Li Jianchao, Lu Qing, Zhang Mingjie
Division of Life Science, State Key Laboratory of Molecular Neuroscience, Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, China.
Center of Systems Biology and Human Health, School of Science and Institute for Advanced Study, Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, China.
Traffic. 2016 Aug;17(8):822-38. doi: 10.1111/tra.12383. Epub 2016 Mar 17.
Unconventional myosins are a superfamily of actin-based molecular motors playing diverse roles including cellular trafficking, mechanical supports, force sensing and transmission, etc. The variable neck and tail domains of unconventional myosins function to bind to specific cargoes including proteins and lipid vesicles and thus are largely responsible for the diverse cellular functions of myosins in vivo. In addition, the tail regions, together with their cognate cargoes, can regulate activities of the motor heads. This review outlines the advances made in recent years on cargo recognition and cargo binding-induced regulation of the activity of several unconventional myosins including myosin-I, V, VI and X in cellular trafficking. We approach this topic by describing a series of high-resolution structures of the neck and tail domains of these unconventional myosins either alone or in complex with their specific cargoes, and by discussing potential implications of these structural studies on cellular trafficking of these myosin motors.
非传统肌球蛋白是一类基于肌动蛋白的分子马达超家族,发挥着多种作用,包括细胞运输、机械支撑、力传感和传递等。非传统肌球蛋白可变的颈部和尾部结构域的功能是结合特定的货物,包括蛋白质和脂质囊泡,因此在很大程度上决定了肌球蛋白在体内的多种细胞功能。此外,尾部区域与其相关货物一起,可以调节马达头部的活性。本综述概述了近年来在细胞运输中几种非传统肌球蛋白(包括肌球蛋白-I、V、VI和X)的货物识别以及货物结合诱导的活性调节方面取得的进展。我们通过描述这些非传统肌球蛋白颈部和尾部结构域单独或与其特定货物形成复合物的一系列高分辨率结构,并讨论这些结构研究对这些肌球蛋白马达细胞运输的潜在影响来探讨这一主题。