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A one-headed class V myosin molecule develops multiple large (≈32-nm) steps successively

机译:单头的V类肌球蛋白分子连续发展多个大(≈32-nm)步骤

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摘要

Class V myosin (myosin-V) was first found as a processive motor that moves along an actin filament with large (≈36-nm) successive steps and plays an important role in cargo transport in cells. Subsequently, several other myosins have also been found to move processively. Because myosin-V has two heads with ATP- and actin-binding sites, the mechanism of successive movement has been generally explained based on the two-headed structure. However, the fundamental problem of whether the two-headed structure is essential for the successive movement has not been solved. Here, we measure motility of engineered myosin-V having only one head by optical trapping nanometry. The results show that a single one-headed myosin-V undergoes multiple successive large (≈32-nm) steps, suggesting that a novel mechanism is operating for successive myosin movement.
机译:V类肌球蛋白(myosin-V)最初被发现是一种连续性肌动蛋白丝,它沿着肌动蛋白丝连续(步长约36 nm)运动,在细胞货物运输中起着重要作用。随后,还发现了其他几种肌球蛋白进行性运动。由于肌球蛋白V具有两个具有ATP和肌动蛋白结合位点的头部,因此通常基于双头结构解释了连续运动的机制。但是,尚未解决双头结构对于连续运动是否必不可少的基本问题。在这里,我们通过光阱纳米技术测量仅具有一个头部的工程化肌球蛋白-V的运动性。结果表明,一个单头的肌球蛋白-V经历了多个连续的大步(≈32-nm),这表明一种新颖的机制正在使肌球蛋白连续运动。

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