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Fission yeast tropomyosin specifies directed transport of myosin-V along actin cables

机译:裂变酵母原肌球蛋白指定肌动蛋白-V沿肌动蛋白电缆的定向运输

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A hallmark of class-V myosins is their processivity-the ability to take multiple steps along actin filaments without dissociating. Our previous work suggested, however, that the fission yeast myosin-V (Myo52p) is a nonprocessive motor whose activity is enhanced by tropomyosin (Cdc8p). Here we investigate the molecular mechanism and physiological relevance of tropomyosin-mediated regulation of Myo52p transport, using a combination of in vitro and in vivo approaches. Single molecules of Myo52p, visualized by total internal reflection fluorescence microscopy, moved processively only when Cdc8p was present on actin filaments. Small ensembles of Myo52p bound to a quantum dot, mimicking the number of motors bound to physiological cargo, also required Cdc8p for continuous motion. Although a truncated form of Myo52p that lacked a cargo-binding domain failed to support function in vivo, it still underwent actin-dependent movement to polarized growth sites. This result suggests that truncated Myo52p lacking cargo, or single molecules of wild-type Myo52p with small cargoes, can undergo processive movement along actin-Cdc8p cables in vivo. Our findings outline a mechanism by which tropomyosin facilitates sorting of transport to specific actin tracks within the cell by switching on myosin processivity.
机译:V类肌球蛋白的标志性特征是其持续合成能力-沿肌动蛋白丝采取多个步骤而不会解离的能力。然而,我们先前的工作表明,裂变酵母肌球蛋白V(Myo52p)是一种非加工性运动,其原肌球蛋白(Cdc8p)增强了其活性。在这里,我们使用体外和体内方法相结合,研究原肌球蛋白介导的Myo52p运输调节的分子机制和生理相关性。通过全内反射荧光显微镜观察,Myo52p的单分子仅在肌动蛋白丝上存在Cdc8p时才能进行性移动。绑定到一个量子点的Myo52p的小团,模仿了绑定到生理货物上的马达的数量,也需要Cdc8p来连续运动。尽管缺少货物结合结构域的截短形式的Myo52p无法在体内支持功能,但仍经历肌动蛋白依赖性运动至极化生长位点。该结果表明,缺乏货物的截短的Myo52p,或具有小货物的野生型Myo52p的单分子,可以在体内沿肌动蛋白-Cdc8p电缆进行过程性运动。我们的发现概述了一种原肌球蛋白通过接通肌球蛋白持续合成能力促进将其转运至细胞内特定肌动蛋白径迹的机制。

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