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Switch between Large Hand-Over-Hand and Small Inchworm-like Steps in Myosin VI

机译:在Myosin VI中在大型移交步骤和小型蠕虫状步骤之间切换

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摘要

Many biological motor molecules move within cells using stepsizes predictable from their structures. Myosin VI, however, has much larger and more broadly distributed stepsizes than those predicted from its short lever arms. We explain the discrepancy by monitoring Qdots and gold nanoparticles attached to the myosin-VI motor domains using high-sensitivity nanoimaging. The large stepsizes were attributed to an extended and relatively rigid lever arm; their variability to two stepsizes, one large (72 nm) and one small (44 nm). These results suggest that there exist two tilt angles during myosin-VI stepping, which correspond to the pre- and postpowerstroke states and regulate the leading head. The large steps are consistent with the previously reported hand-over-hand mechanism, while the small steps follow an inchworm-like mechanism and increase in frequency with ADP. Switching between these two mechanisms in a strain-sensitive, ADP-dependent manner allows myosin VI to fulfill its multiple cellular tasks including vesicle transport and membrane anchoring.
机译:许多生物运动分子使用从其结构可预测的逐步大小在细胞内移动。然而,Myosin VI的步长比其短杠杆臂所预测的要大得多,分布也更广泛。我们通过使用高灵敏度纳米成像监测附着在肌球蛋白-VI运动域上的Qdot和金纳米颗粒来解释差异。较大的台阶尺寸归因于杠杆臂的延伸和相对刚性。它们的可变性分为两步,一个大(72 nm)和一个小(44 nm)。这些结果表明,在肌球蛋白-VI步进过程中存在两个倾斜角,分别对应于中风前和中风后的状态,并调节前导杆。较大的步骤与先前报道的移交机制一致,而较小的步骤遵循类似蠕虫的机制并随着ADP的出现而增加。以应变敏感,依赖于ADP的方式在这两种机制之间切换,使肌球蛋白VI能够完成其多种细胞任务,包括囊泡转运和膜锚定。

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