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首页> 外文期刊>Molecular biology of the cell >CLASP Modulates Microtubule-Cortex Interaction during Self-Organization of Acentrosomal Microtubules
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CLASP Modulates Microtubule-Cortex Interaction during Self-Organization of Acentrosomal Microtubules

机译:CLASP调节人机体微管的自组织过程中的微管-皮层相互作用。

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摘要

CLASP proteins associate with either the plus ends or sidewalls of microtubules depending on the subcellular location and cell type. In plant cells, CLASP's distribution along the full length of microtubules corresponds with the uniform anchorage of microtubules to the cell cortex. Using live cell imaging, we show here that loss of CLASP in Arabidopsis thaliana results in partial detachment of microtubules from the cortex. The detached portions undergo extensive waving, distortion, and changes in orientation, particularly when exposed to the forces of cytoplasmic streaming. These deviations from the normal linear polymerization trajectories increase the likelihood of intermicrotubule encounters that are favorable for subsequent bundle formation. Consistent with this, cortical microtubules in clasp-1 leaf epidermal cells are hyper-parallel. On the basis of these data, we identify a novel mechanism where modulation of CLASP activity governs microtubule-cortex attachment, thereby contributing to self-organization of cortical microtubules.
机译:根据亚细胞的位置和细胞类型,CLASP蛋白与微管的正端或侧壁缔合。在植物细胞中,CLASP沿微管全长分布与微管均匀锚定到细胞皮层相对应。使用活细胞成像,我们在这里显示了拟南芥中CLASP的丧失导致皮层微管的部分脱离。分离的部分经历广泛的波动,扭曲和方向改变,特别是当暴露于细胞质流的力时。与正常线性聚合轨迹的这些偏离增加了微管间相遇的可能性,这对随后的束形成是有利的。与此相一致,clasp-1叶表皮细胞中的皮质微管是超平行的。在这些数据的基础上,我们确定了一种新的机制,其中CLASP活性的调节控制着微管-皮质的附着,从而促进了皮层微管的自组织。

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