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Cse4( CenH3)与酿酒酵母天然和染色体整合状态下质粒分配位点的关联:在着丝粒进化中的意义。

Cse4 (CenH3) association with the Saccharomyces cerevisiae plasmid partitioning locus in its native and chromosomally integrated states: implications in centromere evolution.

机构信息

Section of Molecular Genetics and Microbiology, University of Texas at Austin, Austin, TX 78712, USA.

出版信息

Mol Cell Biol. 2011 Mar;31(5):1030-40. doi: 10.1128/MCB.01191-10. Epub 2010 Dec 20.

Abstract

The histone H3 variant Cse4 specifies centromere identity in Saccharomyces cerevisiae by its incorporation into a special nucleosome positioned at CEN DNA and promotes the assembly of the kinetochore complex, which is required for faithful chromosome segregation. Our previous work showed that Cse4 is also associated with the partitioning locus STB of the 2μm circle--a multicopy plasmid that resides in the yeast nucleus and propagates itself stably. Cse4 is essential for the functional assembly of the plasmid partitioning complex, including the recruitment of the yeast cohesin complex at STB. We have located Cse4 association strictly at the origin-proximal subregion of STB. Three of the five directly repeated tandem copies of a 62-bp consensus sequence element constituting this region are necessary and sufficient for the recruitment of Cse4. The association of Cse4 with STB is dependent on Scm3, the loading factor responsible for the incorporation of Cse4 into the CEN nucleosome. A chromosomally integrated copy of STB confers on the integration site the capacity for Cse4 association as well as cohesin assembly. The localization of Cse4 in chromatin digested by micrococcal nuclease is consistent with the potential assembly of one Cse4-containing nucleosome, but not more than two, at STB. The remarkable ability of STB to acquire a very specialized, and strictly regulated, chromosome segregation factor suggests its plausible evolutionary kinship with CEN.

摘要

组蛋白 H3 变体 Cse4 通过其掺入定位于 CEN DNA 的特殊核小体来指定酿酒酵母中的着丝粒身份,并促进动粒复合物的组装,这对于准确的染色体分离是必需的。我们之前的工作表明,Cse4 还与 2μm 环的分配位点 STB 相关联,2μm 环是一种多拷贝质粒,位于酵母核内并稳定自我复制。Cse4 对于质粒分配复合物的功能性组装是必需的,包括在 STB 处募集酵母黏合复合物。我们已经严格将 Cse4 关联定位在 STB 的起始近端亚区。构成该区域的 62 个碱基对一致序列元件的五个直接重复串联拷贝中的三个对于 Cse4 的募集是必需和充分的。Cse4 与 STB 的关联依赖于 Scm3,后者是负责将 Cse4 掺入 CEN 核小体的加载因子。STB 的染色体整合拷贝赋予整合位点 Cse4 关联以及黏合组装的能力。微球菌核酸酶消化染色质中 Cse4 的定位与一个包含 Cse4 的核小体的潜在组装一致,但不超过两个,在 STB 处。STB 获得非常特殊和严格调控的染色体分离因子的显著能力表明其与 CEN 具有合理的进化亲缘关系。

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