首页> 外文期刊>Journal of Cell Science >Membrane targeting of WAVE2 is not sufficient for WAVE2-dependent actin polymerization: a role for IRSp53 in mediating the interaction between Rac and WAVE2
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Membrane targeting of WAVE2 is not sufficient for WAVE2-dependent actin polymerization: a role for IRSp53 in mediating the interaction between Rac and WAVE2

机译:WAVE2的膜靶向不足以依赖WAVE2的肌动蛋白聚合:IRSp53在介导Rac和WAVE2之间的相互作用中的作用

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Wiskott-Aldrich syndrome protein (WASP)-family verprolin homologous ( WAVE) proteins play a major role in Rac-induced actin dynamics, but Rac does not bind directly to WAVE proteins. It has been proposed that either the insulin receptor substrate protein 53 (IRSp53) or a complex of proteins containing Abelson interactor protein 1 (Abi1) mediates the interaction of WAVE2 and Rac. Depletion of endogenous IRSp53 by RNA-mediated interference (RNAi) in a RAW/LR5 macrophage cell line resulted in a significant reduction of Rac1Q61L-induced surface ruffles and colony-stimulating factor 1 (CSF-1)-induced actin polymerization, protrusion and cell migration. However, IRSp53 was not essential for Fc gamma-R-mediated phagocytosis, formation of podosomes or for formation of Cdc42V12-induced filopodia. IRSp53 was found to be present in an immunoprecipitable complex with WAVE2 and Abi1 in a Rac1-activation-dependent manner in RAW/LR5 cells in vivo. Importantly, reduction of endogenous IRSp53 or expression of IRSp53 lacking the WAVE2-binding site (IRSp53 Delta SH3) resulted in a significant reduction in the association of Rac1 with WAVE2 and Abi1, indicating that the association of Rac1 with WAVE2 and Abi1 is IRSp53 dependent. While it has been proposed that WAVE2 activity is regulated by membrane recruitment, membrane targeting of WAVE2 in RAW/LR5 and Cos-7 cells did not induce actin polymerization or protrusion, suggesting that membrane recruitment was insufficient for regulation of WAVE2. Combined, these data suggest that IRSp53 links Rac1 to WAVE2 in vivo and its function is crucial for production of CSF-1-induced F-actin-rich protrusions and cell migration in macrophages. This study indicates that Rac1, along with IRSp53 and Abi1, is involved in a more complex and tight regulation of WAVE2 than one operating solely through membrane localization.
机译:Wiskott-Aldrich综合征蛋白(WASP)-家族Verprolin同源蛋白(WAVE)在Rac诱导的肌动蛋白动力学中起主要作用,但Rac不能直接与WAVE蛋白结合。已经提出,胰岛素受体底物蛋白53(IRSp53)或包含Abelson相互作用蛋白1(Abi1)的蛋白复合物介导WAVE2和Rac的相互作用。 RAW / LR5巨噬细胞系中RNA介导的干扰(RNAi)消耗内源IRSp53,导致Rac1Q61L诱导的表面皱纹和集落刺激因子1(CSF-1)诱导的肌动蛋白聚合,突起和细胞大量减少移民。但是,IRSp53对于Fcγ-R介导的吞噬作用,足小体的形成或Cdc42V12诱导的丝状伪足的形成不是必需的。发现IRSp53在体内与RAW / LR5细胞中以Rac1激活依赖性方式与WAVE2和Abi1形成可免疫沉淀的复合物。重要的是,内源性IRSp53的减少或缺少WAVE2结合位点(IRSp53 Delta SH3)的IRSp53的表达导致Rac1与WAVE2和Abi1的缔合显着减少,这表明Rac1与WAVE2和Abi1的缔合是IRSp53依赖性的。尽管已经提出了WAVE2活性是通过膜募集来调节的,但是在RAW / LR5和Cos-7细胞中WAVE2的膜靶向并没有诱导肌动蛋白聚合或突起,这表明膜募集不足以调节WAVE2。综合来看,这些数据表明IRSp53在体内将Rac1与WAVE2连接起来,其功能对于CSF-1诱导的富含F-肌动蛋白的突起的产生以及巨噬细胞的细胞迁移至关重要。这项研究表明,Rac1与IRSp53和Abi1一起参与的WAVE2调控要比仅通过膜定位的操作更为复杂和严格。

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