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肌球蛋白-10 在两个阶段产生力冲程,并在低负载下沿单个肌动蛋白丝进行程序性运动。

Myosin-10 produces its power-stroke in two phases and moves processively along a single actin filament under low load.

机构信息

Laboratory of Molecular Physiology, National Heart, Lung and Blood, Institute, National Institutes of Health, Bethesda, MD 20892.

出版信息

Proc Natl Acad Sci U S A. 2014 May 6;111(18):E1833-42. doi: 10.1073/pnas.1320122111. Epub 2014 Apr 21.

Abstract

Myosin-10 is an actin-based molecular motor that participates in essential intracellular processes such as filopodia formation/extension, phagocytosis, cell migration, and mitotic spindle maintenance. To study this motor protein's mechano-chemical properties, we used a recombinant, truncated form of myosin-10 consisting of the first 936 amino acids, followed by a GCN4 leucine zipper motif, to force dimerization. Negative-stain electron microscopy reveals that the majority of molecules are dimeric with a head-to-head contour distance of ∼50 nm. In vitro motility assays show that myosin-10 moves actin filaments smoothly with a velocity of ∼310 nm/s. Steady-state and transient kinetic analysis of the ATPase cycle shows that the ADP release rate (∼13 s(-1)) is similar to the maximum ATPase activity (∼12-14 s(-1)) and therefore contributes to rate limitation of the enzymatic cycle. Single molecule optical tweezers experiments show that under intermediate load (∼0.5 pN), myosin-10 interacts intermittently with actin and produces a power stroke of ∼17 nm, composed of an initial 15-nm and subsequent 2-nm movement. At low optical trap loads, we observed staircase-like processive movements of myosin-10 interacting with the actin filament, consisting of up to six ∼35-nm steps per binding interaction. We discuss the implications of this load-dependent processivity of myosin-10 as a filopodial transport motor.

摘要

肌球蛋白-10 是一种基于肌动蛋白的分子马达,参与细胞内的基本过程,如丝状伪足的形成/延伸、吞噬作用、细胞迁移和有丝分裂纺锤体的维持。为了研究这种运动蛋白的机械化学性质,我们使用了一种重组的、截断的肌球蛋白-10 形式,由前 936 个氨基酸组成,其后是 GCN4 亮氨酸拉链基序,以强制二聚化。负染色电子显微镜显示,大多数分子是二聚体,头部到头部的轮廓距离约为 50nm。体外运动分析表明,肌球蛋白-10 以约 310nm/s 的速度平滑地移动肌动蛋白丝。对 ATP 酶循环的稳态和瞬态动力学分析表明,ADP 释放速率(约 13s-1)与最大 ATP 酶活性(约 12-14s-1)相似,因此对酶循环的限速有贡献。单分子光学镊子实验表明,在中等负载(约 0.5pN)下,肌球蛋白-10 与肌动蛋白间歇性相互作用,并产生约 17nm 的力冲程,由初始的 15nm 和随后的 2nm 运动组成。在低光阱负载下,我们观察到肌球蛋白-10 与肌动蛋白丝相互作用的阶梯式连续运动,每个结合相互作用包含多达六个约 35nm 的步骤。我们讨论了肌球蛋白-10 这种依赖于负载的连续性作为丝状伪足运输马达的意义。

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