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来自果蝇的肌球蛋白V揭示了肌球蛋白V家族中运动机制的多样性。

Myosin V from Drosophila reveals diversity of motor mechanisms within the myosin V family.

作者信息

Tóth Judit, Kovács Mihály, Wang Fei, Nyitray László, Sellers James R

机构信息

Laboratory of Molecular Physiology, NHLBI, National Institutes of Health, Bethesda, Maryland 20892-1762, USA.

出版信息

J Biol Chem. 2005 Aug 26;280(34):30594-603. doi: 10.1074/jbc.M505209200. Epub 2005 Jun 26.

Abstract

Myosin V is the best characterized vesicle transporter in vertebrates, but it has been unknown as to whether all members of the myosin V family share a common, evolutionarily conserved mechanism of action. Here we show that myosin V from Drosophila has a strikingly different motor mechanism from that of vertebrate myosin Va, and it is a nonprocessive, ensemble motor. Our steady-state and transient kinetic measurements on single-headed constructs reveal that a single Drosophila myosin V molecule spends most of its mechanochemical cycle time detached from actin, therefore it has to function in processive units that comprise several molecules. Accordingly, in in vitro motility assays, double-headed Drosophila myosin V requires high surface concentrations to exhibit a continuous translocation of actin filaments. Our comparison between vertebrate and fly myosin V demonstrates that the well preserved function of myosin V motors in cytoplasmic transport can be accomplished by markedly different underlying mechanisms.

摘要

肌球蛋白V是脊椎动物中特征最明确的囊泡转运蛋白,但肌球蛋白V家族的所有成员是否共享一种共同的、进化上保守的作用机制尚不清楚。在这里,我们表明果蝇的肌球蛋白V与脊椎动物的肌球蛋白Va具有显著不同的运动机制,并且它是一种非持续性的整体运动蛋白。我们对单头构建体的稳态和瞬态动力学测量表明,单个果蝇肌球蛋白V分子在其大部分机械化学循环时间内与肌动蛋白分离,因此它必须以由几个分子组成的持续性单元发挥作用。相应地,在体外运动分析中,双头果蝇肌球蛋白V需要高表面浓度才能表现出肌动蛋白丝的连续转运。我们对脊椎动物和果蝇肌球蛋白V的比较表明,肌球蛋白V马达在细胞质运输中保存良好的功能可以通过明显不同的潜在机制来实现。

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