2 protects sister-chromatid cohesion in mitosis
-
Takata H., Matsunaga S., Morimoto A., Ma N., Kurihara D., Ono-Maniwa R., Nakagawa M., Azuma T., Uchiyama S., and Fukui K. PHB2 protects sister-chromatid cohesion in mitosis. Curr. Biol. 17 (2007) 1356-1361
-
(2007)
Curr. Biol.
, vol.17
, pp. 1356-1361
-
-
Takata, H.1
Matsunaga, S.2
Morimoto, A.3
Ma, N.4
Kurihara, D.5
Ono-Maniwa, R.6
Nakagawa, M.7
Azuma, T.8
Uchiyama, S.9
Fukui, K.10
-
92
-
-
0034959766
-
Secured cutting: controlling separase at the metaphase to anaphase transition
-
Uhlmann F. Secured cutting: controlling separase at the metaphase to anaphase transition. EMBO Rep. 2 (2001) 487-492
-
(2001)
EMBO Rep.
, vol.2
, pp. 487-492
-
-
Uhlmann, F.1
-
93
-
-
0035906861
-
Phosphorylation of the cohesin subunit Scc1 by Polo/Cdc5 kinase regulates sister chromatid separation in yeast
-
Alexandru G., Uhlmann F., Mechtler K., Poupart M.A., and Nasmyth K. Phosphorylation of the cohesin subunit Scc1 by Polo/Cdc5 kinase regulates sister chromatid separation in yeast. Cell 105 (2001) 459-472
-
(2001)
Cell
, vol.105
, pp. 459-472
-
-
Alexandru, G.1
Uhlmann, F.2
Mechtler, K.3
Poupart, M.A.4
Nasmyth, K.5
-
94
-
-
4143138882
-
Preferential cleavage of chromatin-bound cohesin after targeted phosphorylation by Polo-like kinase
-
Hornig N.C., and Uhlmann F. Preferential cleavage of chromatin-bound cohesin after targeted phosphorylation by Polo-like kinase. EMBO J. 23 (2004) 3144-3153
-
(2004)
EMBO J.
, vol.23
, pp. 3144-3153
-
-
Hornig, N.C.1
Uhlmann, F.2
-
95
-
-
21244467405
-
Mutual inhibition of separase and Cdk1 by two-step complex formation
-
Gorr I.H., Boos D., and Stemmann O. Mutual inhibition of separase and Cdk1 by two-step complex formation. Mol. Cell 19 (2005) 135-141
-
(2005)
Mol. Cell
, vol.19
, pp. 135-141
-
-
Gorr, I.H.1
Boos, D.2
Stemmann, O.3
-
96
-
-
34548314535
-
Protein phosphatase 2A and separase form a complex regulated by separase autocleavage
-
Holland A.J., Bottger F., Stemmann O., and Taylor S.S. Protein phosphatase 2A and separase form a complex regulated by separase autocleavage. J. Biol. Chem. 282 (2007) 24623-24632
-
(2007)
J. Biol. Chem.
, vol.282
, pp. 24623-24632
-
-
Holland, A.J.1
Bottger, F.2
Stemmann, O.3
Taylor, S.S.4
-
97
-
-
34547556427
-
Astrin is required for the maintenance of sister chromatid cohesion and centrosome integrity
-
Thein K.H., Kleylein-Sohn J., Nigg E.A., and Gruneberg U. Astrin is required for the maintenance of sister chromatid cohesion and centrosome integrity. J. Cell Biol. 178 (2007) 345-354
-
(2007)
J. Cell Biol.
, vol.178
, pp. 345-354
-
-
Thein, K.H.1
Kleylein-Sohn, J.2
Nigg, E.A.3
Gruneberg, U.4
-
98
-
-
11244325609
-
POLO kinase regulates the Drosophila centromere cohesion protein MEI-S332
-
Clarke A.S., Tang T.T., Ooi D.L., and Orr-Weaver T.L. POLO kinase regulates the Drosophila centromere cohesion protein MEI-S332. Dev. Cell 8 (2005) 53-64
-
(2005)
Dev. Cell
, vol.8
, pp. 53-64
-
-
Clarke, A.S.1
Tang, T.T.2
Ooi, D.L.3
Orr-Weaver, T.L.4
-
99
-
-
3343013226
-
Control of centromere localization of the MEI-S332 cohesion protection protein
-
Lee J.Y., Dej K.J., Lopez J.M., and Orr-Weaver T.L. Control of centromere localization of the MEI-S332 cohesion protection protein. Curr. Biol. 14 (2004) 1277-1283
-
(2004)
Curr. Biol.
, vol.14
, pp. 1277-1283
-
-
Lee, J.Y.1
Dej, K.J.2
Lopez, J.M.3
Orr-Weaver, T.L.4
-
100
-
-
33745746347
-
Coordinated requirements of human topo II and cohesin for metaphase centromere alignment under Mad2-dependent spindle checkpoint surveillance
-
Toyoda Y., and Yanagida M. Coordinated requirements of human topo II and cohesin for metaphase centromere alignment under Mad2-dependent spindle checkpoint surveillance. Mol. Biol. Cell 17 (2006) 2287-2302
-
(2006)
Mol. Biol. Cell
, vol.17
, pp. 2287-2302
-
-
Toyoda, Y.1
Yanagida, M.2
-
101
-
-
1542566719
-
Analysis of Scc1-deficient cells defines a key metaphase role of vertebrate cohesin in linking sister kinetochores
-
Vagnarelli P., Morrison C., Dodson H., Sonoda E., Takeda S., and Earnshaw W.C. Analysis of Scc1-deficient cells defines a key metaphase role of vertebrate cohesin in linking sister kinetochores. EMBO Rep. 5 (2004) 167-171
-
(2004)
EMBO Rep.
, vol.5
, pp. 167-171
-
-
Vagnarelli, P.1
Morrison, C.2
Dodson, H.3
Sonoda, E.4
Takeda, S.5
Earnshaw, W.C.6
-
102
-
-
0027209306
-
Topoisomerase II inhibition prevents anaphase chromatid segregation in mammalian cells independently of the generation of DNA strand breaks
-
Clarke D.J., Johnson R.T., and Downes C.S. Topoisomerase II inhibition prevents anaphase chromatid segregation in mammalian cells independently of the generation of DNA strand breaks. J. Cell Sci. 105 Pt 2 (1993) 563-569
-
(1993)
J. Cell Sci.
, vol.105
, Issue.PART 2
, pp. 563-569
-
-
Clarke, D.J.1
Johnson, R.T.2
Downes, C.S.3
-
103
-
-
0026656463
-
Sister chromatid separation in frog egg extracts requires DNA topoisomerase II activity during anaphase
-
Shamu C.E., and Murray A.W. Sister chromatid separation in frog egg extracts requires DNA topoisomerase II activity during anaphase. J. Cell Biol. 117 (1992) 921-934
-
(1992)
J. Cell Biol.
, vol.117
, pp. 921-934
-
-
Shamu, C.E.1
Murray, A.W.2
-
104
-
-
33845981777
-
PICH, a centromere-associated SNF2 family ATPase, is regulated by Plk1 and required for the spindle checkpoint
-
Baumann C., Korner R., Hofmann K., and Nigg E.A. PICH, a centromere-associated SNF2 family ATPase, is regulated by Plk1 and required for the spindle checkpoint. Cell 128 (2007) 101-114
-
(2007)
Cell
, vol.128
, pp. 101-114
-
-
Baumann, C.1
Korner, R.2
Hofmann, K.3
Nigg, E.A.4
-
105
-
-
41149168802
-
Persistence of DNA threads in human anaphase cells suggests late completion of sister chromatid decatenation
-
Wang L.H., Schwarzbraun T., Speicher M.R., and Nigg E.A. Persistence of DNA threads in human anaphase cells suggests late completion of sister chromatid decatenation. Chromosoma 117 (2007) 123-135
-
(2007)
Chromosoma
, vol.117
, pp. 123-135
-
-
Wang, L.H.1
Schwarzbraun, T.2
Speicher, M.R.3
Nigg, E.A.4
-
106
-
-
37249051376
-
Depletion of topoisomerase II{alpha} leads to shortening of the metaphase interkinetochore distance and abnormal persistence of PICH-coated anaphase threads
-
Spence J.M., Phua H.H., Mills W., Carpenter A.J., Porter A.C., and Farr C.J. Depletion of topoisomerase II{alpha} leads to shortening of the metaphase interkinetochore distance and abnormal persistence of PICH-coated anaphase threads. J. Cell Sci. 120 (2007) 3952-3964
-
(2007)
J. Cell Sci.
, vol.120
, pp. 3952-3964
-
-
Spence, J.M.1
Phua, H.H.2
Mills, W.3
Carpenter, A.J.4
Porter, A.C.5
Farr, C.J.6
-
107
-
-
0036291014
-
The SUMO-1 isopeptidase Smt4 is linked to centromeric cohesion through SUMO-1 modification of DNA topoisomerase II
-
Bachant J., Alcasabas A., Blat Y., Kleckner N., and Elledge S.J. The SUMO-1 isopeptidase Smt4 is linked to centromeric cohesion through SUMO-1 modification of DNA topoisomerase II. Mol. Cell 9 (2002) 1169-1182
-
(2002)
Mol. Cell
, vol.9
, pp. 1169-1182
-
-
Bachant, J.1
Alcasabas, A.2
Blat, Y.3
Kleckner, N.4
Elledge, S.J.5
-
108
-
-
21844437072
-
PIASy mediates SUMO-2 conjugation of Topoisomerase-II on mitotic chromosomes
-
Azuma Y., Arnaoutov A., Anan T., and Dasso M. PIASy mediates SUMO-2 conjugation of Topoisomerase-II on mitotic chromosomes. EMBO J. 24 (2005) 2172-2182
-
(2005)
EMBO J.
, vol.24
, pp. 2172-2182
-
-
Azuma, Y.1
Arnaoutov, A.2
Anan, T.3
Dasso, M.4
-
109
-
-
54949126326
-
PIASgamma is required for faithful chromosome segregation in human cells
-
Diaz-Martinez L.A., Gimenez-Abian J.F., Azuma Y., Guacci V., Gimenez-Martin G., Lanier L.M., and Clarke D.J. PIASgamma is required for faithful chromosome segregation in human cells. PLoS ONE 1 (2006) e53
-
(2006)
PLoS ONE
, vol.1
-
-
Diaz-Martinez, L.A.1
Gimenez-Abian, J.F.2
Azuma, Y.3
Guacci, V.4
Gimenez-Martin, G.5
Lanier, L.M.6
Clarke, D.J.7
-
110
-
-
2942557397
-
Protein inhibitor of activated STAT Y (PIASy) and a splice variant lacking exon 6 enhance sumoylation but are not essential for embryogenesis and adult life
-
Wong K.A., Kim R., Christofk H., Gao J., Lawson G., and Wu H. Protein inhibitor of activated STAT Y (PIASy) and a splice variant lacking exon 6 enhance sumoylation but are not essential for embryogenesis and adult life. Mol. Cell Biol. 24 (2004) 5577-5586
-
(2004)
Mol. Cell Biol.
, vol.24
, pp. 5577-5586
-
-
Wong, K.A.1
Kim, R.2
Christofk, H.3
Gao, J.4
Lawson, G.5
Wu, H.6
-
111
-
-
33746662847
-
Cohesin and DNA damage repair
-
Watrin E., and Peters J.M. Cohesin and DNA damage repair. Exp. Cell Res. 312 (2006) 2687-2693
-
(2006)
Exp. Cell Res.
, vol.312
, pp. 2687-2693
-
-
Watrin, E.1
Peters, J.M.2
-
112
-
-
0346668366
-
Specific recruitment of human cohesin to laser-induced DNA damage
-
Kim J.S., Krasieva T.B., LaMorte V., Taylor A.M., and Yokomori K. Specific recruitment of human cohesin to laser-induced DNA damage. J. Biol. Chem. 277 (2002) 45149-45153
-
(2002)
J. Biol. Chem.
, vol.277
, pp. 45149-45153
-
-
Kim, J.S.1
Krasieva, T.B.2
LaMorte, V.3
Taylor, A.M.4
Yokomori, K.5
-
113
-
-
10944232673
-
Postreplicative recruitment of cohesin to double-strand breaks is required for DNA repair
-
Strom L., Lindroos H.B., Shirahige K., and Sjogren C. Postreplicative recruitment of cohesin to double-strand breaks is required for DNA repair. Mol. Cell 16 (2004) 1003-1015
-
(2004)
Mol. Cell
, vol.16
, pp. 1003-1015
-
-
Strom, L.1
Lindroos, H.B.2
Shirahige, K.3
Sjogren, C.4
-
114
-
-
10944262393
-
DNA damage response pathway uses histone modification to assemble a double-strand break-specific cohesin domain
-
Unal E., Arbel-Eden A., Sattler U., Shroff R., Lichten M., Haber J.E., and Koshland D. DNA damage response pathway uses histone modification to assemble a double-strand break-specific cohesin domain. Mol. Cell 16 (2004) 991-1002
-
(2004)
Mol. Cell
, vol.16
, pp. 991-1002
-
-
Unal, E.1
Arbel-Eden, A.2
Sattler, U.3
Shroff, R.4
Lichten, M.5
Haber, J.E.6
Koshland, D.7
-
115
-
-
33749511276
-
Double-strand breaks arising by replication through a nick are repaired by cohesin-dependent sister-chromatid exchange
-
Cortes-Ledesma F., and Aguilera A. Double-strand breaks arising by replication through a nick are repaired by cohesin-dependent sister-chromatid exchange. EMBO Rep. 7 (2006) 919-926
-
(2006)
EMBO Rep.
, vol.7
, pp. 919-926
-
-
Cortes-Ledesma, F.1
Aguilera, A.2
-
116
-
-
2942687831
-
Phosphorylation of SMC1is a critical downstream event in the ATM-NBS1-BRCA1 pathway
-
Kitagawa R., Bakkenist C.J., McKinnon P.J., and Kastan M.B. Phosphorylation of SMC1is a critical downstream event in the ATM-NBS1-BRCA1 pathway. Genes Dev. 18 (2004) 1423-1438
-
(2004)
Genes Dev.
, vol.18
, pp. 1423-1438
-
-
Kitagawa, R.1
Bakkenist, C.J.2
McKinnon, P.J.3
Kastan, M.B.4
-
117
-
-
34447549077
-
Postreplicative formation of cohesion is required for repair and induced by a single DNA break
-
Strom L., Karlsson C., Lindroos H.B., Wedahl S., Katou Y., Shirahige K., and Sjogren C. Postreplicative formation of cohesion is required for repair and induced by a single DNA break. Science 317 (2007) 242-245
-
(2007)
Science
, vol.317
, pp. 242-245
-
-
Strom, L.1
Karlsson, C.2
Lindroos, H.B.3
Wedahl, S.4
Katou, Y.5
Shirahige, K.6
Sjogren, C.7
-
118
-
-
34447536708
-
DNA double-strand breaks trigger genome-wide sister-chromatid cohesion through Eco1 (Ctf7)
-
Unal E., Heidinger-Pauli J.M., and Koshland D. DNA double-strand breaks trigger genome-wide sister-chromatid cohesion through Eco1 (Ctf7). Science 317 (2007) 245-248
-
(2007)
Science
, vol.317
, pp. 245-248
-
-
Unal, E.1
Heidinger-Pauli, J.M.2
Koshland, D.3
-
119
-
-
1842557791
-
Drosophila nipped-B protein supports sister chromatid cohesion and opposes the stromalin/Scc3 cohesion factor to facilitate long-range activation of the cut gene
-
Rollins R.A., Korom M., Aulner N., Martens A., and Dorsett D. Drosophila nipped-B protein supports sister chromatid cohesion and opposes the stromalin/Scc3 cohesion factor to facilitate long-range activation of the cut gene. Mol. Cell Biol. 24 (2004) 3100-3111
-
(2004)
Mol. Cell Biol.
, vol.24
, pp. 3100-3111
-
-
Rollins, R.A.1
Korom, M.2
Aulner, N.3
Martens, A.4
Dorsett, D.5
-
120
-
-
0033018842
-
Nipped-B, a Drosophila homologue of chromosomal adherins, participates in activation by remote enhancers in the cut and Ultrabithorax genes
-
Rollins R.A., Morcillo P., and Dorsett D. Nipped-B, a Drosophila homologue of chromosomal adherins, participates in activation by remote enhancers in the cut and Ultrabithorax genes. Genetics 152 (1999) 577-593
-
(1999)
Genetics
, vol.152
, pp. 577-593
-
-
Rollins, R.A.1
Morcillo, P.2
Dorsett, D.3
-
121
-
-
34547762839
-
Cohesin-dependent regulation of Runx genes
-
Horsfield J.A., Anagnostou S.H., Hu J.K., Cho K.H., Geisler R., Lieschke G., Crosier K.E., and Crosier P.S. Cohesin-dependent regulation of Runx genes. Development 134 (2007) 2639-2649
-
(2007)
Development
, vol.134
, pp. 2639-2649
-
-
Horsfield, J.A.1
Anagnostou, S.H.2
Hu, J.K.3
Cho, K.H.4
Geisler, R.5
Lieschke, G.6
Crosier, K.E.7
Crosier, P.S.8
-
122
-
-
38849121606
-
Cohesins functionally associate with CTCF on mammalian chromosome arms
-
Parelho V., Hadjur S., Spivakov M., Leleu M., Sauer S., Gregson H.C., Jarmuz A., Canzonetta C., Webster Z., Nesterova T., Cobb B.S., Yokomori K., Dillon N., Aragon L., Fisher A.G., and Merkenschlager M. Cohesins functionally associate with CTCF on mammalian chromosome arms. Cell 132 (2008) 422-433
-
(2008)
Cell
, vol.132
, pp. 422-433
-
-
Parelho, V.1
Hadjur, S.2
Spivakov, M.3
Leleu, M.4
Sauer, S.5
Gregson, H.C.6
Jarmuz, A.7
Canzonetta, C.8
Webster, Z.9
Nesterova, T.10
Cobb, B.S.11
Yokomori, K.12
Dillon, N.13
Aragon, L.14
Fisher, A.G.15
Merkenschlager, M.16
-
123
-
-
39449111307
-
Cohesins localize with CTCF at the KSHV latency control region and at cellular c-myc and H19/Igf2 insulators
-
Stedman W., Kang H., Lin S., Kissil J.L., Bartolomei M.S., and Lieberman P.M. Cohesins localize with CTCF at the KSHV latency control region and at cellular c-myc and H19/Igf2 insulators. EMBO J. 27 (2008) 654-666
-
(2008)
EMBO J.
, vol.27
, pp. 654-666
-
-
Stedman, W.1
Kang, H.2
Lin, S.3
Kissil, J.L.4
Bartolomei, M.S.5
Lieberman, P.M.6
-
124
-
-
24344440548
-
Precocious sister chromatid separation (PSCS) in Cornelia de Lange syndrome
-
Kaur M., DeScipio C., McCallum J., Yaeger D., Devoto M., Jackson L.G., Spinnerand N.B., and Krantz I.D. Precocious sister chromatid separation (PSCS) in Cornelia de Lange syndrome. Am. J. Med. Genet. A 138 (2005) 27-31
-
(2005)
Am. J. Med. Genet. A
, vol.138
, pp. 27-31
-
-
Kaur, M.1
DeScipio, C.2
McCallum, J.3
Yaeger, D.4
Devoto, M.5
Jackson, L.G.6
Spinnerand, N.B.7
Krantz, I.D.8
-
125
-
-
33846599680
-
Roles of the sister chromatid cohesion apparatus in gene expression, development, and human syndromes
-
Dorsett D. Roles of the sister chromatid cohesion apparatus in gene expression, development, and human syndromes. Chromosoma 116 (2007) 1-13
-
(2007)
Chromosoma
, vol.116
, pp. 1-13
-
-
Dorsett, D.1
-
126
-
-
20944444999
-
Roberts syndrome is caused by mutations in ESCO2, a human homolog of yeast ECO1 that is essential for the establishment of sister chromatid cohesion
-
Vega H., Waisfisz Q., Gordillo M., Sakai N., Yanagihara I., Yamada M., van Gosliga D., Kayserili H., Xu C., Ozono K., Jabs E.W., Inui K., and Joenje H. Roberts syndrome is caused by mutations in ESCO2, a human homolog of yeast ECO1 that is essential for the establishment of sister chromatid cohesion. Nat. Genet. 37 (2005) 468-470
-
(2005)
Nat. Genet.
, vol.37
, pp. 468-470
-
-
Vega, H.1
Waisfisz, Q.2
Gordillo, M.3
Sakai, N.4
Yanagihara, I.5
Yamada, M.6
van Gosliga, D.7
Kayserili, H.8
Xu, C.9
Ozono, K.10
Jabs, E.W.11
Inui, K.12
Joenje, H.13
-
127
-
-
38849173178
-
Cell-type-specific TEV protease cleavage reveals cohesin functions in Drosophila neurons
-
Pauli A., Althoff F., Oliveira R.A., Heidmann S., Schuldiner O., Lehner C.F., Dickson B.J., and Nasmyth K. Cell-type-specific TEV protease cleavage reveals cohesin functions in Drosophila neurons. Dev. Cell 14 (2008) 239-251
-
(2008)
Dev. Cell
, vol.14
, pp. 239-251
-
-
Pauli, A.1
Althoff, F.2
Oliveira, R.A.3
Heidmann, S.4
Schuldiner, O.5
Lehner, C.F.6
Dickson, B.J.7
Nasmyth, K.8
-
128
-
-
38849130750
-
piggyBac-based mosaic screen identifies a postmitotic function for cohesin in regulating developmental axon pruning
-
Schuldiner O., Berdnik D., Levy J.M., Wu J.S., Luginbuhl D., Gontang A.C., and Luo L. piggyBac-based mosaic screen identifies a postmitotic function for cohesin in regulating developmental axon pruning. Dev. Cell 14 (2008) 227-238
-
(2008)
Dev. Cell
, vol.14
, pp. 227-238
-
-
Schuldiner, O.1
Berdnik, D.2
Levy, J.M.3
Wu, J.S.4
Luginbuhl, D.5
Gontang, A.C.6
Luo, L.7
-
129
-
-
40849149557
-
Chromatid cohesion defects may underlie chromosome instability in human colorectal cancers
-
Barber T.D., McManus K., Yuen K.W., Reis M., Parmigiani G., Shen D., Barrett I., Nouhi Y., Spencer F., Markowitz S., Velculescu V.E., Kinzler K.W., Vogelstein B., Lengauer C., and Hieter P. Chromatid cohesion defects may underlie chromosome instability in human colorectal cancers. Proc Natl. Acad. Sci. U. S. A. 105 (2008) 3443-3448
-
(2008)
Proc Natl. Acad. Sci. U. S. A.
, vol.105
, pp. 3443-3448
-
-
Barber, T.D.1
McManus, K.2
Yuen, K.W.3
Reis, M.4
Parmigiani, G.5
Shen, D.6
Barrett, I.7
Nouhi, Y.8
Spencer, F.9
Markowitz, S.10
Velculescu, V.E.11
Kinzler, K.W.12
Vogelstein, B.13
Lengauer, C.14
Hieter, P.15
-
130
-
-
2942729457
-
Cohesin SMC1 beta is required for meiotic chromosome dynamics, sister chromatid cohesion and DNA recombination
-
Revenkova E., Eijpe M., Heyting C., Hodges C.A., Hunt P.A., Liebe B., Scherthan H., and Jessberger R. Cohesin SMC1 beta is required for meiotic chromosome dynamics, sister chromatid cohesion and DNA recombination. Nat. Cell Biol. 6 (2004) 555-562
-
(2004)
Nat. Cell Biol.
, vol.6
, pp. 555-562
-
-
Revenkova, E.1
Eijpe, M.2
Heyting, C.3
Hodges, C.A.4
Hunt, P.A.5
Liebe, B.6
Scherthan, H.7
Jessberger, R.8
-
131
-
-
19944419800
-
Absence of mouse REC8 cohesin promotes synapsis of sister chromatids in meiosis
-
Xu H., Beasley M.D., Warren W.D., van der Horst G.T., and McKay M.J. Absence of mouse REC8 cohesin promotes synapsis of sister chromatids in meiosis. Dev. Cell 8 (2005) 949-961
-
(2005)
Dev. Cell
, vol.8
, pp. 949-961
-
-
Xu, H.1
Beasley, M.D.2
Warren, W.D.3
van der Horst, G.T.4
McKay, M.J.5
-
132
-
-
34848911616
-
Mice lacking sister chromatid cohesion protein PDS5B exhibit developmental abnormalities reminiscent of Cornelia de Lange syndrome
-
Zhang B., Jain S., Song H., Fu M., Heuckeroth R.O., Erlich J.M., Jay P.Y., and Milbrandt J. Mice lacking sister chromatid cohesion protein PDS5B exhibit developmental abnormalities reminiscent of Cornelia de Lange syndrome. Development 134 (2007) 3191-3201
-
(2007)
Development
, vol.134
, pp. 3191-3201
-
-
Zhang, B.1
Jain, S.2
Song, H.3
Fu, M.4
Heuckeroth, R.O.5
Erlich, J.M.6
Jay, P.Y.7
Milbrandt, J.8
-
133
-
-
33644887985
-
The selective continued linkage of centromeres from mitosis to interphase in the absence of mammalian separase
-
Kumada K., Yao R., Kawaguchi T., Karasawa M., Hoshikawa Y., Ichikawa K., Sugitani Y., Imoto I., Inazawa J., Sugawara M., Yanagida M., and Noda T. The selective continued linkage of centromeres from mitosis to interphase in the absence of mammalian separase. J. Cell Biol. 172 (2006) 835-846
-
(2006)
J. Cell Biol.
, vol.172
, pp. 835-846
-
-
Kumada, K.1
Yao, R.2
Kawaguchi, T.3
Karasawa, M.4
Hoshikawa, Y.5
Ichikawa, K.6
Sugitani, Y.7
Imoto, I.8
Inazawa, J.9
Sugawara, M.10
Yanagida, M.11
Noda, T.12
-
134
-
-
33644883883
-
Separase: a universal trigger for sister chromatid disjunction but not chromosome cycle progression
-
Wirth K.G., Wutz G., Kudo N.R., Desdouets C., Zetterberg A., Taghybeeglu S., Seznec J., Ducos G.M., Ricci R., Firnberg N., Peters J.M., and Nasmyth K. Separase: a universal trigger for sister chromatid disjunction but not chromosome cycle progression. J. Cell Biol. 172 (2006) 847-860
-
(2006)
J. Cell Biol.
, vol.172
, pp. 847-860
-
-
Wirth, K.G.1
Wutz, G.2
Kudo, N.R.3
Desdouets, C.4
Zetterberg, A.5
Taghybeeglu, S.6
Seznec, J.7
Ducos, G.M.8
Ricci, R.9
Firnberg, N.10
Peters, J.M.11
Nasmyth, K.12
-
135
-
-
33846031245
-
A mutation in separase causes genome instability and increased susceptibility to epithelial cancer
-
Shepard J.L., Amatruda J.F., Finkelstein D., Ziai J., Finley K.R., Stern H.M., Chiang K., Hersey C., Barut B., Freeman J.L., Lee C., Glickman J.N., Kutok J.L., Aster J.C., and Zon L.I. A mutation in separase causes genome instability and increased susceptibility to epithelial cancer. Genes Dev. 21 (2007) 55-59
-
(2007)
Genes Dev.
, vol.21
, pp. 55-59
-
-
Shepard, J.L.1
Amatruda, J.F.2
Finkelstein, D.3
Ziai, J.4
Finley, K.R.5
Stern, H.M.6
Chiang, K.7
Hersey, C.8
Barut, B.9
Freeman, J.L.10
Lee, C.11
Glickman, J.N.12
Kutok, J.L.13
Aster, J.C.14
Zon, L.I.15
-
136
-
-
14944380163
-
Epithelial re-organization and dynamics ofprogression through mitosis in Drosophila separase complex mutants
-
Pandey R., Heidmann S., and Lehner C.F. Epithelial re-organization and dynamics ofprogression through mitosis in Drosophila separase complex mutants. J. Cell Sci. 118 (2005) 733-742
-
(2005)
J. Cell Sci.
, vol.118
, pp. 733-742
-
-
Pandey, R.1
Heidmann, S.2
Lehner, C.F.3
-
137
-
-
35548957419
-
Bub1mediates cell death in response to chromosome missegregation and acts to suppresss pontaneous tumorigenesis
-
Jeganathan K., Malureanu L., Baker D.J., Abraham S.C., and van Deursen J.M. Bub1mediates cell death in response to chromosome missegregation and acts to suppresss pontaneous tumorigenesis. J. Cell Biol. 179 (2007) 255-267
-
(2007)
J. Cell Biol.
, vol.179
, pp. 255-267
-
-
Jeganathan, K.1
Malureanu, L.2
Baker, D.J.3
Abraham, S.C.4
van Deursen, J.M.5
-
138
-
-
3042761646
-
BubR1 insufficiency causes early onset of aging-associated phenotypes and infertility in mice
-
Baker D.J., Jeganathan K.B., Cameron J.D., Thompson M., Juneja S., Kopecka A., Kumar R., Jenkins R.B., de Groen P.C., Roche P., and van Deursen J.M. BubR1 insufficiency causes early onset of aging-associated phenotypes and infertility in mice. Nat. Genet. 36 (2004) 744-749
-
(2004)
Nat. Genet.
, vol.36
, pp. 744-749
-
-
Baker, D.J.1
Jeganathan, K.B.2
Cameron, J.D.3
Thompson, M.4
Juneja, S.5
Kopecka, A.6
Kumar, R.7
Jenkins, R.B.8
de Groen, P.C.9
Roche, P.10
van Deursen, J.M.11
-
139
-
-
32644435114
-
Early aging-associated phenotypes in Bub3/Rae1 haploinsufficient mice
-
Baker D.J., Jeganathan K.B., Malureanu L., Perez-Terzic C., Terzic A., and van Deursen J.M. Early aging-associated phenotypes in Bub3/Rae1 haploinsufficient mice. J. Cell Biol. 172 (2006) 529-540
-
(2006)
J. Cell Biol.
, vol.172
, pp. 529-540
-
-
Baker, D.J.1
Jeganathan, K.B.2
Malureanu, L.3
Perez-Terzic, C.4
Terzic, A.5
van Deursen, J.M.6
-
140
-
-
34548251989
-
Loss of ChlR1 helicase in mouse causes lethality due to the accumulation of aneuploid cells generated by cohesion defects and placental malformation
-
Inoue A., Li T., Roby S.K., Valentine M.B., Inoue M., Boyd K., Kidd V.J., and Lahti J.M. Loss of ChlR1 helicase in mouse causes lethality due to the accumulation of aneuploid cells generated by cohesion defects and placental malformation. Cell Cycle 6 (2007) 1646-1654
-
(2007)
Cell Cycle
, vol.6
, pp. 1646-1654
-
-
Inoue, A.1
Li, T.2
Roby, S.K.3
Valentine, M.B.4
Inoue, M.5
Boyd, K.6
Kidd, V.J.7
Lahti, J.M.8
-
141
-
-
15544389502
-
Defectivesister-chromatid cohesion, aneuploidy and cancer predisposition in a mouse model of type II Rothmund-Thomson syndrome
-
Mann M.B., Hodges C.A., Barnes E., Vogel H., Hassold T.J., and Luo G. Defectivesister-chromatid cohesion, aneuploidy and cancer predisposition in a mouse model of type II Rothmund-Thomson syndrome. Hum. Mol. Genet. 14 (2005) 813-825
-
(2005)
Hum. Mol. Genet.
, vol.14
, pp. 813-825
-
-
Mann, M.B.1
Hodges, C.A.2
Barnes, E.3
Vogel, H.4
Hassold, T.J.5
Luo, G.6
-
142
-
-
22344448705
-
Unzipped and loaded: the role of DNA helicases and RFC clamp-loading complexes in sister chromatid cohesion
-
Skibbens R.V. Unzipped and loaded: the role of DNA helicases and RFC clamp-loading complexes in sister chromatid cohesion. J. Cell Biol. 169 (2005) 841-846
-
(2005)
J. Cell Biol.
, vol.169
, pp. 841-846
-
-
Skibbens, R.V.1
|