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抑制信号传导至 Arp2/3 复合物可调控细胞迁移。

Inhibitory signalling to the Arp2/3 complex steers cell migration.

机构信息

1] Group Cytoskeleton in Cell Morphogenesis, Laboratoire d'Enzymologie et Biochimie Structurales, CNRS UPR3082, Gif-sur-Yvette 91190, France [2].

出版信息

Nature. 2013 Nov 14;503(7475):281-4. doi: 10.1038/nature12611. Epub 2013 Oct 16.

Abstract

Cell migration requires the generation of branched actin networks that power the protrusion of the plasma membrane in lamellipodia. The actin-related proteins 2 and 3 (Arp2/3) complex is the molecular machine that nucleates these branched actin networks. This machine is activated at the leading edge of migrating cells by Wiskott-Aldrich syndrome protein (WASP)-family verprolin-homologous protein (WAVE, also known as SCAR). The WAVE complex is itself directly activated by the small GTPase Rac, which induces lamellipodia. However, how cells regulate the directionality of migration is poorly understood. Here we identify a new protein, Arpin, that inhibits the Arp2/3 complex in vitro, and show that Rac signalling recruits and activates Arpin at the lamellipodial tip, like WAVE. Consistently, after depletion of the inhibitory Arpin, lamellipodia protrude faster and cells migrate faster. A major role of this inhibitory circuit, however, is to control directional persistence of migration. Indeed, Arpin depletion in both mammalian cells and Dictyostelium discoideum amoeba resulted in straighter trajectories, whereas Arpin microinjection in fish keratocytes, one of the most persistent systems of cell migration, induced these cells to turn. The coexistence of the Rac-Arpin-Arp2/3 inhibitory circuit with the Rac-WAVE-Arp2/3 activatory circuit can account for this conserved role of Arpin in steering cell migration.

摘要

细胞迁移需要生成分支状的肌动蛋白网络,为质膜在片状伪足中的突起提供动力。肌动蛋白相关蛋白 2 和 3(Arp2/3)复合物是形成这些分支状肌动蛋白网络的分子机器。该机器在迁移细胞的前缘被 Wiskott-Aldrich 综合征蛋白(WASP)家族的 verprolin 同源蛋白(WAVE,也称为 SCAR)激活。WAVE 复合物本身可被小 GTPase Rac 直接激活,后者诱导片状伪足的形成。然而,细胞如何调节迁移的方向性还知之甚少。在这里,我们鉴定了一种新的蛋白 Arpin,它在体外抑制 Arp2/3 复合物,并且表明 Rac 信号募集并激活位于片状伪足尖端的 Arpin,类似于 WAVE。一致地,在抑制性 Arpin 耗尽后,片状伪足伸出更快,细胞迁移更快。然而,这个抑制性回路的一个主要作用是控制迁移的定向持久性。事实上,在哺乳动物细胞和盘基网柄菌变形体中耗尽抑制性的 Arpin 会导致更直的轨迹,而在鱼类角膜细胞(细胞迁移最持久的系统之一)中注入 Arpin 会诱导这些细胞转向。Rac-Arpin-Arp2/3 抑制性回路与 Rac-WAVE-Arp2/3 激活性回路的共存,可以解释 Arpin 在引导细胞迁移中的这种保守作用。

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