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首页> 外文期刊>Journal of cellular biochemistry. >EBP50 is involved in the regulation of vascular smooth muscle cell migration and cytokinesis.
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EBP50 is involved in the regulation of vascular smooth muscle cell migration and cytokinesis.

机译:EBP50参与血管平滑肌细胞迁移和胞质分裂的调节。

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摘要

Ezrin, Radixin, Moesin binding phosphoprotein 50 (EBP50) is a scaffold protein that possesses two PDZ interacting domains. We have shown that, in isolated artery stimulated with noradrenaline, EBP50 interacts with several elements of the cytoskeleton. However, the contribution of EBP50 to the organization of the cytoskeleton is unknown. We have used primary cultured vascular smooth muscle cells to investigate the involvement of EBP50 in the regulation of cell architecture, motility and cell cycle, and to identify its target proteins and subsequent action mechanism. The results showed that depletion of EBP50 by siRNA transfection induced changes in cell architecture and increased cell migration. The same phenotype was induced by inhibition of myosin IIa and this effect was not additive in cells depleted for EBP50. Moreover, a larger proportion of binucleated cells was observed after EBP50 depletion, indicating a defect in cytokinesis. The identification, after co-immunoprecipitation, of a direct interaction of EBP50 with both tubulin and myosin IIa suggested that EBP50 could regulate cell migration and cytokinesis by linking myosin IIa fibers and microtubule network. Indeed, depletion of EBP50 also dismantled myosin IIa fibers and induced the formation of stable microtubules in lamellae expansions and Rac1 activation. This signaling cascade leads to the formation of lamellipodia, trailing tails and decrease of focal adhesion formation, triggering cell migration.
机译:Ezrin,Radixin,Moesin结合磷蛋白50(EBP50)是一种支架蛋白,具有两个PDZ相互作用域。我们已经表明,在去甲肾上腺素刺激的离体动脉中,EBP50与细胞骨架的几个元素相互作用。然而,EBP50对细胞骨架组织的贡献是未知的。我们已经使用原代培养的血管平滑肌细胞来研究EBP50在调节细胞结构,运动性和细胞周期中的作用,并确定其靶蛋白和随后的作用机制。结果表明,siRNA转染耗尽了EBP50,引起细胞结构变化并增加了细胞迁移。通过抑制肌球蛋白IIa可以诱导相同的表型,并且这种作用在EBP50耗尽的细胞中不会加成。此外,在EBP50耗尽后,观察到更大比例的双核细胞,表明胞质分裂缺陷。共免疫沉淀后,EBP50与微管蛋白和肌球蛋白IIa的直接相互作用的鉴定表明,EBP50可通过连接肌球蛋白IIa纤维和微管网络来调节细胞迁移和胞质分裂。的确,EBP50的消耗也破坏了肌球蛋白IIa纤维,并诱导了片状扩张和Rac1激活中稳定的微管形成。该信号级联导致层状脂蛋白的形成,尾巴尾和粘着斑形成的减少,从而触发细胞迁移。

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