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Cohesin Associates with Spindle Poles in a Mitosis-specific Manner and Functions in Spindle Assembly in Vertebrate Cells

机译:Cohesin与有丝分裂特定方式中的纺锤体相关联并在脊椎动物细胞纺锤体组装中起作用。

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摘要

Cohesin is an essential protein complex required for sister chromatid cohesion. Cohesin associates with chromosomes and establishes sister chromatid cohesion during interphase. During metaphase, a small amount of cohesin remains at the chromosome-pairing domain, mainly at the centromeres, whereas the majority of cohesin resides in the cytoplasm, where its functions remain unclear. We describe the mitosis-specific recruitment of cohesin to the spindle poles through its association with centrosomes and interaction with nuclear mitotic apparatus protein (NuMA). Overexpression of NuMA enhances cohesin accumulation at spindle poles. Although transient cohesin depletion does not lead to visible impairment of normal spindle formation, recovery from nocodazole-induced spindle disruption was significantly impaired. Importantly, selective blocking of cohesin localization to centromeres, which disrupts centromeric sister chromatid cohesion, had no effect on this spindle reassembly process, clearly separating the roles of cohesin at kinetochores and spindle poles. In vitro, chromosome-independent spindle assembly using mitotic extracts was compromised by cohesin depletion, and it was rescued by addition of cohesin that was isolated from mitotic, but not S phase, cells. The combined results identify a novel spindle-associated role for human cohesin during mitosis, in addition to its function at the centromere/kinetochore regions.
机译:粘着蛋白是姐妹染色单体粘着所需的必需蛋白质复合物。粘着蛋白与染色体缔合并在相间建立姐妹染色单体粘着。在中期,少量的粘着蛋白保留在染色体配对域中,主要在着丝粒处,而大多数粘着蛋白留在细胞质中,其功能尚不清楚。我们通过与中心体的关联以及与核有丝分裂器蛋白(NuMA)的相互作用,描述了粘附蛋白向纺锤体极的有丝分裂特异性募集。 NuMA的过表达增强了粘着蛋白在纺锤极的积累。尽管短暂的粘着蛋白耗竭不会导致正常纺锤体形成的明显损害,但是从诺考达唑诱导的纺锤体破坏中恢复的能力明显受损。重要的是,黏附素定位于着丝粒的选择性阻断,破坏着丝粒姊妹染色单体的黏附,对纺锤体的重组过程没有影响,从而清楚地分离了凝集素在动植物和纺锤极中的作用。在体外,黏附蛋白耗竭损害了使用有丝分裂提取物的染色体非依赖性纺锤体组装,并且通过添加从有丝分裂细胞而非S期细胞中分离出的黏附素得以拯救。结合后的结果表明,除了在着丝粒/线粒体区域发挥功能外,人黏着蛋白在有丝分裂过程中还具有新的纺锤体相关作用。

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