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Motor-driven marginal band coiling promotes cell shape change during platelet activation

机译:电动机驱动的边缘带盘绕促进血小板活化过程中的细胞形状变化

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摘要

Platelets float in the blood as discoid particles. Their shape is maintained by microtubules organized in a ring structure, the so-called marginal band (MB), in the periphery of resting platelets. Platelets are activated after vessel injury and undergo a major shape change known as disc to sphere transition. It has been suggested that actomyosin tension induces the contraction of the MB to a smaller ring. In this paper, we show that antagonistic microtubule motors keep the MB in its resting state. During platelet activation, dynein slides microtubules apart, leading to MB extension rather than contraction. The MB then starts to coil, thereby inducing the spherical shape of activating platelets. Newly polymerizing microtubules within the coiled MB will then take a new path to form the smaller microtubule ring, in concerted action with actomyosin tension. These results present a new view of the platelet activation mechanism and reveal principal mechanistic features underlying cellular shape changes.
机译:血小板以盘状颗粒的形式漂浮在血液中。它们的形状通过在静止的血小板周围以环形结构(所谓的边缘带(MB))组织的微管来维持。血管损伤后,血小板被激活,并经历主要的形状变化,称为椎间盘向球体过渡。已经提出,放线菌素张力诱导MB收缩成较小的环。在本文中,我们表明拮抗性微管马达将MB保持在静止状态。在血小板激活过程中,动力蛋白使微管分开,导致MB扩展而不是收缩。然后,MB开始卷曲,从而产生活化血小板的球形。盘绕的MB内新聚合的微管随后将沿着一条新的路径形成较小的微管环,并与肌动球蛋白张力协同作用。这些结果提出了血小板活化机制的新观点,并揭示了细胞形状变化背后的主要机制特征。

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