非肌球蛋白II的交联活性不足以进行秀丽隐杆线虫的胚胎细胞分裂

D. S. Osório, Fung-Yi Chan, J. Saramago, J. Leite, A. M. Silva, A. F. Sobral, R. Gassmann, A. Carvalho
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引用次数: 23

摘要

动物细胞的细胞质分裂需要一个可收缩的肌动球蛋白环的组装和收缩。非肌肉肌球蛋白II对细胞分裂至关重要,但其运动活性的作用尚不清楚。在这里,我们研究了通过基因组编辑产生的表达非肌肉肌球蛋白运动突变体的秀丽隐杆线虫胚胎的细胞分裂。在单细胞胚胎中,两种能够结合f -肌动蛋白的非肌肉运动死亡的肌球蛋白不支持细胞分裂,两种部分运动受损的肌球蛋白延迟细胞分裂,并使环对肌球蛋白水平降低更敏感。对肌凝蛋白突变体的进一步分析表明,在收缩环组装过程中,驱动f -肌动蛋白束排列和压实的是肌凝蛋白运动活性,而不是肌凝蛋白与f -肌动蛋白交联的能力,肌凝蛋白运动活性决定了收缩环收缩的速度。我们得出结论,肌凝蛋白运动活动在细胞分裂的所有阶段都是必需的。最后,对秀丽隐杆线虫主肌球蛋白中相应运动突变的表征表明,运动活动是肌肉收缩所必需的,但对于成人肌肉中f -肌动蛋白的组织则是必不可少的。这篇文章有一个相关的“报纸背后的人”采访。非肌肉肌球蛋白II的运动活性对细胞分裂至关重要,并参与秀丽隐杆线虫胚胎过程的所有阶段。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Crosslinking activity of non-muscle myosin II is not sufficient for embryonic cytokinesis in C. elegans
ABSTRACT Cytokinesis in animal cells requires the assembly and constriction of a contractile actomyosin ring. Non-muscle myosin II is essential for cytokinesis, but the role of its motor activity remains unclear. Here, we examine cytokinesis in C. elegans embryos expressing non-muscle myosin motor mutants generated by genome editing. Two non-muscle motor-dead myosins capable of binding F-actin do not support cytokinesis in the one-cell embryo, and two partially motor-impaired myosins delay cytokinesis and render rings more sensitive to reduced myosin levels. Further analysis of myosin mutants suggests that it is myosin motor activity, and not the ability of myosin to crosslink F-actin, that drives the alignment and compaction of F-actin bundles during contractile ring assembly, and that myosin motor activity sets the pace of contractile ring constriction. We conclude that myosin motor activity is required at all stages of cytokinesis. Finally, characterization of the corresponding motor mutations in C. elegans major muscle myosin shows that motor activity is required for muscle contraction but is dispensable for F-actin organization in adult muscles. This article has an associated ‘The people behind the papers’ interview. Highlighted Article: The motor activity of non-muscle myosin II is essential for cytokinesis and contributes to all stages of the process in C. elegans embryos.
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