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PRC1 Cooperates with CLASP1 to Organize Central Spindle Plasticity in Mitosis

机译:PRC1与CLASP1合作组织有丝分裂的中心纺锤可塑性

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摘要

During cell division, chromosome segregation is governed by the interaction of spindle microtubules with the kinetochore. A dramatic remodeling of interpolar microtubules into an organized central spindle between the separating chromatids is required for the initiation and execution of cytokinesis. Central spindle organization requires mitotic kinesins, microtubule-bundling protein PRC1, and Aurora B kinase complex. However, the precise role of PRC1 in central spindle organization has remained elusive. Here we show that PRC1 recruits CLASP1 to the central spindle at early anaphase onset. CLASP1 belongs to a conserved microtubule-binding protein family that mediates the stabilization of overlapping microtubules of the central spindle. PRC1 physically interacts with CLASP1 and specifies its localization to the central spindle. Repression of CLASP1 leads to sister-chromatid bridges and depolymerization of spindle midzone microtubules. Disruption of PRC1-CLASP1 interaction by a membrane-permeable peptide abrogates accurate chromosome segregation, resulting in sister chromatid bridges. These findings reveal a key role for the PRC1-CLASP1 interaction in achieving a stable anti-parallel microtubule organization essential for faithful chromosome segregation. We propose that PRC1 forms a link between stabilization of CLASP1 association with central spindle microtubules and anti-parallel microtubule elongation.
机译:在细胞分裂过程中,染色体的分离受纺锤体微管与动粒的相互作用控制。启动和执行胞质分裂需要极间微管戏剧性地重塑成分离的染色单体之间的有组织的中心纺锤体。中心纺锤体组织需要有丝分裂驱动蛋白,微管捆绑蛋白PRC1和Aurora B激酶复合体。但是,PRC1在中心纺锤组织中的确切作用仍然难以捉摸。在这里,我们显示PRC1在晚期晚期发作时将CLASP1募集到中心纺锤。 CLASP1属于保守的微管结合蛋白家族,其介导中心纺锤的重叠微管的稳定化。 PRC1与CLASP1进行物理交互,并指定其对中心主轴的定位。抑制CLASP1导致姐妹染色单体桥和纺锤体中区微管的解聚。膜可渗透肽破坏PRC1-CLASP1相互作用消除了精确的染色体分离,导致了姐妹染色单体桥。这些发现揭示了PRC1-CLASP1相互作用在实现对忠实染色体分离必不可少的稳定的反平行微管组织中的关键作用。我们建议PRC1形成稳定的CLASP1协会与中心纺锤体微管和反平行微管伸长之间的联系。

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