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Kinesin-1 heavy chain mediates microtubule sliding to drive changes in cell shape

机译:Kinesin-1重链介导微管滑动以驱动细胞形状变化

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摘要

Microtubules are typically observed to buckle and loop during interphase in cultured cells by an unknown mechanism. We show that lateral microtubule movement and looping is a result of microtubules sliding against one another in interphase Drosophila S2 cells. RNAi of the kinesin-1 heavy chain (KHC), but not dynein or the kinesin-1 light chain, eliminates these movements. KHC-dependent microtubule sliding powers the formation of cellular processes filled with parallel microtubule bundles. The growth of these cellular processes is independent of the actin cytoskeleton. We further observe cytoplasmic microtubule sliding in Xenopus and Ptk2 cells, and show that antibody inhibition of KHC in mammalian cells prevents sliding. We therefore propose that, in addition to its well established role in organelle transport, an important universal function of kinesin-1 is to mediate cytoplasmic microtubule–microtubule sliding. This provides the cell with a dedicated mechanism to transport long and short microtubule filaments and drive changes in cell shape.
机译:通常通过未知的机制观察到微管在培养细胞的相间期弯曲并成环。我们显示横向微管运动和循环是在相间果蝇S2细胞中彼此相对滑动的微管的结果。驱动蛋白1重链(KHC)的RNAi消除了这些运动,但不是动力蛋白或驱动蛋白1轻链的RNAi。依赖KHC的微管滑动为形成充满平行微管束的细胞过程提供了动力。这些细胞过程的生长独立于肌动蛋白细胞骨架。我们进一步观察非洲爪蟾和Ptk2细胞中的细胞质微管滑动,并表明抗体抑制哺乳动物细胞中的KHC阻止滑动。因此,我们建议,除了在细胞器运输中已确立的作用外,kinesin-1的重要普遍功能是介导细胞质微管-微管滑动。这为细胞提供了一种专门的机制来运输长和短的微管细丝,并驱动细胞形状的变化。

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