Differential kinetochore protein requirements for establishment versus propagation of centromere activity in Saccharomyces cerevisiae

被引:53
作者
Mythreye, K [1 ]
Bloom, KS [1 ]
机构
[1] Univ N Carolina, Dept Biol, Chapel Hill, NC 27599 USA
关键词
yeast; centromere; kinetochore; chromatin; epigenetic;
D O I
10.1083/jcb.200211116
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Dicentric chromosomes undergo a breakage-fusion-bridge cycle as a consequence of having two centromeres on the same chromatid attach to opposite spindle poles in mitosis. Suppression of dicentric chromosome breakage reflects loss of kinetochore function at the kinetochore-microtubule or the kinetochore-DNA interface. Using a conditionally functional dicentric chromosome in vivo, we demonstrate that kinetochore mutants exhibit quantitative differences in their degree of chromosome breakage. Mutations in ch14/mcm17/ctf17 segregate dicentric chromosomes through successive cell divisions without breakage, indicating that only one of the two centromeres is functional. Centromere DNA introduced into the cell is unable to promote kinetochore assembly in the absence of CHL4. In contrast, established centromeres retain their segregation capacity for greater than 25 generations after depletion of Chl4p. The persistent mitotic stability of established centromeres reveals the presence of an epigenetic component in kinetochore segregation. Furthermore, this study identifies Chl4p in the initiation and specification of a heritable chromatin state.
引用
收藏
页码:833 / 843
页数:11
相关论文
共 41 条
[1]   A TRANSMISSIBLE DICENTRIC CHROMOSOME IN DROSOPHILA-MELANOGASTER [J].
AULT, JG ;
LYTTLE, TW .
CHROMOSOMA, 1988, 97 (01) :71-79
[2]   YEAST CENTROMERE DNA IS IN A UNIQUE AND HIGHLY ORDERED STRUCTURE IN CHROMOSOMES AND SMALL CIRCULAR MINICHROMOSOMES [J].
BLOOM, KS ;
CARBON, J .
CELL, 1982, 29 (02) :305-317
[3]  
BROCK JAK, 1994, J CELL SCI, V107, P891
[4]   Mitotic spindle integrity and kinetochore function linked by the Duo1p/Dam1p complex [J].
Cheeseman, IM ;
Enquist-Newman, M ;
Müller-Reichert, T ;
Drubin, DG ;
Barnes, G .
JOURNAL OF CELL BIOLOGY, 2001, 152 (01) :197-212
[5]   IDENTIFICATION OF ESSENTIAL COMPONENTS OF THE SACCHAROMYCES-CEREVISIAE KINETOCHORE [J].
DOHENY, KF ;
SORGER, PK ;
HYMAN, AA ;
TUGENDREICH, S ;
SPENCER, F ;
HIETER, P .
CELL, 1993, 73 (04) :761-774
[6]   Transient inhibition of histone deacetylation alters the structural and functional imprint at fission yeast centromeres [J].
Ekwall, K ;
Olsson, T ;
Turner, BM ;
Cranston, G ;
Allshire, RC .
CELL, 1997, 91 (07) :1021-1032
[7]   Dad1p, third component of the Duo1p/Dam1p complex involved in kinetochore function and mitotic spindle integrity [J].
Enquist-Newman, M ;
Cheeseman, IM ;
Van Goor, D ;
Drubin, DG ;
Meluh, PB ;
Barnes, G .
MOLECULAR BIOLOGY OF THE CELL, 2001, 12 (09) :2601-2613
[8]   CHROMATIN DIGESTION WITH RESTRICTION ENDONUCLEASES REVEALS 150-160 BP OF PROTECTED DNA IN THE CENTROMERE OF CHROMOSOME-XIV IN SACCHAROMYCES-CEREVISIAE [J].
FUNK, M ;
HEGEMANN, JH ;
PHILIPPSEN, P .
MOLECULAR & GENERAL GENETICS, 1989, 219 (1-2) :153-160
[9]   The IML3/MCM19 gene of Saccharomyces cerevisiae is required for a kinetochore-related process during chromosome segregation [J].
Ghosh, SK ;
Poddar, A ;
Hajra, S ;
Sanyal, K ;
Sinha, P .
MOLECULAR GENETICS AND GENOMICS, 2001, 265 (02) :249-257
[10]   Establishing biorientation occurs with precocious separation of the sister kinetochores, but not the arms, in the early spindle of budding yeast [J].
Goshima, G ;
Yanagida, M .
CELL, 2000, 100 (06) :619-633