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高速单分子偏振荧光显微镜观察肌球蛋白 V 的倾斜和摆动。

Tilting and wobble of myosin V by high-speed single-molecule polarized fluorescence microscopy.

机构信息

Department of Physics and Astronomy, University of Pennsylvania, Philadelphia, PA, USA.

出版信息

Biophys J. 2013 Mar 19;104(6):1263-73. doi: 10.1016/j.bpj.2013.01.057.

Abstract

Myosin V is biomolecular motor with two actin-binding domains (heads) that take multiple steps along actin by a hand-over-hand mechanism. We used high-speed polarized total internal reflection fluorescence (polTIRF) microscopy to study the structural dynamics of single myosin V molecules that had been labeled with bifunctional rhodamine linked to one of the calmodulins along the lever arm. With the use of time-correlated single-photon counting technology, the temporal resolution of the polTIRF microscope was improved ~50-fold relative to earlier studies, and a maximum-likelihood, multitrace change-point algorithm was used to objectively determine the times when structural changes occurred. Short-lived substeps that displayed an abrupt increase in rotational mobility were detected during stepping, likely corresponding to random thermal fluctuations of the stepping head while it searched for its next actin-binding site. Thus, myosin V harnesses its fluctuating environment to extend its reach. Additional, less frequent angle changes, probably not directly associated with steps, were detected in both leading and trailing heads. The high-speed polTIRF method and change-point analysis may be applicable to single-molecule studies of other biological systems.

摘要

肌球蛋白 V 是一种具有两个肌动蛋白结合结构域(头部)的生物分子马达,通过链动机制沿着肌动蛋白多次移动。我们使用高速偏振全内反射荧光(polTIRF)显微镜研究了标记有双功能罗丹明的单肌球蛋白 V 分子的结构动力学,罗丹明与肌球蛋白 V 杆臂上的一个钙调蛋白相连。通过使用时间相关的单光子计数技术,polTIRF 显微镜的时间分辨率相对于早期研究提高了约 50 倍,并且使用最大似然、多轨迹变点算法客观地确定了结构变化发生的时间。在步移过程中检测到短暂的亚步,其旋转迁移率突然增加,这可能对应于在寻找下一个肌动蛋白结合位点时步移头部的随机热波动。因此,肌球蛋白 V 利用其波动的环境来扩大其作用范围。在领先和落后头部都检测到了额外的、不那么频繁的角度变化,这些变化可能与步移没有直接关系。这种高速 polTIRF 方法和变点分析可能适用于其他生物系统的单分子研究。

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