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Dynamic polymorphism of actin as activation mechanism for cell motility

机译:肌动蛋白的动态多态性作为细胞运动的激活机制

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摘要

Actin filament dynamics are crucial in cell motility. Actin filaments, and their bundles, networks, and gels assemble and disassemble spontaneously according to thermodynamic rules. These dynamically changing structures of actin are harnessed for some of its functions in cells. The actin systems respond to external signals, forces, or environments by biasing the fluctuation of actin assembly structures. In this study, dynamic conformation of actin molecules was studied by monitoring conformational dynamics of actin molecules at the single molecule level in real time. Actin conformation spontaneously fluctuates between multiple conformational states. Regarding myosin motility, the dynamic equilibrium of actin conformation was interpreted as between states that activates and inhibits the motility. The binding of myosin to actin filaments activates myosin motility by shifting the conformational fluctuation of actin towards the state that activates the motility. Thus, the activation mechanism based on thermal fluctuation is suggested at molecular level as well as at cellular level.
机译:肌动蛋白丝的动力学对于细胞运动至关重要。肌动蛋白丝及其束,网络和凝胶根据热力学规则自发组装和拆卸。利用肌动蛋白的这些动态变化的结构来实现其在细胞中的某些功能。肌动蛋白系统通过偏置肌动蛋白装配结构的波动来响应外部信号,力或环境。在这项研究中,通过实时监测肌动蛋白分子在单个分子水平上的构象动力学来研究肌动蛋白分子的动态构象。肌动蛋白构象自发地在多个构象状态之间波动。关于肌球蛋白的运动性,肌动蛋白构象的动态平衡被解释为在激活和抑制运动性的状态之间。肌球蛋白与肌动蛋白丝的结合通过将肌动蛋白的构象波动移向激活运动的状态来激活肌动蛋白运动。因此,在分子水平和细胞水平上都提出了基于热波动的激活机制。

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