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α-Actinin and fimbrin cooperate with myosin II to organize actomyosin bundles during contractile-ring assembly

机译:α-肌动蛋白和纤维蛋白与肌球蛋白II协同在收缩环组装过程中组织肌动球蛋白束

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The actomyosin contractile ring assembles through the condensation of a broad band of nodes that forms at the cell equator in fission yeast cytokinesis. The condensation process depends on actin filaments that interconnect nodes. By mutating or titrating actin cross-linkers α-actinin Ain1 and fimbrin Fim1 in live cells, we reveal that both proteins are involved in node condensation. Ain1 and Fim1 stabilize the actin cytoskeleton and modulate node movement, which prevents nodes and linear structures from aggregating into clumps and allows normal ring formation. Our computer simulations modeling actin filaments as semiflexible polymers reproduce the experimental observations and provide a model of how actin cross-linkers work with other proteins to regulate actin-filament orientations inside actin bundles and organize the actin network. As predicted by the simulations, doubling myosin II Myo2 level rescues the node condensation defects caused by Ain1 overexpression. Taken together, our work supports a cooperative process of ring self-organization driven by the interaction between actin filaments and myosin II, which is progressively stabilized by the cross-linking proteins.
机译:放线菌素收缩环通过裂变酵母胞质分裂在细胞赤道处形成的宽阔节的缩合而组装。冷凝过程取决于互连节点的肌动蛋白丝。通过在活细胞中突变或滴定肌动蛋白交联剂α-肌动蛋白Ain1和纤维蛋白Fim1,我们揭示了这两种蛋白都参与结节凝结。 Ain1和Fim1稳定肌动蛋白的细胞骨架并调节结点运动,从而防止结点和线性结构聚集为团块并允许正常的环形成。我们将肌动蛋白丝建模为半柔性聚合物的计算机模拟再现了实验观察结果,并提供了肌动蛋白交联剂如何与其他蛋白质一起调节肌动蛋白束内肌动蛋白丝方向并组织肌动蛋白网络的模型。正如模拟所预测的,将肌球蛋白II Myo2水平加倍可以挽救由Ain1过表达引起的结点凝结缺陷。两者合计,我们的工作支持由肌动蛋白丝和肌球蛋白II之间的相互作用驱动的环自组织的协同过程,该过程由交联蛋白逐渐稳定。

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