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Global analysis of core histones reveals nucleosomal surfaces required for chromosome bi-orientation

机译:核心组蛋白的全局分析揭示了染色体双向取向所需的核小体表面

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摘要

The attachment of sister kinetochores to microtubules from opposite spindle poles is essential for faithful chromosome segregation. Kinetochore assembly requires centromere-specific nucleosomes containing the histone H3 variant CenH3. However, the functional roles of the canonical histones (H2A, H2B, H3, and H4) in chromosome segregation remain elusive. Using a library of histone point mutants in Saccharomyces cerevisiae, 24 histone residues that conferred sensitivity to the microtubule-depolymerizing drugs thiabendazole (TBZ) and benomyl were identified. Twenty-three of these mutations were clustered at three spatially separated nucleosomal regions designated TBS-I, -II, and -III (TBZ/benomyl-sensitive regions I–III). Elevation of mono-polar attachment induced by prior nocodazole treatment was observed in H2A-I112A (TBS-I), H2A-E57A (TBS-II), and H4-L97A (TBS-III) cells. Severe impairment of the centromere localization of Sgo1, a key modulator of chromosome bi-orientation, occurred in H2A-I112A and H2A-E57A cells. In addition, the pericentromeric localization of Htz1, the histone H2A variant, was impaired in H4-L97A cells. These results suggest that the spatially separated nucleosomal regions, TBS-I and -II, are necessary for Sgo1-mediated chromosome bi-orientation and that TBS-III is required for Htz1 function.
机译:姊妹动植物与纺锤相反极的微管的附着对于忠实的染色体分离至关重要。线粒体组装需要包含组蛋白H3变体CenH3的着丝粒特异性核小体。但是,规范组蛋白(H2A,H2B,H3和H4)在染色体分离中的功能作用仍然难以捉摸。使用酿酒酵母中的组蛋白点突变体文库,鉴定了24个对微管解聚药物噻苯达唑(TBZ)和苯菌灵具有敏感性的组蛋白残基。这些突变中的23个聚集在三个空间分离的核小体区域,分别称为TBS-I,-II和-III(TBZ /苯菌灵敏感区域I-III)。在H2A-I112A(TBS-I),H2A-E57A(TBS-II)和H4-L97A(TBS-III)细胞中,观察到由先前的诺考达唑处理引起的单极粘附升高。 H2A-I112A和H2A-E57A细胞发生了Sgo1着丝粒定位的严重损伤,Sgo1是染色体双向取向的关键调节剂。此外,在H4-L97A细胞中,组蛋白H2A变体Htz1的着丝粒定位被削弱。这些结果表明,空间分离的核小体区域TBS-I和-II是Sgo1介导的染色体双向取向所必需的,而HBS1功能则需要TBS-III。

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