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In vitro assays of processive myosin motors.

机译:进行性肌球蛋白马达的体外测定。

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Myosin V is an actin-based motor thought to be involved in vesicle transport. Since the properties of such a motor may be expected to differ from those of muscle myosin II, we have examined myosin V-driven movement using a combination of gliding filament and optical trap assays to observe single molecules with high resolution. The results clearly demonstrate that brain myosin V is a highly efficient processive motor. In vitro motility assays at low myosin V densities reveal apparent single-molecule supported movement. Processive stepping was also observed in optical trapping assays of myosin V-driven motion. Here the methods that were used to demonstrate the processivity of myosin V are described. These methods include density-dependent assays that eliminate the possibility of aggregation or chance colocalization of multiple motors being responsible for apparent single-molecule motility. Such assays will be useful tools for identifying other processive classes of myosins. Copyright 2000 Academic Press.
机译:肌球蛋白V是一种基于肌动蛋白的运动,被认为与小泡运输有关。由于这种电机的特性可能不同于肌肉肌球蛋白II的特性,因此我们使用滑行灯丝和光阱测定的组合检查了肌球蛋白V驱动的运动,从而观察了高分辨率的单个分子。结果清楚地表明,脑肌球蛋白V是高效的进行性运动。在低肌球蛋白V密度下的体外运动测定显示明显的单分子支持运动。在肌球蛋白V驱动的运动的光捕获测定中也观察到进行性步进。在这里描述了用于证明肌球蛋白V的合成能力的方法。这些方法包括依赖密度的测定法,该测定法消除了导致明显的单分子运动性的多个马达发生聚集或偶然共定位的可能性。这样的测定将是用于鉴定其他进行性肌球蛋白类别的有用工具。版权所有2000学术出版社。

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