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Rac GTPase 与 WAVE 调节复合物的独特相互作用位点在体内具有非冗余的功能。

Distinct Interaction Sites of Rac GTPase with WAVE Regulatory Complex Have Non-redundant Functions in Vivo.

机构信息

Division of Molecular Cell Biology, Zoological Institute, Technische Universität Braunschweig, Spielmannstrasse 7, 38106 Braunschweig, Germany; Cell Biology, Helmholtz Centre for Infection Research, Inhoffenstrasse 7, 38124 Braunschweig, Germany.

CRUK Beatson Institute, Switchback Road, Glasgow G61 1BD, UK; University of Glasgow Institute of Cancer Sciences, Switchback Road, Glasgow G61 1BD, UK.

出版信息

Curr Biol. 2018 Nov 19;28(22):3674-3684.e6. doi: 10.1016/j.cub.2018.10.002. Epub 2018 Nov 1.

Abstract

Cell migration often involves the formation of sheet-like lamellipodia generated by branched actin filaments. The branches are initiated when Arp2/3 complex [1] is activated by WAVE regulatory complex (WRC) downstream of small GTPases of the Rac family [2]. Recent structural studies defined two independent Rac binding sites on WRC within the Sra-1/PIR121 subunit of the pentameric WRC [3, 4], but the functions of these sites in vivo have remained unknown. Here we dissect the mechanism of WRC activation and the in vivo relevance of distinct Rac binding sites on Sra-1, using CRISPR/Cas9-mediated gene disruption of Sra-1 and its paralog PIR121 in murine B16-F1 cells combined with Sra-1 mutant rescue. We show that the A site, positioned adjacent to the binding region of WAVE-WCA mediating actin and Arp2/3 complex binding, is the main site for allosteric activation of WRC. In contrast, the D site toward the C terminus is dispensable for WRC activation but required for optimal lamellipodium morphology and function. These results were confirmed in evolutionarily distant Dictyostelium cells. Moreover, the phenotype seen in D site mutants was recapitulated in Rac1 E31 and F37 mutants; we conclude these residues are important for Rac-D site interaction. Finally, constitutively activated WRC was able to induce lamellipodia even after both Rac interaction sites were lost, showing that Rac interaction is not essential for membrane recruitment. Our data establish that physical interaction with Rac is required for WRC activation, in particular through the A site, but is not mandatory for WRC accumulation in the lamellipodium.

摘要

细胞迁移通常涉及由分支肌动蛋白丝生成的片状片状伪足的形成。当 Arp2/3 复合物[1]被 Rac 家族的小 GTPase 下游的 WAVE 调节复合物(WRC)激活时,分支就会开始[2]。最近的结构研究在五聚体 WRC 的 Sra-1/PIR121 亚基内定义了 WRC 上两个独立的 Rac 结合位点[3,4],但这些位点在体内的功能仍然未知。在这里,我们使用 CRISPR/Cas9 介导的 Sra-1 和其同源物 PIR121 在小鼠 B16-F1 细胞中的基因敲除,结合 Sra-1 突变体拯救,剖析 WRC 激活的机制以及 Sra-1 上不同 Rac 结合位点的体内相关性。我们表明,位于与介导肌动蛋白和 Arp2/3 复合物结合的 WAVE-WCA 结合区域相邻的 A 位点是 WRC 变构激活的主要位点。相比之下,朝向 C 末端的 D 位点对于 WRC 激活不是必需的,但对于片状伪足的最佳形态和功能是必需的。这些结果在进化上遥远的 Dictyostelium 细胞中得到了证实。此外,在 D 位点突变体中观察到的表型在 Rac1 E31 和 F37 突变体中得到了重现;我们得出结论,这些残基对于 Rac-D 位点相互作用很重要。最后,即使失去了两个 Rac 相互作用位点,组成型激活的 WRC 也能够诱导片状伪足,这表明 Rac 相互作用对于膜募集不是必需的。我们的数据表明,与 Rac 的物理相互作用对于 WRC 的激活是必需的,特别是通过 A 位点,但对于 WRC 在片状伪足中的积累不是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/601a/6264382/7b1dbb966bee/fx1.jpg

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