Hajra Sujata, Ghosh Santanu Kumar, Jayaram Makkuni
Section of Molecular Genetics and Microbiology, University of Texas at Austin, Austin, TX 78712, USA.
J Cell Biol. 2006 Sep 11;174(6):779-90. doi: 10.1083/jcb.200603042.
The centromere protein A homologue Cse4p is required for kinetochore assembly and faithful chromosome segregation in Saccharomyces cerevisiae. It has been regarded as the exquisite hallmark of centromeric chromatin. We demonstrate that Cse4 resides at the partitioning locus STB of the 2-microm plasmid. Cse4p-STB association is absolutely dependent on the plasmid partitioning proteins Rep1p and Rep2p and the integrity of the mitotic spindle. The kinetochore mutation ndc10-1 excludes Cse4p from centromeres without dislodging it from STB. Cse4p-STB association lasts from G1/S through late telophase during the cell cycle. The release of Cse4p from STB chromatin is likely mediated through spindle disassembly. A lack of functional Cse4p disrupts the remodeling of STB chromatin by the RSC2 complex, negates Rep2p binding and cohesin assembly at STB, and causes plasmid missegregation. Poaching of a specific histone variant by the plasmid to mark its partitioning locus with a centromere tag reveals yet another one of the molecular trickeries it performs for achieving chromosome- like fidelity in segregation.
着丝粒蛋白A同源物Cse4p是酿酒酵母着丝粒组装和准确染色体分离所必需的。它被视为着丝粒染色质的精妙标志。我们证明Cse4定位于2μm质粒的分配位点STB。Cse4p与STB的结合绝对依赖于质粒分配蛋白Rep1p和Rep2p以及有丝分裂纺锤体的完整性。着丝粒突变ndc10 - 1可将Cse4p排除在着丝粒之外,但不会将其从STB上移除。Cse4p与STB的结合在细胞周期中从G1/S期持续到末期晚期。Cse4p从STB染色质上的释放可能是通过纺锤体解体介导的。缺乏功能性Cse4p会破坏RSC2复合物对STB染色质的重塑,消除Rep2p在STB处的结合和黏连蛋白组装,并导致质粒错分离。质粒通过盗用一种特定的组蛋白变体,用着丝粒标签标记其分配位点,揭示了它为实现类似染色体的分离保真度所施展的又一分子伎俩。