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Effects of the regulatory light chain phosphorylation of myosin II on mitosis and cytokinesis of mammalian cells

机译:肌球蛋白II的调节轻链磷酸化对哺乳动物细胞有丝分裂和胞质分裂的影响

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摘要

Myosin plays an important role in mitosis, especially during cytokinesis. Although it has been assumed that phosphorylation of regulatory light chain of myosin (RLC) controls motility of mammalian non-muscle cells, the functional significance of RLC phosphorylation remains uninvestigated. To address this problem, we have produced unphosphorylatable RLC (T18A/S19A RLC) and overexpressed it in COS-7 cells and normal rat kidney cells. Overexpression of T18A/S19A RLC but not wild type RLC almost completely abolished concanavalin A-induced receptor cap formation. The results indicate that myosin phosphorylation is critical for concanavalin A-induced gathering of surface receptors. T18A/S19A RLC overexpression resulted in the production of multinucleated cells, suggesting the failure of proper cell division in these cells. Video microscopic observation revealed that cells expressing T18A/S19A RLC showed abnormalities during mitosis in two respects. One is that the cells produced abnormal cleavage furrows, resulting in incomplete cytokinesis, which suggests that myosin phosphorylation is important for the normal recruitment of myosin molecules into the contractile ring structure. The other is that separation of chromosomes from the metaphase plate is disrupted in T18A/S19A RLC expressing cells, thus preventing proper transition from metaphase to anaphase. These results suggest that, in addition to cytokinesis, myosin and myosin phosphorylation play a role in the karyokinetic process.
机译:肌球蛋白在有丝分裂中起重要作用,特别是在胞质分裂过程中。尽管已经假定肌球蛋白(RLC)的调节性轻链的磷酸化控制哺乳动物非肌肉细胞的运动性,但RLC磷酸化的功能意义尚待研究。为了解决这个问题,我们生产了不可磷酸化的RLC(T18A / S19A RLC),并在COS-7细胞和正常大鼠肾细胞中过表达。 T18A / S19A RLC的过表达而不是野生型RLC的过表达几乎完全消除了伴刀豆球蛋白A诱导的受体帽形成。结果表明,肌球蛋白的磷酸化对于伴刀豆球蛋白A诱导的表面受体聚集至关重要。 T18A / S19A RLC过表达导致多核细胞的产生,表明这些细胞中适当的细胞分裂失败。视频显微镜观察显示,表达T18A / S19A RLC的细胞在两个方面都显示出有丝分裂异常。一种是细胞产生异常的分裂沟,导致不完全的胞质分裂,这表明肌球蛋白磷酸化对于正常地将肌球蛋白分子募集到收缩环结构中是重要的。另一个是在T18A / S19A RLC表达细胞中,染色体与中期板的分离被破坏,从而阻止了从中期到后期的正确过渡。这些结果表明,除了胞质分裂之外,肌球蛋白和肌球蛋白的磷酸化在核动力过程中也起作用。

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