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Capping protein increases the rate of actin-based motility by promoting filament nucleation by the Arp2/3 complex

机译:封端蛋白通过促进Arp2 / 3复合物的细丝成核作用来提高基于肌动蛋白的运动速率

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Capping protein (CP) is an integral component of Arp2/3-nucleated actin networks that drive amoeboid motility. Increasing the concentration of capping protein, which caps barbed ends of actin filaments and prevents elongation, increases the rate of actin-based motility in vivo and in vitro. We studied the synergy between CP and Arp2/3 using an in vitro actin-based motility system reconstituted from purified proteins. We find that capping protein increases the rate of motility by promoting more frequent filament nucleation by the Arp2/3 complex and not by increasing the rate of filament elongation as previously suggested. One consequence of this coupling between capping and nucleation is that, while the rate of motility depends strongly on the concentration of CP and Arp2/3, the net rate of actin assembly is insensitive to changes in either factor. By reorganizing their architecture, dendritic actin networks harness the same assembly kinetics to drive different rates of motility.
机译:封端蛋白(CP)是Arp2 / 3-有核肌动蛋白网络的不可或缺的组成部分,可驱动变形虫运动。增加封闭蛋白的浓度,可以封闭肌动蛋白丝的带刺末端并防止其伸长,从而提高了体内和体外基于肌动蛋白的运动速率。我们研究了CP和Arp2 / 3之间的协同作用,使用了从纯化的蛋白质重构的体外基于肌动蛋白的动力系统。我们发现,封端蛋白通过促进Arp2 / 3复合物促进更频繁的细丝成核,而不是像以前建议的那样通过增加细丝伸长率来提高运动速率。封端和成核之间这种耦合的一个结果是,虽然运动速率很大程度上取决于CP和Arp2 / 3的浓度,但肌动蛋白装配的净速率对这两个因素的变化都不敏感。通过重组其结构,树突状肌动蛋白网络利用相同的组装动力学来驱动不同的运动速率。

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