肌球蛋白-1b运动的纳米分辨率跟踪。

M I Wallace, C Batters, L M Coluccio, J E Molloy
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引用次数: 0

摘要

使用单分子荧光定位方法,以纳米精度测量了少量肌球蛋白分子马达产生的运动。测量的位置精度足以揭示由于单个肌凝蛋白马达和肌动蛋白丝之间的随机相互作用而导致的滑动速度波动。测量了滑动速度与纤维长度的关系,并通过自相关分析量化了滑动速度的波动。采用光镊纳米法直接测量肌球蛋白-1b的步长。10 nm功率冲程及其占空比与体外滑动试验得出的值一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nanometre resolution tracking of myosin-1b motility.

The movement produced by a small number of myosin molecular motors was measured with nanometre precision using single-molecule fluorescence localisation methods. The positional precision of the measurements was sufficient to reveal fluctuations in sliding velocity due to stochastic interactions between individual myosin motors and the actin filament. Dependence of sliding velocity upon filament length was measured and fluctuations in velocity were quantified by autocorrelation analysis. Optical tweezers-based nanometry was used to measure the myosin-1b step-size directly. The 10 nm power-stroke and its duty cycle ratio were consistent with values derived from in vitro sliding assays.

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