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Regulation of protrusion, adhesion dynamics, and polarity by myosins IIA and IIB in migrating cells

机译:肌球蛋白IIA和IIB在迁移细胞中对突出,粘附动力学和极性的调节

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We have used isoform-specific RNA interference knockdowns to investigate the roles of myosin IIA (MIIA) and MIIB in the component processes that drive cell migration. Both isoforms reside outside of protrusions and act at a distance to regulate cell protrusion, signaling, and maturation of nascent adhesions. MIIA also controls the dynamics and size of adhesions in central regions of the cell and contributes to retraction and adhesion disassembly at the rear. In contrast, MIIB establishes front–back polarity and centrosome, Golgi, and nuclear orientation. Using ATPase- and contraction-deficient mutants of both MIIA and MIIB, we show a role for MIIB-dependent actin cross-linking in establishing front–back polarity. From these studies, MII emerges as a master regulator and integrator of cell migration. It mediates each of the major component processes that drive migration, e.g., polarization, protrusion, adhesion assembly and turnover, polarity, signaling, and tail retraction, and it integrates spatially separated processes.
机译:我们已经使用同工型特异的RNA干扰敲低来研究肌球蛋白IIA(MIIA)和MIIB在驱动细胞迁移的组成过程中的作用。两种同工型均位于突起的外部,并在一定距离处起作用,以调节细胞的突起,信号传导和新生粘附的成熟。 MIIA还控制细胞中心区域粘连的动力学和大小,并有助于后部的收缩和粘连拆卸。相反,MIIB建立前后极性和中心体,高尔基体和核方向。使用MIIA和MIIB的ATPase和收缩缺陷突变体,我们显示了MIIB依赖的肌动蛋白交联在建立前后极性中的作用。通过这些研究,MII成为细胞迁移的主要调节剂和整合剂。它介导了驱动迁移的每个主要成分过程,例如极化,突出,粘附组装和更新,极性,信号传导和尾巴缩回,并且它整合了空间分离的过程。

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