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Dynamin contributes to cytokinesis by stabilizing actin filaments in the contractile ring

机译:动力蛋白通过稳定收缩环中的肌动蛋白丝来促进细胞分裂

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Dynamin has been proposed to play an important role in cytokinesis, although the nature of its contribution has remained unclear. Dictyostelium discoideum has five dynamin-like proteins: DymA, DymB, DlpA, DlpB and DlpC. Cells mutant for dymA, dlpA or dlpB presented defects in cytokinesis that resulted in multinucleation when the cells were cultured in suspension. However, the cells could divide normally when attached to the substratum; this latter process depends on traction-mediated cytokinesis B. A dynamin G ase inhibitor also blocked cytokinesis in suspension, suggesting an important role for dynamin in cytokinesis A, which requires a contractile ring powered by myosin II. Myosin II did not properly localize to the cleavage furrow in dynamin mutant cells, and the furrow shape was distorted. DymA and DlpA were associated with actin filaments at the furrow. Fluorescence recovery after photobleaching and a DNase I binding assay showed that actin filaments in the contractile ring were significantly fragmented in mutant cells. Dynamin is therefore involved in the stabilization of actin filaments in the furrow, which, in turn, maintain proper myosin II organization. We conclude that the lack of these dynamins disrupts proper actomyosin organization and thereby disables cytokinesis A.
机译:尽管动力作用的性质仍不清楚,但有人认为动力蛋白在胞质分裂中起重要作用。盘基网柄菌有五个动力蛋白样蛋白:DymA,DymB,DlpA,DlpB和DlpC。 dymA,dlpA或dlpB突变的细胞表现出胞质分裂缺陷,当悬浮培养细胞时会导致多核化。但是,细胞附着在基底上后可以正常分裂。后者的过程取决于牵引介导的胞质分裂B。一种动力蛋白G酶抑制剂也可以阻止悬浮状态下的胞质分裂,这表明动力蛋白在胞质分裂A中具有重要作用,这需要一个由肌球蛋白II驱动的收缩环。肌球蛋白II在动力突变细胞中未正确定位在切割沟上,并且沟形变形。 DymA和DlpA与沟处的肌动蛋白丝有关。光漂白和DNase I结合试验后的荧光恢复表明,在收缩细胞中,收缩环中的肌动蛋白丝明显断裂。因此,动力蛋白参与沟中肌动蛋白丝的稳定化,进而维持适当的肌球蛋白II组织。我们得出结论,缺乏这些动力蛋白会破坏适当的放线菌素组织,从而使胞质分裂A失效。

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