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首页> 外文期刊>Nature Communications >Kinetochore-microtubule attachment is sufficient to satisfy the human spindle assembly checkpoint
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Kinetochore-microtubule attachment is sufficient to satisfy the human spindle assembly checkpoint

机译:线粒体-微管附件足以满足人体主轴装配检查点

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摘要

The spindle assembly checkpoint (SAC) is a genome surveillance mechanism that protects against aneuploidization. Despite profound progress on understanding mechanisms of its activation, it remains unknown what aspect of chromosome-spindle interactions is monitored by the SAC: kinetochore-microtubule attachment or the force generated by dynamic microtubules that signals stable biorientation of chromosomes? To answer this, we uncoupled these two processes by expressing a non-phosphorylatable version of the main microtubule-binding protein at kinetochores (HEC1-9A), causing stabilization of incorrect kinetochore-microtubule attachments despite persistent activity of the error-correction machinery. The SAC is fully functional in HEC1-9A-expressing cells, yet cells in which chromosomes cannot biorient but are stably attached to microtubules satisfy the SAC and exit mitosis. SAC satisfaction requires neither intra-kinetochore stretching nor dynamic microtubules. Our findings support the hypothesis that in human cells the end-on interactions of microtubules with kinetochores are sufficient to satisfy the SAC without the need for microtubule-based pulling forces.
机译:纺锤体装配检查点(SAC)是一种防止非整倍体化的基因组监视机制。尽管在了解其激活机制方面取得了长足的进步,但尚不清楚SAC监测染色体-纺锤体相互作用的哪个方面:动粒-微管附着或动态微管产生的力发出稳定的染色体生物定向信号?为了解决这个问题,我们通过在动子体(HEC1-9A)上表达主要微管结合蛋白的非磷酸化形式来解除这两个过程的耦合,尽管错误校正机制持续存在,但仍导致不正确的动粒-微管附件稳定。 SAC在表达HEC1-9A的细胞中具有全部功能,但是其中染色体不能进行生物定向但稳定地附着在微管上的细胞满足SAC并退出有丝分裂。 SAC的满意度既不需要动臂内部的拉伸,也不需要动态的微管。我们的发现支持以下假设:在人类细胞中,微管与动植物的末端相互作用足以满足SAC,而无需基于微管的拉力。

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