-
1
-
-
0018089153
-
Homology between human and simian repeated DNA
-
Manuelidis L., Wu J.C. Homology between human and simian repeated DNA. Nature 1978, 276:92-94.
-
(1978)
Nature
, vol.276
, pp. 92-94
-
-
Manuelidis, L.1
Wu, J.C.2
-
2
-
-
0021874985
-
Chromosome-specific organization of human alpha satellite DNA
-
Willard H.F. Chromosome-specific organization of human alpha satellite DNA. Am. J. Hum. Genet. 1985, 37:524-532.
-
(1985)
Am. J. Hum. Genet.
, vol.37
, pp. 524-532
-
-
Willard, H.F.1
-
3
-
-
69849107380
-
The life and miracles of kinetochores
-
Santaguida S., Musacchio A. The life and miracles of kinetochores. EMBO J. 2009, 28:2511-2531.
-
(2009)
EMBO J.
, vol.28
, pp. 2511-2531
-
-
Santaguida, S.1
Musacchio, A.2
-
4
-
-
0022254326
-
Three related centromere proteins are absent from the inactive centromere of a stable isodicentric chromosome
-
Earnshaw W.C., Migeon B.R. Three related centromere proteins are absent from the inactive centromere of a stable isodicentric chromosome. Chromosoma 1985, 92:290-296.
-
(1985)
Chromosoma
, vol.92
, pp. 290-296
-
-
Earnshaw, W.C.1
Migeon, B.R.2
-
5
-
-
0028946805
-
A mutation in CSE4, an essential gene encoding a novel chromatin-associated protein in yeast, causes chromosome nondisjunction and cell cycle arrest at mitosis
-
Stoler S., Keith K.C., Curnick K.E., Fitzgerald-Hayes M. A mutation in CSE4, an essential gene encoding a novel chromatin-associated protein in yeast, causes chromosome nondisjunction and cell cycle arrest at mitosis. Genes Dev. 1995, 9:573-586.
-
(1995)
Genes Dev.
, vol.9
, pp. 573-586
-
-
Stoler, S.1
Keith, K.C.2
Curnick, K.E.3
Fitzgerald-Hayes, M.4
-
6
-
-
0342646931
-
Requirement of Mis6 centromere connector for localizing a CENP-A-like protein in fission yeast
-
Takahashi K., Chen E.S., Yanagida M. Requirement of Mis6 centromere connector for localizing a CENP-A-like protein in fission yeast. Science 2000, 288:2215-2219.
-
(2000)
Science
, vol.288
, pp. 2215-2219
-
-
Takahashi, K.1
Chen, E.S.2
Yanagida, M.3
-
7
-
-
0034681115
-
Heterochromatic deposition of centromeric histone H3-like proteins
-
Henikoff S., Ahmad K., Platero J.S., van Steensel B. Heterochromatic deposition of centromeric histone H3-like proteins. Proc. Natl. Acad. Sci. U. S. A. 2000, 97:716-721.
-
(2000)
Proc. Natl. Acad. Sci. U. S. A.
, vol.97
, pp. 716-721
-
-
Henikoff, S.1
Ahmad, K.2
Platero, J.S.3
van Steensel, B.4
-
8
-
-
0033533848
-
A histone-H3-like protein in C. elegans
-
Buchwitz B.J., Ahmad K., Moore L.L., Roth M.B., Henikoff S. A histone-H3-like protein in C. elegans. Nature 1999, 401:547-548.
-
(1999)
Nature
, vol.401
, pp. 547-548
-
-
Buchwitz, B.J.1
Ahmad, K.2
Moore, L.L.3
Roth, M.B.4
Henikoff, S.5
-
9
-
-
0036016437
-
Centromeric localization and adaptive evolution of an arabidopsis histone H3 variant
-
Talbert P.B., Masuelli R., Tyagi A.P., Comai L., Henikoff S. Centromeric localization and adaptive evolution of an arabidopsis histone H3 variant. Plant Cell 2002, 14:1053-1066.
-
(2002)
Plant Cell
, vol.14
, pp. 1053-1066
-
-
Talbert, P.B.1
Masuelli, R.2
Tyagi, A.P.3
Comai, L.4
Henikoff, S.5
-
10
-
-
0025763392
-
Purification of the centromere-specific protein CENP-A and demonstration that it is a distinctive histone
-
Palmer D.K., O'Day K., Trong H.L., Charbonneau H., Margolis R.L. Purification of the centromere-specific protein CENP-A and demonstration that it is a distinctive histone. Proc. Natl. Acad. Sci. U. S. A. 1991, 88:3734-3738.
-
(1991)
Proc. Natl. Acad. Sci. U. S. A.
, vol.88
, pp. 3734-3738
-
-
Palmer, D.K.1
O'Day, K.2
Trong, H.L.3
Charbonneau, H.4
Margolis, R.L.5
-
11
-
-
0033973359
-
Early disruption of centromeric chromatin organization in centromere protein A (Cenpa) null mice
-
Howman E.V., Fowler K.J., Newson A.J., Redward S., MacDonald A.C., Kalitsis P., Choo K.H. Early disruption of centromeric chromatin organization in centromere protein A (Cenpa) null mice. Proc. Natl. Acad. Sci. U. S. A. 2000, 97:1148-1153.
-
(2000)
Proc. Natl. Acad. Sci. U. S. A.
, vol.97
, pp. 1148-1153
-
-
Howman, E.V.1
Fowler, K.J.2
Newson, A.J.3
Redward, S.4
MacDonald, A.C.5
Kalitsis, P.6
Choo, K.H.7
-
12
-
-
0033811682
-
The N terminus of the centromere H3-like protein Cse4p performs an essential function distinct from that of the histone fold domain
-
Chen Y., Baker R.E., Keith K.C., Harris K., Stoler S., Fitzgerald-Hayes M. The N terminus of the centromere H3-like protein Cse4p performs an essential function distinct from that of the histone fold domain. Mol. Cell. Biol. 2000, 20:7037-7048.
-
(2000)
Mol. Cell. Biol.
, vol.20
, pp. 7037-7048
-
-
Chen, Y.1
Baker, R.E.2
Keith, K.C.3
Harris, K.4
Stoler, S.5
Fitzgerald-Hayes, M.6
-
13
-
-
0035844871
-
Functional analysis of kinetochore assembly in Caenorhabditis elegans
-
Oegema K., Desai A., Rybina S., Kirkham M., Hyman A.A. Functional analysis of kinetochore assembly in Caenorhabditis elegans. J. Cell Biol. 2001, 153:1209-1226.
-
(2001)
J. Cell Biol.
, vol.153
, pp. 1209-1226
-
-
Oegema, K.1
Desai, A.2
Rybina, S.3
Kirkham, M.4
Hyman, A.A.5
-
14
-
-
0036789919
-
The CENP-A homolog CaCse4p in the pathogenic yeast Candida albicans is a centromere protein essential for chromosome transmission
-
Sanyal K., Carbon J. The CENP-A homolog CaCse4p in the pathogenic yeast Candida albicans is a centromere protein essential for chromosome transmission. Proc. Natl. Acad. Sci. U. S. A. 2002, 99:12969-12974.
-
(2002)
Proc. Natl. Acad. Sci. U. S. A.
, vol.99
, pp. 12969-12974
-
-
Sanyal, K.1
Carbon, J.2
-
15
-
-
18144429859
-
CENP-A is required for accurate chromosome segregation and sustained kinetochore association of BubR1
-
Régnier V., Vagnarelli P., Fukagawa T., Zerjal T., Burns E., Trouche D., Earnshaw W., Brown W. CENP-A is required for accurate chromosome segregation and sustained kinetochore association of BubR1. Mol. Cell. Biol. 2005, 25:3967-3981.
-
(2005)
Mol. Cell. Biol.
, vol.25
, pp. 3967-3981
-
-
Régnier, V.1
Vagnarelli, P.2
Fukagawa, T.3
Zerjal, T.4
Burns, E.5
Trouche, D.6
Earnshaw, W.7
Brown, W.8
-
16
-
-
77950650906
-
CENP-A reduction induces a p53-dependent cellular senescence response to protect cells from executing defective mitoses
-
Maehara K., Takahashi K., Saitoh S. CENP-A reduction induces a p53-dependent cellular senescence response to protect cells from executing defective mitoses. Mol. Cell. Biol. 2010, 30:2090-2104.
-
(2010)
Mol. Cell. Biol.
, vol.30
, pp. 2090-2104
-
-
Maehara, K.1
Takahashi, K.2
Saitoh, S.3
-
17
-
-
80053564298
-
Knock down of CENH3 in Arabidopsis reduces mitotic divisions and causes sterility by disturbed meiotic chromosome segregation
-
Lermontova I., Koroleva O., Rutten T., Fuchs J., Schubert V., Moraes I., Koszegi D., Schubert I. Knock down of CENH3 in Arabidopsis reduces mitotic divisions and causes sterility by disturbed meiotic chromosome segregation. Plant J. 2011, 68:40-50.
-
(2011)
Plant J.
, vol.68
, pp. 40-50
-
-
Lermontova, I.1
Koroleva, O.2
Rutten, T.3
Fuchs, J.4
Schubert, V.5
Moraes, I.6
Koszegi, D.7
Schubert, I.8
-
18
-
-
0037459109
-
Centromeres and kinetochores: from epigenetics to mitotic checkpoint signaling
-
Cleveland D.W., Mao Y., Sullivan K.F. Centromeres and kinetochores: from epigenetics to mitotic checkpoint signaling. Cell 2003, 112:407-421.
-
(2003)
Cell
, vol.112
, pp. 407-421
-
-
Cleveland, D.W.1
Mao, Y.2
Sullivan, K.F.3
-
20
-
-
0035319804
-
To err (meiotically) is human: the genesis of human aneuploidy
-
Hassold T., Hunt P. To err (meiotically) is human: the genesis of human aneuploidy. Nat. Rev. Genet. 2001, 2:280-291.
-
(2001)
Nat. Rev. Genet.
, vol.2
, pp. 280-291
-
-
Hassold, T.1
Hunt, P.2
-
21
-
-
0025757235
-
Effects of excess centromeres and excess telomeres on chromosome loss rates
-
Runge K.W., Wellinger R.J., Zakian V.A. Effects of excess centromeres and excess telomeres on chromosome loss rates. Mol. Cell. Biol. 1991, 11:2919-2928.
-
(1991)
Mol. Cell. Biol.
, vol.11
, pp. 2919-2928
-
-
Runge, K.W.1
Wellinger, R.J.2
Zakian, V.A.3
-
22
-
-
0035839066
-
The centromere paradox: stable inheritance with rapidly evolving DNA
-
Henikoff S., Ahmad K., Malik H.S. The centromere paradox: stable inheritance with rapidly evolving DNA. Science 2001, 293:1098-1102.
-
(2001)
Science
, vol.293
, pp. 1098-1102
-
-
Henikoff, S.1
Ahmad, K.2
Malik, H.S.3
-
23
-
-
0020324991
-
Yeast centromere DNA is in a unique and highly ordered structure in chromosomes and small circular minichromosomes
-
Bloom K.S., Carbon J. Yeast centromere DNA is in a unique and highly ordered structure in chromosomes and small circular minichromosomes. Cell 1982, 29:305-317.
-
(1982)
Cell
, vol.29
, pp. 305-317
-
-
Bloom, K.S.1
Carbon, J.2
-
24
-
-
0020325948
-
Nucleotide sequence comparisons and functional analysis of yeast centromere DNAs
-
Fitzgerald-Hayes M., Clarke L., Carbon J. Nucleotide sequence comparisons and functional analysis of yeast centromere DNAs. Cell 1982, 29:235-244.
-
(1982)
Cell
, vol.29
, pp. 235-244
-
-
Fitzgerald-Hayes, M.1
Clarke, L.2
Carbon, J.3
-
25
-
-
0020341194
-
Centromeric DNA from chromosome VI in Saccharomyces cerevisiae strains
-
Panzeri L., Philippsen P. Centromeric DNA from chromosome VI in Saccharomyces cerevisiae strains. EMBO J. 1982, 1:1605-1611.
-
(1982)
EMBO J.
, vol.1
, pp. 1605-1611
-
-
Panzeri, L.1
Philippsen, P.2
-
27
-
-
0032483564
-
Cse4p is a component of the core centromere of Saccharomyces cerevisiae
-
Meluh P.B., Yang P., Glowczewski L., Koshland D., Smith M.M. Cse4p is a component of the core centromere of Saccharomyces cerevisiae. Cell 1998, 94:607-613.
-
(1998)
Cell
, vol.94
, pp. 607-613
-
-
Meluh, P.B.1
Yang, P.2
Glowczewski, L.3
Koshland, D.4
Smith, M.M.5
-
28
-
-
35548985820
-
Centromere identity is specified by a single centromeric nucleosome in budding yeast
-
Furuyama S., Biggins S. Centromere identity is specified by a single centromeric nucleosome in budding yeast. Proc. Natl. Acad. Sci. U. S. A. 2007, 104:14706-14711.
-
(2007)
Proc. Natl. Acad. Sci. U. S. A.
, vol.104
, pp. 14706-14711
-
-
Furuyama, S.1
Biggins, S.2
-
29
-
-
0018485938
-
Duplications in Caenorhabditis elegans
-
Herman R.K., Madl J.E., Kari C.K. Duplications in Caenorhabditis elegans. Genetics 1979, 92:419-435.
-
(1979)
Genetics
, vol.92
, pp. 419-435
-
-
Herman, R.K.1
Madl, J.E.2
Kari, C.K.3
-
30
-
-
0020451425
-
The kinetochores of Caenorhabditis elegans
-
Albertson D.G., Thomson J.N. The kinetochores of Caenorhabditis elegans. Chromosoma 1982, 86:409-428.
-
(1982)
Chromosoma
, vol.86
, pp. 409-428
-
-
Albertson, D.G.1
Thomson, J.N.2
-
31
-
-
4444223267
-
"Holo"er than thou: chromosome segregation and kinetochore function in C. elegans
-
Maddox P.S., Oegema K., Desai A., Cheeseman I.M. "Holo"er than thou: chromosome segregation and kinetochore function in C. elegans. Chromosome Res. 2004, 12:641-653.
-
(2004)
Chromosome Res.
, vol.12
, pp. 641-653
-
-
Maddox, P.S.1
Oegema, K.2
Desai, A.3
Cheeseman, I.M.4
-
32
-
-
0028104174
-
Human CENP-A contains a histone H3 related histone fold domain that is required for targeting to the centromere
-
Sullivan K.F., Hechenberger M., Masri K. Human CENP-A contains a histone H3 related histone fold domain that is required for targeting to the centromere. J. Cell Biol. 1994, 127:581-592.
-
(1994)
J. Cell Biol.
, vol.127
, pp. 581-592
-
-
Sullivan, K.F.1
Hechenberger, M.2
Masri, K.3
-
33
-
-
3242884785
-
Structural determinants for generating centromeric chromatin
-
Black B.E., Foltz D.R., Chakravarthy S., Luger K., Woods V.L., Cleveland D.W. Structural determinants for generating centromeric chromatin. Nature 2004, 430:578-582.
-
(2004)
Nature
, vol.430
, pp. 578-582
-
-
Black, B.E.1
Foltz, D.R.2
Chakravarthy, S.3
Luger, K.4
Woods, V.L.5
Cleveland, D.W.6
-
34
-
-
33846199534
-
Centromere identity maintained by nucleosomes assembled with histone H3 containing the CENP-A targeting domain
-
Black B.E., Jansen L.E.T., Maddox P.S., Foltz D.R., Desai A.B., Shah J.V., Cleveland D.W. Centromere identity maintained by nucleosomes assembled with histone H3 containing the CENP-A targeting domain. Mol. Cell 2007, 25:309-322.
-
(2007)
Mol. Cell
, vol.25
, pp. 309-322
-
-
Black, B.E.1
Jansen, L.E.T.2
Maddox, P.S.3
Foltz, D.R.4
Desai, A.B.5
Shah, J.V.6
Cleveland, D.W.7
-
35
-
-
33947279176
-
An epigenetic mark generated by the incorporation of CENP-A into centromeric nucleosomes
-
Black B.E., Brock M.A., Bédard S., Woods V.L., Cleveland D.W. An epigenetic mark generated by the incorporation of CENP-A into centromeric nucleosomes. Proc. Natl. Acad. Sci. U. S. A. 2007, 104:5008-5013.
-
(2007)
Proc. Natl. Acad. Sci. U. S. A.
, vol.104
, pp. 5008-5013
-
-
Black, B.E.1
Brock, M.A.2
Bédard, S.3
Woods, V.L.4
Cleveland, D.W.5
-
36
-
-
77956897642
-
The structure of (CENP-A-H4)(2) reveals physical features that mark centromeres
-
Sekulic N., Bassett E.A., Rogers D.J., Black B.E. The structure of (CENP-A-H4)(2) reveals physical features that mark centromeres. Nature 2010, 467:347-351.
-
(2010)
Nature
, vol.467
, pp. 347-351
-
-
Sekulic, N.1
Bassett, E.A.2
Rogers, D.J.3
Black, B.E.4
-
37
-
-
78149424194
-
An E3 ubiquitin ligase prevents ectopic localization of the centromeric histone H3 variant via the centromere targeting domain
-
Ranjitkar P., Press M.O., Yi X., Baker R., MacCoss M.J., Biggins S. An E3 ubiquitin ligase prevents ectopic localization of the centromeric histone H3 variant via the centromere targeting domain. Mol. Cell 2010, 40:455-464.
-
(2010)
Mol. Cell
, vol.40
, pp. 455-464
-
-
Ranjitkar, P.1
Press, M.O.2
Yi, X.3
Baker, R.4
MacCoss, M.J.5
Biggins, S.6
-
38
-
-
80052849224
-
In vitro centromere and kinetochore assembly on defined chromatin templates
-
Guse A., Carroll C.W., Moree B., Fuller C.J., Straight A.F. In vitro centromere and kinetochore assembly on defined chromatin templates. Nature 2011, 477:354-358.
-
(2011)
Nature
, vol.477
, pp. 354-358
-
-
Guse, A.1
Carroll, C.W.2
Moree, B.3
Fuller, C.J.4
Straight, A.F.5
-
39
-
-
0031049028
-
Assembly of CENP-A into centromeric chromatin requires a cooperative array of nucleosomal DNA contact sites
-
Shelby R.D., Vafa O., Sullivan K.F. Assembly of CENP-A into centromeric chromatin requires a cooperative array of nucleosomal DNA contact sites. J. Cell Biol. 1997, 136:501-513.
-
(1997)
J. Cell Biol.
, vol.136
, pp. 501-513
-
-
Shelby, R.D.1
Vafa, O.2
Sullivan, K.F.3
-
40
-
-
33745004786
-
The human CENP-A centromeric nucleosome-associated complex
-
Foltz D.R., Jansen L.E.T., Black B.E., Bailey A.O., Yates J.R., Cleveland D.W. The human CENP-A centromeric nucleosome-associated complex. Nat. Cell Biol. 2006, 8:458-469.
-
(2006)
Nat. Cell Biol.
, vol.8
, pp. 458-469
-
-
Foltz, D.R.1
Jansen, L.E.T.2
Black, B.E.3
Bailey, A.O.4
Yates, J.R.5
Cleveland, D.W.6
-
41
-
-
70349168454
-
Cse4 is part of an octameric nucleosome in budding yeast
-
Camahort R., Shivaraju M., Mattingly M., Li B., Nakanishi S., Zhu D., Shilatifard A., Workman J.L., Gerton J.L. Cse4 is part of an octameric nucleosome in budding yeast. Mol. Cell 2009, 35:794-805.
-
(2009)
Mol. Cell
, vol.35
, pp. 794-805
-
-
Camahort, R.1
Shivaraju, M.2
Mattingly, M.3
Li, B.4
Nakanishi, S.5
Zhu, D.6
Shilatifard, A.7
Workman, J.L.8
Gerton, J.L.9
-
42
-
-
59649107021
-
Fission yeast Scm3 mediates stable assembly of Cnp1/CENP-A into centromeric chromatin
-
Williams J.S., Hayashi T., Yanagida M., Russell P. Fission yeast Scm3 mediates stable assembly of Cnp1/CENP-A into centromeric chromatin. Mol. Cell 2009, 33:287-298.
-
(2009)
Mol. Cell
, vol.33
, pp. 287-298
-
-
Williams, J.S.1
Hayashi, T.2
Yanagida, M.3
Russell, P.4
-
43
-
-
34548267126
-
Tetrameric structure of centromeric nucleosomes in interphase Drosophila cells
-
Dalal Y., Wang H., Lindsay S., Henikoff S. Tetrameric structure of centromeric nucleosomes in interphase Drosophila cells. PLoS Biol. 2007, 5:e218.
-
(2007)
PLoS Biol.
, vol.5
-
-
Dalal, Y.1
Wang, H.2
Lindsay, S.3
Henikoff, S.4
-
44
-
-
67649664594
-
Centromeric nucleosomes induce positive DNA supercoils
-
Furuyama T., Henikoff S. Centromeric nucleosomes induce positive DNA supercoils. Cell 2009, 138:104-113.
-
(2009)
Cell
, vol.138
, pp. 104-113
-
-
Furuyama, T.1
Henikoff, S.2
-
45
-
-
72549116886
-
Right-handed nucleosome: myth or reality?
-
Lavelle C., Recouvreux P., Wong H., Bancaud A., Viovy J.-L., Prunell A., Victor J.-M. Right-handed nucleosome: myth or reality?. Cell 2009, 139:1216-1217.
-
(2009)
Cell
, vol.139
, pp. 1216-1217
-
-
Lavelle, C.1
Recouvreux, P.2
Wong, H.3
Bancaud, A.4
Viovy, J.-L.5
Prunell, A.6
Victor, J.-M.7
-
46
-
-
34250173486
-
Nonhistone Scm3 and histones CenH3-H4 assemble the core of centromere-specific nucleosomes
-
Mizuguchi G., Xiao H., Wisniewski J., Smith M.M., Wu C. Nonhistone Scm3 and histones CenH3-H4 assemble the core of centromere-specific nucleosomes. Cell 2007, 129:1153-1164.
-
(2007)
Cell
, vol.129
, pp. 1153-1164
-
-
Mizuguchi, G.1
Xiao, H.2
Wisniewski, J.3
Smith, M.M.4
Wu, C.5
-
47
-
-
79960897478
-
Nonhistone Scm3 binds to AT-rich DNA to organize atypical centromeric nucleosome of budding yeast
-
Xiao H., Mizuguchi G., Wisniewski J., Huang Y., Wei D., Wu C. Nonhistone Scm3 binds to AT-rich DNA to organize atypical centromeric nucleosome of budding yeast. Mol. Cell 2011, 43:369-380.
-
(2011)
Mol. Cell
, vol.43
, pp. 369-380
-
-
Xiao, H.1
Mizuguchi, G.2
Wisniewski, J.3
Huang, Y.4
Wei, D.5
Wu, C.6
-
48
-
-
79951709224
-
Epigenetic centromere propagation and the nature of CENP-A nucleosomes
-
Black B.E., Cleveland D.W. Epigenetic centromere propagation and the nature of CENP-A nucleosomes. Cell 2011, 144:471-479.
-
(2011)
Cell
, vol.144
, pp. 471-479
-
-
Black, B.E.1
Cleveland, D.W.2
-
49
-
-
80051685994
-
Crystal structure of the human centromeric nucleosome containing CENP-A
-
Tachiwana H., Kagawa W., Shiga T., Osakabe A., Miya Y., Saito K., Hayashi-Takana Y., Oda T., Sato M., Park S.Y., Kimura H., Kurumizaka H. Crystal structure of the human centromeric nucleosome containing CENP-A. Nature 2011, 476:232-235.
-
(2011)
Nature
, vol.476
, pp. 232-235
-
-
Tachiwana, H.1
Kagawa, W.2
Shiga, T.3
Osakabe, A.4
Miya, Y.5
Saito, K.6
Hayashi-Takana, Y.7
Oda, T.8
Sato, M.9
Park, S.Y.10
Kimura, H.11
Kurumizaka, H.12
-
50
-
-
34250168342
-
CENP-A-containing nucleosomes: easier disassembly versus exclusive centromeric localization
-
Conde e Silva N., Black B.E., Sivolob A., Filipski J., Cleveland D.W., Prunell A. CENP-A-containing nucleosomes: easier disassembly versus exclusive centromeric localization. J. Mol. Biol. 2007, 370:555-573.
-
(2007)
J. Mol. Biol.
, vol.370
, pp. 555-573
-
-
Conde e Silva, N.1
Black, B.E.2
Sivolob, A.3
Filipski, J.4
Cleveland, D.W.5
Prunell, A.6
-
51
-
-
80053653297
-
Replacement of histone H3 with CENP-A directs global nucleosome array condensation and loosening of nucleosome superhelical termini
-
Panchenko T., Sorensen T.C., Woodcock C.L., Kan Z.-Y., Wood S., Resch M.G., Luger K., Englander S.W., Hansen J.C., Black B.E. Replacement of histone H3 with CENP-A directs global nucleosome array condensation and loosening of nucleosome superhelical termini. Proc. Natl. Acad. Sci. U. S. A. 2011, 108:16588-16593.
-
(2011)
Proc. Natl. Acad. Sci. U. S. A.
, vol.108
, pp. 16588-16593
-
-
Panchenko, T.1
Sorensen, T.C.2
Woodcock, C.L.3
Kan, Z.-Y.4
Wood, S.5
Resch, M.G.6
Luger, K.7
Englander, S.W.8
Hansen, J.C.9
Black, B.E.10
-
52
-
-
0036200147
-
Conserved organization of centromeric chromatin in flies and humans
-
Blower M.D., Sullivan B.A., Karpen G.H. Conserved organization of centromeric chromatin in flies and humans. Dev. Cell 2002, 2:319-330.
-
(2002)
Dev. Cell
, vol.2
, pp. 319-330
-
-
Blower, M.D.1
Sullivan, B.A.2
Karpen, G.H.3
-
53
-
-
33847139450
-
Rice as a model for centromere and heterochromatin research
-
Yan H., Jiang J. Rice as a model for centromere and heterochromatin research. Chromosome Res. 2007, 15:77-84.
-
(2007)
Chromosome Res.
, vol.15
, pp. 77-84
-
-
Yan, H.1
Jiang, J.2
-
54
-
-
0025872050
-
The centromere-kinetochore complex: a repeat subunit model
-
Zinkowski R.P., Meyne J., Brinkley B.R. The centromere-kinetochore complex: a repeat subunit model. J. Cell Biol. 1991, 113:1091-1110.
-
(1991)
J. Cell Biol.
, vol.113
, pp. 1091-1110
-
-
Zinkowski, R.P.1
Meyne, J.2
Brinkley, B.R.3
-
55
-
-
77953801741
-
A super-resolution map of the vertebrate kinetochore
-
Ribeiro S.A., Vagnarelli P., Dong Y., Hori T., McEwen B.F., Fukagawa T., Flors C., Earnshaw W.C. A super-resolution map of the vertebrate kinetochore. Proc. Natl. Acad. Sci. U. S. A. 2010, 107:10484-10489.
-
(2010)
Proc. Natl. Acad. Sci. U. S. A.
, vol.107
, pp. 10484-10489
-
-
Ribeiro, S.A.1
Vagnarelli, P.2
Dong, Y.3
Hori, T.4
McEwen, B.F.5
Fukagawa, T.6
Flors, C.7
Earnshaw, W.C.8
-
56
-
-
0037083376
-
Capturing chromosome conformation
-
Dekker J., Rippe K., Dekker M., Kleckner N. Capturing chromosome conformation. Science 2002, 295:1306-1311.
-
(2002)
Science
, vol.295
, pp. 1306-1311
-
-
Dekker, J.1
Rippe, K.2
Dekker, M.3
Kleckner, N.4
-
57
-
-
0036923833
-
Looping and interaction between hypersensitive sites in the active β-globin locus
-
Tolhuis B., Palstra R.-J., Splinter E., Grosveld F., de Laat W. Looping and interaction between hypersensitive sites in the active β-globin locus. Mol. Cell 2002, 10:1453-1465.
-
(2002)
Mol. Cell
, vol.10
, pp. 1453-1465
-
-
Tolhuis, B.1
Palstra, R.-J.2
Splinter, E.3
Grosveld, F.4
de Laat, W.5
-
58
-
-
5444255213
-
The active spatial organization of the β-globin locus requires the transcription factor EKLF
-
Drissen R., Palstra R.-J., Gillemans N., Splinter E., Grosveld F., Philipsen S., de Laat W. The active spatial organization of the β-globin locus requires the transcription factor EKLF. Genes Dev. 2004, 18:2485-2490.
-
(2004)
Genes Dev.
, vol.18
, pp. 2485-2490
-
-
Drissen, R.1
Palstra, R.-J.2
Gillemans, N.3
Splinter, E.4
Grosveld, F.5
Philipsen, S.6
de Laat, W.7
-
59
-
-
33744970012
-
The CENP-H-I complex is required for the efficient incorporation of newly synthesized CENP-A into centromeres
-
Okada M., Cheeseman I.M., Hori T., Okawa K., McLeod I.X., Yates J.R., Desai A., Fukagawa T. The CENP-H-I complex is required for the efficient incorporation of newly synthesized CENP-A into centromeres. Nat. Cell Biol. 2006, 8:446-457.
-
(2006)
Nat. Cell Biol.
, vol.8
, pp. 446-457
-
-
Okada, M.1
Cheeseman, I.M.2
Hori, T.3
Okawa, K.4
McLeod, I.X.5
Yates, J.R.6
Desai, A.7
Fukagawa, T.8
-
61
-
-
77954396194
-
Dual recognition of CENP-A nucleosomes is required for centromere assembly
-
Carroll C.W., Milks K.J., Straight A.F. Dual recognition of CENP-A nucleosomes is required for centromere assembly. J. Cell Biol. 2010, 189:1143-1155.
-
(2010)
J. Cell Biol.
, vol.189
, pp. 1143-1155
-
-
Carroll, C.W.1
Milks, K.J.2
Straight, A.F.3
-
62
-
-
0036121561
-
CENP-A, -B, and -C chromatin complex that contains the I-type alpha-satellite array constitutes the prekinetochore in HeLa cells
-
Ando S., Yang H., Nozaki N., Okazaki T., Yoda K. CENP-A, -B, and -C chromatin complex that contains the I-type alpha-satellite array constitutes the prekinetochore in HeLa cells. Mol. Cell. Biol. 2002, 22:2229-2241.
-
(2002)
Mol. Cell. Biol.
, vol.22
, pp. 2229-2241
-
-
Ando, S.1
Yang, H.2
Nozaki, N.3
Okazaki, T.4
Yoda, K.5
-
63
-
-
57149129148
-
CCAN makes multiple contacts with centromeric DNA to provide distinct pathways to the outer kinetochore
-
Hori T., Amano M., Suzuki A., Backer C.B., Welburn J.P., Dong Y., McEwen B.F., Shang W.-H., Suzuki E., Okawa K., Cheeseman I.M., Fukagawa T. CCAN makes multiple contacts with centromeric DNA to provide distinct pathways to the outer kinetochore. Cell 2008, 135:1039-1052.
-
(2008)
Cell
, vol.135
, pp. 1039-1052
-
-
Hori, T.1
Amano, M.2
Suzuki, A.3
Backer, C.B.4
Welburn, J.P.5
Dong, Y.6
McEwen, B.F.7
Shang, W.-H.8
Suzuki, E.9
Okawa, K.10
Cheeseman, I.M.11
Fukagawa, T.12
-
64
-
-
1542330121
-
Proteomics analysis of the centromere complex from HeLa interphase cells: UV-damaged DNA binding protein 1 (DDB-1) is a component of the CEN-complex, while BMI-1 is transiently co-localized with the centromeric region in interphase
-
Obuse C., Yang H., Nozaki N., Goto S., Okazaki T., Yoda K. Proteomics analysis of the centromere complex from HeLa interphase cells: UV-damaged DNA binding protein 1 (DDB-1) is a component of the CEN-complex, while BMI-1 is transiently co-localized with the centromeric region in interphase. Genes Cells 2004, 9:105-120.
-
(2004)
Genes Cells
, vol.9
, pp. 105-120
-
-
Obuse, C.1
Yang, H.2
Nozaki, N.3
Goto, S.4
Okazaki, T.5
Yoda, K.6
-
65
-
-
79959783950
-
Premitotic assembly of human CENPs -T and -W switches centromeric chromatin to a mitotic state
-
Prendergast L., van Vuuren C., Kaczmarczyk A., Doering V., Hellwig D., Quinn N., Hoischen C., Diekmann S., Sullivan K.F. Premitotic assembly of human CENPs -T and -W switches centromeric chromatin to a mitotic state. PLoS Biol. 2011, 9:e1001082.
-
(2011)
PLoS Biol.
, vol.9
-
-
Prendergast, L.1
van Vuuren, C.2
Kaczmarczyk, A.3
Doering, V.4
Hellwig, D.5
Quinn, N.6
Hoischen, C.7
Diekmann, S.8
Sullivan, K.F.9
-
66
-
-
79955497376
-
Spindle microtubules generate tension-dependent changes in the distribution of inner kinetochore proteins
-
Suzuki A., Hori T., Nishino T., Usukura J., Miyagi A., Morikawa K., Fukugawa T. Spindle microtubules generate tension-dependent changes in the distribution of inner kinetochore proteins. J. Cell Biol. 2011, 193:125-140.
-
(2011)
J. Cell Biol.
, vol.193
, pp. 125-140
-
-
Suzuki, A.1
Hori, T.2
Nishino, T.3
Usukura, J.4
Miyagi, A.5
Morikawa, K.6
Fukugawa, T.7
-
67
-
-
79955539577
-
Induced ectopic kinetochore assembly bypasses the requirement for CENP-A nucleosomes
-
Gascoigne K.E., Takeuchi K., Suzuki A., Hori T., Fukagawa T., Cheeseman I.M. Induced ectopic kinetochore assembly bypasses the requirement for CENP-A nucleosomes. Cell 2011, 145:410-422.
-
(2011)
Cell
, vol.145
, pp. 410-422
-
-
Gascoigne, K.E.1
Takeuchi, K.2
Suzuki, A.3
Hori, T.4
Fukagawa, T.5
Cheeseman, I.M.6
-
68
-
-
67650065426
-
Centromere assembly requires the direct recognition of CENP-A nucleosomes by CENP-N
-
Carroll C.W., Silva M.C.C., Godek K.M., Jansen L.E.T., Straight A.F. Centromere assembly requires the direct recognition of CENP-A nucleosomes by CENP-N. Nat. Cell Biol. 2009, 11:896-902.
-
(2009)
Nat. Cell Biol.
, vol.11
, pp. 896-902
-
-
Carroll, C.W.1
Silva, M.C.C.2
Godek, K.M.3
Jansen, L.E.T.4
Straight, A.F.5
-
69
-
-
0142042826
-
Distinct centromere domain structures with separate functions demonstrated in live fission yeast cells
-
Appelgren H., Kniola B., Ekwall K. Distinct centromere domain structures with separate functions demonstrated in live fission yeast cells. J. Cell Sci. 2003, 116:4035-4042.
-
(2003)
J. Cell Sci.
, vol.116
, pp. 4035-4042
-
-
Appelgren, H.1
Kniola, B.2
Ekwall, K.3
-
70
-
-
69949150972
-
Fused sister kinetochores initiate the reductional division in meiosis I
-
Li X., Dawe R.K. Fused sister kinetochores initiate the reductional division in meiosis I. Nat. Cell Biol. 2009, 11:1103-1108.
-
(2009)
Nat. Cell Biol.
, vol.11
, pp. 1103-1108
-
-
Li, X.1
Dawe, R.K.2
-
71
-
-
80053338165
-
Organization of the smallest eukaryotic spindle
-
Gan L., Ladinsky M.S., Jensen G.J. Organization of the smallest eukaryotic spindle. Curr. Biol. 2011, 21:1578-1583.
-
(2011)
Curr. Biol.
, vol.21
, pp. 1578-1583
-
-
Gan, L.1
Ladinsky, M.S.2
Jensen, G.J.3
-
72
-
-
80755189014
-
Synaptonemal complex-dependent centromeric clustering and the initiation of synapsis in Drosophila oocytes
-
Takeo S., Lake C.M., Morais-de-Sá E., Sunkel C.E., Hawley R.S. Synaptonemal complex-dependent centromeric clustering and the initiation of synapsis in Drosophila oocytes. Curr. Biol. 2011, 21:1845-1851.
-
(2011)
Curr. Biol.
, vol.21
, pp. 1845-1851
-
-
Takeo, S.1
Lake, C.M.2
Morais-de-Sá, E.3
Sunkel, C.E.4
Hawley, R.S.5
-
73
-
-
41849114919
-
Inactivation of a human kinetochore by specific targeting of chromatin modifiers
-
Nakano M., Cardinale S., Noskov V.N., Gassmann R., Vagnarelli P., Kandels-Lewis S., Larionov V., Earnshaw W.C., Masumoto H. Inactivation of a human kinetochore by specific targeting of chromatin modifiers. Dev. Cell 2008, 14:507-522.
-
(2008)
Dev. Cell
, vol.14
, pp. 507-522
-
-
Nakano, M.1
Cardinale, S.2
Noskov, V.N.3
Gassmann, R.4
Vagnarelli, P.5
Kandels-Lewis, S.6
Larionov, V.7
Earnshaw, W.C.8
Masumoto, H.9
-
74
-
-
78751636707
-
Epigenetic engineering shows H3K4me2 is required for HJURP targeting and CENP-A assembly on a synthetic human kinetochore
-
Bergmann J.H., Rodríguez M.G., Martins N.M.C., Kimura H., Kelly D.A., Masumoto H., Larionov V., Jansen L.E.T., Earnshaw W.C. Epigenetic engineering shows H3K4me2 is required for HJURP targeting and CENP-A assembly on a synthetic human kinetochore. EMBO J. 2010, 30:328-340.
-
(2010)
EMBO J.
, vol.30
, pp. 328-340
-
-
Bergmann, J.H.1
Rodríguez, M.G.2
Martins, N.M.C.3
Kimura, H.4
Kelly, D.A.5
Masumoto, H.6
Larionov, V.7
Jansen, L.E.T.8
Earnshaw, W.C.9
-
75
-
-
77953417422
-
A paucity of heterchromatin at functional human neocentromeres
-
Alonso A., Hasson D., Cheung F., Warburton P.E. A paucity of heterchromatin at functional human neocentromeres. Epigenetics Chromatin 2010, 3:6.
-
(2010)
Epigenetics Chromatin
, vol.3
, pp. 6
-
-
Alonso, A.1
Hasson, D.2
Cheung, F.3
Warburton, P.E.4
-
76
-
-
0035084058
-
Differential regulation of CENP-A and histone H3 phosphorylation in G2/M
-
Zeitlin S.G., Barber C.M., Allis C.D., Sullivan K.F., Sullivan K. Differential regulation of CENP-A and histone H3 phosphorylation in G2/M. J. Cell Sci. 2001, 114:653-661.
-
(2001)
J. Cell Sci.
, vol.114
, pp. 653-661
-
-
Zeitlin, S.G.1
Barber, C.M.2
Allis, C.D.3
Sullivan, K.F.4
Sullivan, K.5
-
77
-
-
0035945340
-
CENP-A is phosphorylated by Aurora B kinase and plays an unexpected role in completion of cytokinesis
-
Zeitlin S.G., Shelby R.D., Sullivan K.F. CENP-A is phosphorylated by Aurora B kinase and plays an unexpected role in completion of cytokinesis. J. Cell Biol. 2001, 155:1147-1157.
-
(2001)
J. Cell Biol.
, vol.155
, pp. 1147-1157
-
-
Zeitlin, S.G.1
Shelby, R.D.2
Sullivan, K.F.3
-
78
-
-
78149449583
-
Psh1 is an E3 ubiquitin ligase that targets the centromeric histone variant Cse4
-
Hewawasam G., Shivaraju M., Mattingly M., Venkatesh S., Martin-Brown S., Florens L., Workman J.L., Gerton J.L. Psh1 is an E3 ubiquitin ligase that targets the centromeric histone variant Cse4. Mol. Cell 2010, 40:444-454.
-
(2010)
Mol. Cell
, vol.40
, pp. 444-454
-
-
Hewawasam, G.1
Shivaraju, M.2
Mattingly, M.3
Venkatesh, S.4
Martin-Brown, S.5
Florens, L.6
Workman, J.L.7
Gerton, J.L.8
-
79
-
-
80052800314
-
The F box protein partner of paired regulates stability of Drosophila centromeric Histone H3, CenH3(CID)
-
Moreno-Moreno O., Medina-Giró S., Torras-Llort M., Azorín F. The F box protein partner of paired regulates stability of Drosophila centromeric Histone H3, CenH3(CID). Curr. Biol. 2011, 21:1488-1493.
-
(2011)
Curr. Biol.
, vol.21
, pp. 1488-1493
-
-
Moreno-Moreno, O.1
Medina-Giró, S.2
Torras-Llort, M.3
Azorín, F.4
-
80
-
-
0034722340
-
Chromatin assembly at kinetochores is uncoupled from DNA replication
-
Shelby R.D., Monier K., Sullivan K.F. Chromatin assembly at kinetochores is uncoupled from DNA replication. J. Cell Biol. 2000, 151:1113-1118.
-
(2000)
J. Cell Biol.
, vol.151
, pp. 1113-1118
-
-
Shelby, R.D.1
Monier, K.2
Sullivan, K.F.3
-
81
-
-
0035921425
-
Centromere identity in Drosophila is not determined in vivo by replication timing
-
Sullivan B., Karpen G. Centromere identity in Drosophila is not determined in vivo by replication timing. J. Cell Biol. 2001, 154:683-690.
-
(2001)
J. Cell Biol.
, vol.154
, pp. 683-690
-
-
Sullivan, B.1
Karpen, G.2
-
82
-
-
33947274529
-
Propagation of centromeric chromatin requires exit from mitosis
-
Jansen L.E.T., Black B.E., Foltz D.R., Cleveland D.W. Propagation of centromeric chromatin requires exit from mitosis. J. Cell Biol. 2007, 176:795-805.
-
(2007)
J. Cell Biol.
, vol.176
, pp. 795-805
-
-
Jansen, L.E.T.1
Black, B.E.2
Foltz, D.R.3
Cleveland, D.W.4
-
83
-
-
41549127153
-
Dynamics of inner kinetochore assembly and maintenance in living cells
-
Hemmerich P., Weidtkamp-Peters S., Hoischen C., Schmiedeberg L., Erliandri I., Diekmann S. Dynamics of inner kinetochore assembly and maintenance in living cells. J. Cell Biol. 2008, 180:1101-1114.
-
(2008)
J. Cell Biol.
, vol.180
, pp. 1101-1114
-
-
Hemmerich, P.1
Weidtkamp-Peters, S.2
Hoischen, C.3
Schmiedeberg, L.4
Erliandri, I.5
Diekmann, S.6
-
84
-
-
33846638827
-
Incorporation of Drosophila CID/CENP-A and CENP-C into centromeres during early embryonic anaphase
-
Schuh M., Lehner C.F., Heidmann S. Incorporation of Drosophila CID/CENP-A and CENP-C into centromeres during early embryonic anaphase. Curr. Biol. 2007, 17:237-243.
-
(2007)
Curr. Biol.
, vol.17
, pp. 237-243
-
-
Schuh, M.1
Lehner, C.F.2
Heidmann, S.3
-
85
-
-
0018036390
-
Assembly of newly replicated chromatin
-
Worcel A., Han S., Wong M.L. Assembly of newly replicated chromatin. Cell 1978, 15:969-977.
-
(1978)
Cell
, vol.15
, pp. 969-977
-
-
Worcel, A.1
Han, S.2
Wong, M.L.3
-
86
-
-
0020358561
-
Patterns of histone variant synthesis can distinguish G0 from G1 cells
-
Wu R.S., Tsai S., Bonner W.M. Patterns of histone variant synthesis can distinguish G0 from G1 cells. Cell 1982, 31:367-374.
-
(1982)
Cell
, vol.31
, pp. 367-374
-
-
Wu, R.S.1
Tsai, S.2
Bonner, W.M.3
-
87
-
-
0022196769
-
Changes in the levels of three different classes of histone mRNA during murine erythroleukemia cell differentiation
-
Brown D.T., Wellman S.E., Sittman D.B. Changes in the levels of three different classes of histone mRNA during murine erythroleukemia cell differentiation. Mol. Cell. Biol. 1985, 5:2879-2886.
-
(1985)
Mol. Cell. Biol.
, vol.5
, pp. 2879-2886
-
-
Brown, D.T.1
Wellman, S.E.2
Sittman, D.B.3
-
88
-
-
0023118959
-
Modulation of histone H3 variant synthesis during the myoblastmyotube transition of chicken myogenesis
-
Wunsch A.M., Lough J. Modulation of histone H3 variant synthesis during the myoblastmyotube transition of chicken myogenesis. Dev. Biol. 1987, 119:94-99.
-
(1987)
Dev. Biol.
, vol.119
, pp. 94-99
-
-
Wunsch, A.M.1
Lough, J.2
-
89
-
-
0025863511
-
The regulation of histone synthesis in the cell cycle
-
Osley M.A. The regulation of histone synthesis in the cell cycle. Annu. Rev. Biochem. 1991, 60:827-861.
-
(1991)
Annu. Rev. Biochem.
, vol.60
, pp. 827-861
-
-
Osley, M.A.1
-
90
-
-
33644853355
-
Expression patterns and post-translational modifications associated with mammalian histone H3 variants
-
Hake S.B., Garcia B.A., Duncan E.M., Kauer M., Dellaire G., Shabanowitz J., Bazett-Jones D.P., Allis D.C., Hunt D.F. Expression patterns and post-translational modifications associated with mammalian histone H3 variants. J. Biol. Chem. 2006, 281:559-568.
-
(2006)
J. Biol. Chem.
, vol.281
, pp. 559-568
-
-
Hake, S.B.1
Garcia, B.A.2
Duncan, E.M.3
Kauer, M.4
Dellaire, G.5
Shabanowitz, J.6
Bazett-Jones, D.P.7
Allis, D.C.8
Hunt, D.F.9
-
91
-
-
0030272047
-
Nucleosome assembly by a complex of CAF-1 and acetylated histones H3/H4
-
Verreault A., Kaufman P.D., Kobayashi R., Stillman B. Nucleosome assembly by a complex of CAF-1 and acetylated histones H3/H4. Cell 1996, 87:95-104.
-
(1996)
Cell
, vol.87
, pp. 95-104
-
-
Verreault, A.1
Kaufman, P.D.2
Kobayashi, R.3
Stillman, B.4
-
92
-
-
0033518179
-
The RCAF complex mediates chromatin assembly during DNA replication and repair
-
Tyler J.K., Adams C.R., Chen S.R., Kobayashi R., Kamakaka R.T., Kadonaga J.T. The RCAF complex mediates chromatin assembly during DNA replication and repair. Nature 1999, 402:555-560.
-
(1999)
Nature
, vol.402
, pp. 555-560
-
-
Tyler, J.K.1
Adams, C.R.2
Chen, S.R.3
Kobayashi, R.4
Kamakaka, R.T.5
Kadonaga, J.T.6
-
93
-
-
0036250827
-
Human Asf1 and CAF-1 interact and synergize in a repair-coupled nucleosome assembly pathway
-
Mello J.A. Human Asf1 and CAF-1 interact and synergize in a repair-coupled nucleosome assembly pathway. EMBO Rep. 2002, 3:329-334.
-
(2002)
EMBO Rep.
, vol.3
, pp. 329-334
-
-
Mello, J.A.1
-
94
-
-
33847226680
-
Structure and function of the histone chaperone CIA/ASF1 complexed with histones H3 and H4
-
Natsume R., Eitoku M., Akai Y., Sano N., Horikoshi M., Senda T. Structure and function of the histone chaperone CIA/ASF1 complexed with histones H3 and H4. Nature 2007, 446:338-341.
-
(2007)
Nature
, vol.446
, pp. 338-341
-
-
Natsume, R.1
Eitoku, M.2
Akai, Y.3
Sano, N.4
Horikoshi, M.5
Senda, T.6
-
95
-
-
0033582544
-
Replication-dependent marking of DNA by PCNA facilitates CAF-1-coupled inheritance of chromatin
-
Shibahara K., Stillman B. Replication-dependent marking of DNA by PCNA facilitates CAF-1-coupled inheritance of chromatin. Cell 1999, 96:575-585.
-
(1999)
Cell
, vol.96
, pp. 575-585
-
-
Shibahara, K.1
Stillman, B.2
-
96
-
-
0027052136
-
The sliding clamp of DNA polymerase III holoenzyme encircles DNA
-
O'Donnell M., Kuriyan J., Kong X.P., Stukenberg P.T., Onrust R. The sliding clamp of DNA polymerase III holoenzyme encircles DNA. Mol. Biol. Cell 1992, 3:953-957.
-
(1992)
Mol. Biol. Cell
, vol.3
, pp. 953-957
-
-
O'Donnell, M.1
Kuriyan, J.2
Kong, X.P.3
Stukenberg, P.T.4
Onrust, R.5
-
97
-
-
0036299092
-
The histone variant H3.3 marks active chromatin by replication-independent nucleosome assembly
-
Ahmad K., Henikoff S. The histone variant H3.3 marks active chromatin by replication-independent nucleosome assembly. Mol. Cell 2002, 9:1191-1200.
-
(2002)
Mol. Cell
, vol.9
, pp. 1191-1200
-
-
Ahmad, K.1
Henikoff, S.2
-
98
-
-
0742304304
-
Histone H3.1 and H3.3 complexes mediate nucleosome assembly pathways dependent or independent of DNA synthesis
-
Tagami H., Ray-Gallet D., Almouzni G., Nakatani Y. Histone H3.1 and H3.3 complexes mediate nucleosome assembly pathways dependent or independent of DNA synthesis. Cell 2004, 116:51-61.
-
(2004)
Cell
, vol.116
, pp. 51-61
-
-
Tagami, H.1
Ray-Gallet, D.2
Almouzni, G.3
Nakatani, Y.4
-
99
-
-
77649099092
-
Distinct factors control histone variant H3.3 localization at specific genomic regions
-
Goldberg A.D., Banaszynski L.A., Noh K.-M., Lewis P.W., Elsaesser S.J., Stadler S., Dewell S., Law M., Guo X., Li X., Wen D., Chapgier A., DeKelver R.C., Miller J.C., Lee Y.L., Boydston E.A., Holmes M.C., Gregory P.D., Greally J.M., Rafii S., Yang C., Scambler P.J., Garrick D., Gibbons R.J., Higgs D.R., Cristea I.M., Urnov F.D., Zheng D., Allis C.D. Distinct factors control histone variant H3.3 localization at specific genomic regions. Cell 2010, 140:678-691.
-
(2010)
Cell
, vol.140
, pp. 678-691
-
-
Goldberg, A.D.1
Banaszynski, L.A.2
Noh, K.-M.3
Lewis, P.W.4
Elsaesser, S.J.5
Stadler, S.6
Dewell, S.7
Law, M.8
Guo, X.9
Li, X.10
Wen, D.11
Chapgier, A.12
DeKelver, R.C.13
Miller, J.C.14
Lee, Y.L.15
Boydston, E.A.16
Holmes, M.C.17
Gregory, P.D.18
Greally, J.M.19
Rafii, S.20
Yang, C.21
Scambler, P.J.22
Garrick, D.23
Gibbons, R.J.24
Higgs, D.R.25
Cristea, I.M.26
Urnov, F.D.27
Zheng, D.28
Allis, C.D.29
more..
-
100
-
-
77953955724
-
The death-associated protein DAXX is a novel histone chaperone involved in the replication-independent deposition of H3.3
-
Drané P., Ouararhni K., Depaux A., Shuaib M., Hamiche A. The death-associated protein DAXX is a novel histone chaperone involved in the replication-independent deposition of H3.3. Genes Dev. 2010, 24:1253-1265.
-
(2010)
Genes Dev.
, vol.24
, pp. 1253-1265
-
-
Drané, P.1
Ouararhni, K.2
Depaux, A.3
Shuaib, M.4
Hamiche, A.5
-
101
-
-
77956282773
-
Daxx is an H3.3-specific histone chaperone and cooperates with ATRX in replication-independent chromatin assembly at telomeres
-
Lewis P.W., Elsaesser S.J., Noh K.-M., Stadler S.C., Allis C.D. Daxx is an H3.3-specific histone chaperone and cooperates with ATRX in replication-independent chromatin assembly at telomeres. Proc. Natl. Acad. Sci. U. S. A. 2010, 107:14075-14080.
-
(2010)
Proc. Natl. Acad. Sci. U. S. A.
, vol.107
, pp. 14075-14080
-
-
Lewis, P.W.1
Elsaesser, S.J.2
Noh, K.-M.3
Stadler, S.C.4
Allis, C.D.5
-
102
-
-
4544275776
-
Mis16 and Mis18 are required for CENP-A loading and histone deacetylation at centromeres
-
Hayashi T., Fujita Y., Iwasaki O., Adachi Y., Takahashi K., Yanagida M. Mis16 and Mis18 are required for CENP-A loading and histone deacetylation at centromeres. Cell 2004, 118:715-729.
-
(2004)
Cell
, vol.118
, pp. 715-729
-
-
Hayashi, T.1
Fujita, Y.2
Iwasaki, O.3
Adachi, Y.4
Takahashi, K.5
Yanagida, M.6
-
103
-
-
33845744494
-
Priming of centromere for CENP-A recruitment by human hMis18alpha, hMis18beta, and M18BP1
-
Fujita Y., Hayashi T., Kiyomitsu T., Toyoda Y., Kokubu A., Obuse C., Yanagida M. Priming of centromere for CENP-A recruitment by human hMis18alpha, hMis18beta, and M18BP1. Dev. Cell 2007, 12:17-30.
-
(2007)
Dev. Cell
, vol.12
, pp. 17-30
-
-
Fujita, Y.1
Hayashi, T.2
Kiyomitsu, T.3
Toyoda, Y.4
Kokubu, A.5
Obuse, C.6
Yanagida, M.7
-
104
-
-
33947239252
-
Functional genomics identifies a Myb domain-containing protein family required for assembly of CENP-A chromatin
-
Maddox P.S., Hyndman F., Monen J., Oegema K., Desai A. Functional genomics identifies a Myb domain-containing protein family required for assembly of CENP-A chromatin. J. Cell Biol. 2007, 176:757-763.
-
(2007)
J. Cell Biol.
, vol.176
, pp. 757-763
-
-
Maddox, P.S.1
Hyndman, F.2
Monen, J.3
Oegema, K.4
Desai, A.5
-
105
-
-
0032518442
-
Nucleosomal DNA regulates the core-histone-binding subunit of the human Hat1 acetyltransferase
-
Verreault A., Kaufman P.D., Kobayashi R., Stillman B. Nucleosomal DNA regulates the core-histone-binding subunit of the human Hat1 acetyltransferase. Curr. Biol. 1998, 8:96-108.
-
(1998)
Curr. Biol.
, vol.8
, pp. 96-108
-
-
Verreault, A.1
Kaufman, P.D.2
Kobayashi, R.3
Stillman, B.4
-
106
-
-
44149123117
-
Structural basis of histone H4 recognition by p55
-
Song J.-J., Garlick J.D., Kingston R.E. Structural basis of histone H4 recognition by p55. Genes Dev. 2008, 22:1313-1318.
-
(2008)
Genes Dev.
, vol.22
, pp. 1313-1318
-
-
Song, J.-J.1
Garlick, J.D.2
Kingston, R.E.3
-
107
-
-
46049093174
-
Structural basis for the recognition of histone H4 by the histone-chaperone RbAp46
-
Murzina N.V., Pei X.-Y., Zhang W., Sparkes M., Vicente-Garcia J., Pratap J.V., McLaughlin S.H., Ben-Shahar T.R., Verreault A., Luisi B.F., Laue E.D. Structural basis for the recognition of histone H4 by the histone-chaperone RbAp46. Structure 2008, 16:1077-1085.
-
(2008)
Structure
, vol.16
, pp. 1077-1085
-
-
Murzina, N.V.1
Pei, X.-Y.2
Zhang, W.3
Sparkes, M.4
Vicente-Garcia, J.5
Pratap, J.V.6
McLaughlin, S.H.7
Ben-Shahar, T.R.8
Verreault, A.9
Luisi, B.F.10
Laue, E.D.11
-
108
-
-
0026079369
-
Stepwise assembly of chromatin during DNA replication in vitro
-
Smith S., Stillman B. Stepwise assembly of chromatin during DNA replication in vitro. EMBO J. 1991, 10:971-980.
-
(1991)
EMBO J.
, vol.10
, pp. 971-980
-
-
Smith, S.1
Stillman, B.2
-
110
-
-
65249129208
-
HJURP is a cell-cycle-dependent maintenance and deposition factor of CENP-A at centromeres
-
Dunleavy E.M., Roche D., Tagami H., Lacoste N., Ray-Gallet D., Nakamura Y., Almouzni-Pettinotti G. HJURP is a cell-cycle-dependent maintenance and deposition factor of CENP-A at centromeres. Cell 2009, 137:485-497.
-
(2009)
Cell
, vol.137
, pp. 485-497
-
-
Dunleavy, E.M.1
Roche, D.2
Tagami, H.3
Lacoste, N.4
Ray-Gallet, D.5
Nakamura, Y.6
Almouzni-Pettinotti, G.7
-
111
-
-
80053934686
-
CENP-C recruits M18BP1 to centromeres to promote CENP-A chromatin assembly
-
Moree B., Meyer C.B., Fuller C.J., Straight A.F. CENP-C recruits M18BP1 to centromeres to promote CENP-A chromatin assembly. J. Cell Biol. 2011, 194:855-871.
-
(2011)
J. Cell Biol.
, vol.194
, pp. 855-871
-
-
Moree, B.1
Meyer, C.B.2
Fuller, C.J.3
Straight, A.F.4
-
112
-
-
58149305928
-
Genomewide analysis reveals a cell cycle-dependent mechanism controlling centromere propagation
-
Erhardt S., Mellone B.G., Betts C.M., Zhang W., Karpen G.H., Straight A.F. Genomewide analysis reveals a cell cycle-dependent mechanism controlling centromere propagation. J. Cell Biol. 2008, 183:805-818.
-
(2008)
J. Cell Biol.
, vol.183
, pp. 805-818
-
-
Erhardt, S.1
Mellone, B.G.2
Betts, C.M.3
Zhang, W.4
Karpen, G.H.5
Straight, A.F.6
-
113
-
-
79958006512
-
Assembly of Drosophila centromeric chromatin proteins during mitosis
-
Mellone B.G., Grive K.J., Shteyn V., Bowers S.R., Oderberg I., Karpen G.H. Assembly of Drosophila centromeric chromatin proteins during mitosis. PLoS Genet. 2011, 7:e1002068.
-
(2011)
PLoS Genet.
, vol.7
-
-
Mellone, B.G.1
Grive, K.J.2
Shteyn, V.3
Bowers, S.R.4
Oderberg, I.5
Karpen, G.H.6
-
114
-
-
33745829795
-
Molecular chaperones: assisting assembly in addition to folding
-
Ellis R.J. Molecular chaperones: assisting assembly in addition to folding. Trends Biochem. Sci. 2006, 31:395-401.
-
(2006)
Trends Biochem. Sci.
, vol.31
, pp. 395-401
-
-
Ellis, R.J.1
-
115
-
-
0018221572
-
Nucleosomes are assembled by an acidic protein which binds histones and transfers them to DNA
-
Laskey R.A., Honda B.M., Mills A.D., Finch J.T. Nucleosomes are assembled by an acidic protein which binds histones and transfers them to DNA. Nature 1978, 275:416-420.
-
(1978)
Nature
, vol.275
, pp. 416-420
-
-
Laskey, R.A.1
Honda, B.M.2
Mills, A.D.3
Finch, J.T.4
-
116
-
-
0024372060
-
Purification and characterization of CAF-I, a human cell factor required for chromatin assembly during DNA replication in vitro
-
Smith S., Stillman B. Purification and characterization of CAF-I, a human cell factor required for chromatin assembly during DNA replication in vitro. Cell 1989, 58:15-25.
-
(1989)
Cell
, vol.58
, pp. 15-25
-
-
Smith, S.1
Stillman, B.2
-
117
-
-
0032498273
-
FACT, a factor that facilitates transcript elongation through nucleosomes
-
Orphanides G., LeRoy G., Chang C.H., Luse D.S., Reinberg D. FACT, a factor that facilitates transcript elongation through nucleosomes. Cell 1998, 92:105-116.
-
(1998)
Cell
, vol.92
, pp. 105-116
-
-
Orphanides, G.1
LeRoy, G.2
Chang, C.H.3
Luse, D.S.4
Reinberg, D.5
-
118
-
-
38949202272
-
Histone chaperones: 30years from isolation to elucidation of the mechanisms of nucleosome assembly and disassembly
-
Eitoku M., Sato L., Senda T., Horikoshi M. Histone chaperones: 30years from isolation to elucidation of the mechanisms of nucleosome assembly and disassembly. Cell. Mol. Life Sci. 2007, 65:414-444.
-
(2007)
Cell. Mol. Life Sci.
, vol.65
, pp. 414-444
-
-
Eitoku, M.1
Sato, L.2
Senda, T.3
Horikoshi, M.4
-
119
-
-
65249115338
-
Centromere-specific assembly of CENP-A nucleosomes is mediated by HJURP
-
Foltz D.R., Jansen L.E.T., Bailey A.O., Yates J.R., Bassett E.A., Wood S., Black B.E., Cleveland D.W. Centromere-specific assembly of CENP-A nucleosomes is mediated by HJURP. Cell 2009, 137:472-484.
-
(2009)
Cell
, vol.137
, pp. 472-484
-
-
Foltz, D.R.1
Jansen, L.E.T.2
Bailey, A.O.3
Yates, J.R.4
Bassett, E.A.5
Wood, S.6
Black, B.E.7
Cleveland, D.W.8
-
120
-
-
69249216438
-
At the right place at the right time: novel CENP-A binding proteins shed light on centromere assembly
-
Silva M.C.C., Jansen L.E.T. At the right place at the right time: novel CENP-A binding proteins shed light on centromere assembly. Chromosoma 2009, 118:567-574.
-
(2009)
Chromosoma
, vol.118
, pp. 567-574
-
-
Silva, M.C.C.1
Jansen, L.E.T.2
-
121
-
-
79961113679
-
HJURP is a CENP-A chromatin assembly factor sufficient to form a functional de novo kinetochore
-
Barnhart M.C., Kuich P.H.J.L., Stellfox M.E., Ward J.A., Bassett E.A., Black B.E., Foltz D.R. HJURP is a CENP-A chromatin assembly factor sufficient to form a functional de novo kinetochore. J. Cell Biol. 2011, 194:229-243.
-
(2011)
J. Cell Biol.
, vol.194
, pp. 229-243
-
-
Barnhart, M.C.1
Kuich, P.H.J.L.2
Stellfox, M.E.3
Ward, J.A.4
Bassett, E.A.5
Black, B.E.6
Foltz, D.R.7
-
122
-
-
79951905050
-
Xenopus HJURP and condensin II are required for CENP-A assembly
-
Bernad R., Sánchez P., Rivera T., Rodríguez-Corsino M., Boyarchuk E., Vassias I., Ray-Gallet D., Arnaoutov A., Dasso M., Almouzni G., Losada A. Xenopus HJURP and condensin II are required for CENP-A assembly. J. Cell Biol. 2011, 192:569-582.
-
(2011)
J. Cell Biol.
, vol.192
, pp. 569-582
-
-
Bernad, R.1
Sánchez, P.2
Rivera, T.3
Rodríguez-Corsino, M.4
Boyarchuk, E.5
Vassias, I.6
Ray-Gallet, D.7
Arnaoutov, A.8
Dasso, M.9
Almouzni, G.10
Losada, A.11
-
123
-
-
34547112848
-
Scm3, an essential Saccharomyces cerevisiae centromere protein required for G2/M progression and Cse4 localization
-
Stoler S., Rogers K., Weitze S., Morey L., Fitzgerald-Hayes M., Baker R.E. Scm3, an essential Saccharomyces cerevisiae centromere protein required for G2/M progression and Cse4 localization. Proc. Natl. Acad. Sci. U. S. A. 2007, 104:10571-10576.
-
(2007)
Proc. Natl. Acad. Sci. U. S. A.
, vol.104
, pp. 10571-10576
-
-
Stoler, S.1
Rogers, K.2
Weitze, S.3
Morey, L.4
Fitzgerald-Hayes, M.5
Baker, R.E.6
-
124
-
-
34250316190
-
Scm3 is essential to recruit the histone H3 variant Cse4 to centromeres and to maintain a functional kinetochore
-
Camahort R., Li B., Florens L., Swanson S.K., Washburn M.P., Gerton J.L. Scm3 is essential to recruit the histone H3 variant Cse4 to centromeres and to maintain a functional kinetochore. Mol. Cell 2007, 26:853-865.
-
(2007)
Mol. Cell
, vol.26
, pp. 853-865
-
-
Camahort, R.1
Li, B.2
Florens, L.3
Swanson, S.K.4
Washburn, M.P.5
Gerton, J.L.6
-
125
-
-
67549104312
-
Common ancestry of the CENP-A chaperones Scm3 and HJURP
-
Sanchez-Pulido L., Pidoux A.L., Ponting C.P., Allshire R.C. Common ancestry of the CENP-A chaperones Scm3 and HJURP. Cell 2009, 137:1173-1174.
-
(2009)
Cell
, vol.137
, pp. 1173-1174
-
-
Sanchez-Pulido, L.1
Pidoux, A.L.2
Ponting, C.P.3
Allshire, R.C.4
-
126
-
-
76549131870
-
HJURP binds CENP-A via a highly conserved N-terminal domain and mediates its deposition at centromeres
-
Shuaib M., Ouararhni K., Dimitrov S., Hamiche A. HJURP binds CENP-A via a highly conserved N-terminal domain and mediates its deposition at centromeres. Proc. Natl. Acad. Sci. U. S. A. 2010, 107:1349-1354.
-
(2010)
Proc. Natl. Acad. Sci. U. S. A.
, vol.107
, pp. 1349-1354
-
-
Shuaib, M.1
Ouararhni, K.2
Dimitrov, S.3
Hamiche, A.4
-
127
-
-
59649099984
-
Fission yeast Scm3: a CENP-A receptor required for integrity of subkinetochore chromatin
-
Pidoux A.L., Choi E.S., Abbott J.K.R., Liu X., Kagansky A., Castillo A.G., Hamilton G.L., Richardson W., Rappsilber J., He X., Allshire R.C. Fission yeast Scm3: a CENP-A receptor required for integrity of subkinetochore chromatin. Mol. Cell 2009, 33:299-311.
-
(2009)
Mol. Cell
, vol.33
, pp. 299-311
-
-
Pidoux, A.L.1
Choi, E.S.2
Abbott, J.K.R.3
Liu, X.4
Kagansky, A.5
Castillo, A.G.6
Hamilton, G.L.7
Richardson, W.8
Rappsilber, J.9
He, X.10
Allshire, R.C.11
-
128
-
-
79953327692
-
Scm3 is a centromeric nucleosome assembly factor
-
Shivaraju M., Camahort R., Mattingly M., Gerton J.L. Scm3 is a centromeric nucleosome assembly factor. J. Biol. Chem. 2011, 286:12016-12023.
-
(2011)
J. Biol. Chem.
, vol.286
, pp. 12016-12023
-
-
Shivaraju, M.1
Camahort, R.2
Mattingly, M.3
Gerton, J.L.4
-
129
-
-
79956267847
-
Structure and Scm3-mediated assembly of budding yeast centromeric nucleosomes
-
Dechassa M.L., Wyns K., Li M., Hall M.A., Wang M.D., Luger K. Structure and Scm3-mediated assembly of budding yeast centromeric nucleosomes. Nat. Commun. 2011, 2:313.
-
(2011)
Nat. Commun.
, vol.2
, pp. 313
-
-
Dechassa, M.L.1
Wyns, K.2
Li, M.3
Hall, M.A.4
Wang, M.D.5
Luger, K.6
-
130
-
-
80053447525
-
The CENP-A chaperone Scm3 becomes enriched at kinetochores in anaphase independently of CENP-A incorporation
-
Luconi L., Araki Y., Erlemann S., Schiebel E. The CENP-A chaperone Scm3 becomes enriched at kinetochores in anaphase independently of CENP-A incorporation. Cell Cycle 2011, 10:3369-3378.
-
(2011)
Cell Cycle
, vol.10
, pp. 3369-3378
-
-
Luconi, L.1
Araki, Y.2
Erlemann, S.3
Schiebel, E.4
-
131
-
-
79954613013
-
Structural basis for recognition of centromere histone variant CenH3 by the chaperone Scm3
-
Zhou Z., Feng H., Zhou B.-R., Ghirlando R., Hu K., Zwolak A., Miller Jenkins L.M., Xiao H., Tjandra N., Wu C., Bai Y. Structural basis for recognition of centromere histone variant CenH3 by the chaperone Scm3. Nature 2011, 472:234-237.
-
(2011)
Nature
, vol.472
, pp. 234-237
-
-
Zhou, Z.1
Feng, H.2
Zhou, B.-R.3
Ghirlando, R.4
Hu, K.5
Zwolak, A.6
Miller Jenkins, L.M.7
Xiao, H.8
Tjandra, N.9
Wu, C.10
Bai, Y.11
-
132
-
-
79959331606
-
Recognition of the centromere-specific histone Cse4 by the chaperone Scm3
-
Cho U.-S., Harrison S.C. Recognition of the centromere-specific histone Cse4 by the chaperone Scm3. Proc. Natl. Acad. Sci. U. S. A. 2011, 108:9367-9371.
-
(2011)
Proc. Natl. Acad. Sci. U. S. A.
, vol.108
, pp. 9367-9371
-
-
Cho, U.-S.1
Harrison, S.C.2
-
133
-
-
79955678169
-
Structure of a CENP-A-histone H4 heterodimer in complex with chaperone HJURP
-
Hu H., Liu Y., Wang M., Fang J., Huang H., Yang N., Li Y., Wang J., Yao X., Shi Y., Li G., Xu R.-M. Structure of a CENP-A-histone H4 heterodimer in complex with chaperone HJURP. Genes Dev. 2011, 25:901-906.
-
(2011)
Genes Dev.
, vol.25
, pp. 901-906
-
-
Hu, H.1
Liu, Y.2
Wang, M.3
Fang, J.4
Huang, H.5
Yang, N.6
Li, Y.7
Wang, J.8
Yao, X.9
Shi, Y.10
Li, G.11
Xu, R.-M.12
-
134
-
-
84855956123
-
H3.3 is deposited at centromeres in S phase as a placeholder for newly assembled CENP-A in G(1) phase
-
Dunleavy E.M., Almouzni G., Karpen G.H. H3.3 is deposited at centromeres in S phase as a placeholder for newly assembled CENP-A in G(1) phase. Nucleus 2011, 2:146-157.
-
(2011)
Nucleus
, vol.2
, pp. 146-157
-
-
Dunleavy, E.M.1
Almouzni, G.2
Karpen, G.H.3
-
135
-
-
27144453690
-
ASF1 binds to a heterodimer of histones H3 and H4: a two-step mechanism for the assembly of the H3-H4 heterotetramer on DNA
-
English C.M., Maluf N.K., Tripet B., Churchill M.E.A., Tyler J.K. ASF1 binds to a heterodimer of histones H3 and H4: a two-step mechanism for the assembly of the H3-H4 heterotetramer on DNA. Biochemistry 2005, 44:13673-13682.
-
(2005)
Biochemistry
, vol.44
, pp. 13673-13682
-
-
English, C.M.1
Maluf, N.K.2
Tripet, B.3
Churchill, M.E.A.4
Tyler, J.K.5
-
136
-
-
33750477650
-
Structural basis for the histone chaperone activity of Asf1
-
English C.M., Adkins M.W., Carson J.J., Churchill M.E.A., Tyler J.K. Structural basis for the histone chaperone activity of Asf1. Cell 2006, 127:495-508.
-
(2006)
Cell
, vol.127
, pp. 495-508
-
-
English, C.M.1
Adkins, M.W.2
Carson, J.J.3
Churchill, M.E.A.4
Tyler, J.K.5
-
137
-
-
79952539053
-
ATP-dependent chromatin remodeling: genetics, genomics and mechanisms
-
Hargreaves D.C., Crabtree G.R. ATP-dependent chromatin remodeling: genetics, genomics and mechanisms. Cell Res. 2011, 21:396-420.
-
(2011)
Cell Res.
, vol.21
, pp. 396-420
-
-
Hargreaves, D.C.1
Crabtree, G.R.2
-
138
-
-
0032484098
-
Requirement of RSF and FACT for transcription of chromatin templates in vitro
-
LeRoy G., Orphanides G., Lane W.S., Reinberg D. Requirement of RSF and FACT for transcription of chromatin templates in vitro. Science 1998, 282:1900-1904.
-
(1998)
Science
, vol.282
, pp. 1900-1904
-
-
LeRoy, G.1
Orphanides, G.2
Lane, W.S.3
Reinberg, D.4
-
139
-
-
65649124957
-
Active establishment of centromeric CENP-A chromatin by RSF complex
-
Perpelescu M., Nozaki N., Obuse C., Yang H., Yoda K. Active establishment of centromeric CENP-A chromatin by RSF complex. J. Cell Biol. 2009, 185:397-407.
-
(2009)
J. Cell Biol.
, vol.185
, pp. 397-407
-
-
Perpelescu, M.1
Nozaki, N.2
Obuse, C.3
Yang, H.4
Yoda, K.5
-
140
-
-
78649835035
-
A small GTPase molecular switch regulates epigenetic centromere maintenance by stabilizing newly incorporated CENP-A
-
Lagana A., Dorn J.F., De Rop V., Ladouceur A.-M., Maddox A.S., Maddox P.S. A small GTPase molecular switch regulates epigenetic centromere maintenance by stabilizing newly incorporated CENP-A. Nat. Cell Biol. 2010, 12:1186-1193.
-
(2010)
Nat. Cell Biol.
, vol.12
, pp. 1186-1193
-
-
Lagana, A.1
Dorn, J.F.2
De Rop, V.3
Ladouceur, A.-M.4
Maddox, A.S.5
Maddox, P.S.6
-
141
-
-
79959803077
-
Patterns and mechanisms of ancestral histone protein inheritance in budding yeast
-
Radman-Livaja M., Verzijlbergen K.F., Weiner A., van Welsem T., Friedman N., Rando O.J., van Leeuwen F. Patterns and mechanisms of ancestral histone protein inheritance in budding yeast. PLoS Biol. 2011, 9:e1001075.
-
(2011)
PLoS Biol.
, vol.9
-
-
Radman-Livaja, M.1
Verzijlbergen, K.F.2
Weiner, A.3
van Welsem, T.4
Friedman, N.5
Rando, O.J.6
van Leeuwen, F.7
-
142
-
-
0032922431
-
Repetitive conundrums of centromere structure and function
-
Eichler E.E. Repetitive conundrums of centromere structure and function. Hum. Mol. Genet. 1999, 8:151-155.
-
(1999)
Hum. Mol. Genet.
, vol.8
, pp. 151-155
-
-
Eichler, E.E.1
-
143
-
-
37849021647
-
Heterochromatin and RNAi are required to establish CENP-A chromatin at centromeres
-
Folco H.D., Pidoux A.L., Urano T., Allshire R.C. Heterochromatin and RNAi are required to establish CENP-A chromatin at centromeres. Science 2008, 319:94-97.
-
(2008)
Science
, vol.319
, pp. 94-97
-
-
Folco, H.D.1
Pidoux, A.L.2
Urano, T.3
Allshire, R.C.4
-
144
-
-
37449015481
-
CENP-B controls centromere formation depending on the chromatin context
-
Okada T., Ohzeki J., Nakano M., Yoda K., Brinkley W.R., Larionov V., Masumoto H. CENP-B controls centromere formation depending on the chromatin context. Cell 2007, 131:1287-1300.
-
(2007)
Cell
, vol.131
, pp. 1287-1300
-
-
Okada, T.1
Ohzeki, J.2
Nakano, M.3
Yoda, K.4
Brinkley, W.R.5
Larionov, V.6
Masumoto, H.7
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