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Unconventional myosin traffic in cells reveals a selective actin cytoskeleton

机译:细胞中非常规的肌球蛋白运输揭示了选择性肌动蛋白的细胞骨架

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Eukaryotic cells have a self-organizing cytoskeleton where motors transport cargoes along cytoskeletal tracks. To understand the sorting process, we developed a system to observe single-molecule motility in a cellular context. We followed myosin classes V, VI, and X on triton-extracted actin cytoskeletons from Drosophila S2, mammalian COS-7, and mammalian U2OS cells. We find that these cells vary considerably in their global traffic patterns. The S2 and U2OS cells have regions of actin that either enhance or inhibit specific myosin classes. U2OS cells allow for 1 motor class, myosin VI, to move along stress fiber bundles, while motility of myosin V and X are suppressed. Myosin X motors are recruited to filopodia and the lamellar edge in S2 cells, whereas myosin VI motility is excluded from the same regions. Furthermore, we also see different velocities of myosin V motors in central regions of S2 cells, suggesting regional control of motor motility by the actin cytoskeleton. We also find unexpected features of the actin cytoskeletal network, including a population of reversed filaments with the barbed-end toward the cell center. This myosin motor regulation demonstrates that native actin cytoskeletons are more than just a collection of filaments.
机译:真核细胞具有自组织的细胞骨架,其中马达沿着细胞骨架轨道运输货物。为了了解分类过程,我们开发了一种在细胞环境中观察单分子运动性的系统。我们在果蝇S2,哺乳动物COS-7和哺乳动物U2OS细胞的tri核提取的肌动蛋白细胞骨架上遵循了肌球蛋白V,VI和X类。我们发现这些小区的全球流量模式差异很大。 S2和U2OS细胞的肌动蛋白区域可以增强或抑制特定的肌球蛋白类别。 U2OS细胞允许一种运动类别的肌球蛋白VI沿着应力纤维束移动,而肌球蛋白V和X的运动性受到抑制。肌球蛋白X马达被募集到丝状伪足和S2细胞的片状边缘,而肌球蛋白VI的运动被排除在同一区域之外。此外,我们还在S2细胞的中央区域看到了肌球蛋白V马达的不同速度,这表明肌动蛋白细胞骨架对马达运动的区域控制。我们还发现肌动蛋白细胞骨架网络的意外特征,包括一群倒刺的细丝,其带刺的末端朝向细胞中心。该肌球蛋白运动调节证明天然肌动蛋白细胞骨架不仅仅是细丝的集合。

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