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A kinesin mutant with an atypical bipolar spindle undergoes normal mitosis

机译:具有非典型双极纺锤体的驱动蛋白突变体经历正常的有丝分裂

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Motor proteins have been implicated in various aspects of mitosis, including spindle assembly and chromosome segregation. Here, we show that acentrosomal Arabidopsis cells that are mutant for the kinesin, ATK1, lack microtubule accumulation at the predicted spindle poles during prophase and have reduced spindle bipolarity during prometaphase. Nonetheless, all abnormalities are rectified by anaphase and chromosome segregation appears normal. We conclude that ATK1 is required for normal microtubule accumulation at the spindle poles during prophase and possibly functions in spindle assembly during prometaphase. Because aberrant spindle morphology in these mutants is resolved by anaphase, we postulate that mitotic plant cells contain an error-correcting mechanism. Moreover, ATK1 function seems to be dosage-dependent, because cells containing one wild-type allele take significantly longer to proceed to anaphase as compared with cells containing two wild-type alleles. [References: 52]
机译:运动蛋白已经牵涉到有丝分裂的各个方面,包括纺锤体组装和染色体分离。在这里,我们显示了突变的驱动,ATK1的拟人拟南芥细胞,缺乏前期预测的纺锤极在微管积累,并减少了前中期纺锤体双极。但是,所有异常都可以通过后期纠正,并且染色体分离看起来很正常。我们得出的结论是,在前期正常的微管在纺锤极上的积累需要ATK1,并且在前中期的纺锤体组装中可能起作用。因为这些突变体中异常的纺锤体形态可以通过后期解析,所以我们推测有丝分裂植物细胞包含一个纠错机制。此外,ATK1功能似乎是剂量依赖性的,因为与包含两个野生型等位基因的细胞相比,包含一个野生型等位基因的细胞进入后期阶段的时间明显更长。 [参考:52]

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