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首页> 外文期刊>Journal of cell biology >The KinI kinesin Kif2a is required for bipolar spindle assembly through a functional relationship with MCAK
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The KinI kinesin Kif2a is required for bipolar spindle assembly through a functional relationship with MCAK

机译:通过与MCAK的功能关系,双极主轴组装需要KinI驱动蛋白Kif2a

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摘要

Although the microtubule-depolymerizing KinI motor Kif2a is abundantly expressed in neuronal cells, we now show it localizes to centrosomes and spindle poles during mitosis in cultured cells. RNAi-induced knockdown of Kif2a expression inhibited cell cycle progression because cells assembled monopolar spindles. Bipolar spindle assembly was restored in cells lacking Kif2a by treatments that altered microtubule assembly (nocodazole), eliminated kinetochore–microtubule attachment (loss of Nuf2), or stabilized microtubule plus ends at kinetochores (loss of MCAK). Thus, two KinI motors, MCAK and Kif2a, play distinct roles in mitosis, and MCAK activity at kinetochores must be balanced by Kif2a activity at poles for spindle bipolarity. These treatments failed to restore bipolarity to cells lacking the activity of the kinesin Eg5. Thus, two independent pathways contribute to spindle bipolarity, with the Eg5-dependent pathway using motor force to drive spindle bipolarity and the Kif2a-dependent pathway relying on microtubule polymer dynamics to generate force for spindle bipolarity.
机译:尽管微管解聚的KinI电机Kif2a在神经元细胞中大量表达,但我们现在显示它在培养细胞的有丝分裂过程中定位于中心体和纺锤体极。 RNAi诱导的Kif2a表达抑制可抑制细胞周期进程,因为细胞装配了单极纺锤体。通过改变微管装配(诺考达唑),消除动粒-微管附着(Nuf2缺失)或稳定的微管加上动植物末端(MCAK缺失)的治疗,可在缺乏Kif2a的细胞中恢复双极纺锤体装配。因此,两个KinI马达MCAK和Kif2a在有丝分裂中起着不同的作用,并且对于纺锤体的MCAK活性必须与纺锤体双极极点的Kif2a活性平衡。这些治疗未能使缺乏驱动蛋白Eg5活性的细胞恢复双极性。因此,两个独立的途径有助于纺锤体双极性,Eg5依赖途径利用动力驱动纺锤体双极性,而Kif2a依赖途径依赖微管聚合物动力学产生纺锤体双极性的力。

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