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Myosin Va maneuvers through actin intersections and diffuses along microtubules

机译:肌球蛋白Va通过肌动蛋白交叉点操纵并沿着微管扩散

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摘要

Certain types of intracellular organelle transport to the cell periphery are thought to involve long-range movement on microtubules by kinesin with subsequent handoff to vertebrate myosin Va (myoVa) for local delivery on actin tracks. This process may involve direct interactions between these two processive motors. Here we demonstrate using single molecule in vitro techniques that myoVa is flexible enough to effectively maneuver its way through actin filament intersections and Arp2/3 branches. In addition, myoVa surprisingly undergoes a one-dimensional diffusive search along microtubules, which may allow it to scan efficiently for kinesin and/or its cargo. These features of myoVa may help ensure efficient cargo delivery from the cell center to the periphery.
机译:某些类型的细胞内细胞器运输到细胞外围被认为涉及驱动蛋白在微管上的远距离运动,随后移交给脊椎动物肌球蛋白Va(myoVa),以在肌动蛋白轨道上局部递送。该过程可能涉及这两个过程电动机之间的直接相互作用。在这里,我们证明了使用单分子体外技术,myoVa具有足够的灵活性,可以有效地操纵肌动蛋白丝的交叉点和Arp2 / 3分支。此外,myoVa令人惊讶地沿微管进行一维扩散搜索,这可能使它可以有效地扫描驱动蛋白和/或其货物。 myoVa的这些功能可以帮助确保从细胞中心到外围的有效货物运输。

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