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Rac1 links leading edge and uropod events through Rho and myosin activation during chemotaxis

机译:Rac1通过趋化过程中的Rho和肌球蛋白激活将前沿事件和uropod事件联系起来

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摘要

Chemotactic responsiveness is crucial to neutrophil recruitment to sites of infection. During chemotaxis, highly divergent cytoskeletal programs are executed at the leading and trailing edge of motile neutrophils. The Rho family of small GTPases plays a critical role in cell migration, and recent work has focused on elucidating the specific roles played by Rac1, Rac2, Cdc42, and Rho during cellular chemotaxis. Rac GTPases regulate actin polymerization and extension of the leading edge, whereas Rho GTPases control myosin-based contraction of the trailing edge. Rac and Rho signaling are thought to crosstalk with one another, and previous research has focused on mutual inhibition of Rac and Rho signaling during chemotaxis. Indeed, polarization of neutrophils has been proposed to involve the activity of a negative feedback system where Rac activation at the front of the cell inhibits local Rho activation, and vice versa. Using primary human neutrophils and neutrophils derived from a Rac1/Rac2-null transgenic mouse model, we demonstrate here that Rac1 (and not Rac2) is essential for Rho and myosin activation at the trailing edge to regulate uropod function. We conclude that Rac plays both positive and negative roles in the organization of the Rhomyosin “backness” program, thereby promoting stable polarity in chemotaxing neutrophils.
机译:趋化反应性对于中性粒细胞募集到感染部位至关重要。在趋化过程中,在活动性中性粒细胞的前缘和后缘执行高度不同的细胞骨架程序。小GTP酶的Rho家族在细胞迁移中起着关键作用,最近的工作集中于阐明Rac1,Rac2,Cdc42和Rho在细胞趋化过程中的特定作用。 Rac GTPases调节肌动蛋白的聚合和前缘的延伸,而Rho GTPases则控制基于肌球蛋白的后缘的收缩。 Rac和Rho信号被认为是相互干扰的,以前的研究集中在趋化过程中Rac和Rho信号的相互抑制。实际上,已经提出嗜中性粒细胞的极化涉及负反馈系统的活性,其中细胞前部的Rac激活抑制了局部Rho激活,反之亦然。使用原发性人类嗜中性粒细胞和源自Rac1 / Rac2-null转基因小鼠模型的嗜中性粒细胞,我们在这里证明Rac1(而不是Rac2)对于Rho和肌球蛋白的激活在尾缘调节uropod功能至关重要。我们得出的结论是,Rac在Rhoomyosin“后备”程序的组织中同时发挥积极作用和消极作用,从而促进了趋化性嗜中性粒细胞的稳定极性。

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