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Human kinetochores are swivel joints that mediate microtubule attachments

机译:人的动臂是介导微管附件的旋转关节。

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摘要

Chromosome segregation is a mechanical process that requires assembly of the mitotic spindle – a dynamic microtubule-based force-generating machine. Connections to this spindle are mediated by sister kinetochore pairs, that form dynamic end-on attachments to microtubules emanating from opposite spindle poles. This bi-orientation generates forces that have been reported to stretch the kinetochore itself, which has been suggested to stabilise attachment and silence the spindle checkpoint. We reveal using three dimensional tracking that the outer kinetochore domain can swivel around the inner kinetochore/centromere, which results in large reductions in intra-kinetochore distance (delta) when viewed in lower dimensions. We show that swivel provides a mechanical flexibility that enables kinetochores at the periphery of the spindle to engage microtubules. Swivel reduces as cells approach anaphase, suggesting an organisational change linked to checkpoint satisfaction and/or obligatory changes in kinetochore mechanochemistry may occur before dissolution of sister chromatid cohesion.>DOI:
机译:染色体分离是一个机械过程,需要组装有丝分裂纺锤体-一种动态的基于微管的力产生机。与该纺锤体的连接是由成对的动线偶对介导的,它们形成了动态的,端对端的附着物,这些附着物是从相对的纺锤体极上发出的微管。这种双向取向会产生力,据报道这种力会拉动动球体本身,这已被证明可以稳定附着力并使主轴检查点静音。我们揭示了使用三维跟踪,外部的线粒体域可以围绕内部的线粒体/着丝粒旋转,这导致在较小的维度上观察时,线粒体内的距离(δ)大大减小。我们显示,旋转接头提供了机械柔韧性,使纺锤体在纺锤体外围能够接合微管。随着细胞接近后期,旋转减少,这表明在姐妹染色单体内聚力溶解之前可能发生与检查点满意度和/或线粒体力学化学的强制性变化有关的组织变化。> DOI:

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