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首页> 外文期刊>Biochemistry >Regulation of Actin Polymerization and Adhesion-Dependent Cell Edge Protrusion by the Abl-Related Gene (Arg) Tyrosine Kinase and N-WASP
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Regulation of Actin Polymerization and Adhesion-Dependent Cell Edge Protrusion by the Abl-Related Gene (Arg) Tyrosine Kinase and N-WASP

机译:ABL相关基因(Arg)酪氨酸激酶和N-WASP的肌动蛋白聚合和粘附依赖性细胞边缘突出的调节

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Extracellular cues stimulate the Abl fam ily nonreceptor tyrosine kinase Arg to promote actinbased cell edge protrusions. Several Arg-interacting proteins are potential links to the actin cytoskeleton, but exactly how Arg stimulates actin polymerization and cellular protrusion has not yet been fully elucidated. We used affinity purification to identify N-WASp as a novel binding partner of Arg. N-WASP activates the Arp2, 3 complex and is an effector of Abl. We find that the Arg SH3 domain binds directly to N-WASp. Arg phosphorylates N-WASp on Y256, modestly increasing the affinity of Arg for N-WASp, an interaction that does not require the Arg SH2 domain. The Arg SH3 domain stimulates N-WASp-dependent actin polymerization in vitro, and Arg phosphorylation of N-WASp weakly stimulates this effect. Arg and N-WASp colocalize to adhesion-dependent cell edge protrusions in vivo. The cell edge protrusion defects of arg-, - fibroblasts can be complemented by re-expression of an Arg-yellow fluorescent protein (YFP) fusion. but not by an N-WASp binding-deficient Arg SH3 domain point mutant. These results suggest that Arg promotes actin-based protrusions in response to extracellular stimuli through phosphorylation of and physical interactions with N-WASp.
机译:细胞外提示刺激ABL FAM ILLY NORERECETOVER酪氨酸激酶ARG以促进肌导管的细胞边缘突起。几种arg-相互作用的蛋白质是与肌动蛋白细胞骨架的潜在链接,但是迄今尚未完全阐明Arc刺激肌动蛋白聚合和细胞突出的潜在链接。我们使用亲和力纯化来鉴定N-WASP作为arg的新型结合伴。 N-WASP激活ARP2,3个复合物,是ABL的效应器。我们发现arg sh3域直接绑定到n-wasp。 Arg磷酸化N-WASP在Y256上,适度增加ARG的N-WASP的亲和力,其相互作用不需要ARG SH2结构域。 ARG SH3结构域在体外刺激N-WASP依赖性肌动蛋白聚合,N-WASP的ARG磷酸化弱刺激了这种效果。 Arg和N-WASP将体内粘附依赖性细胞边缘突起分开。通过再表达arg-黄色荧光蛋白(YFP)融合,可以互补曲率的细胞边缘突出缺陷。但不是由N-WA-WASP结合缺陷型ARC SH3域点突变体。这些结果表明,Arg促进基于肌动蛋白的突起,响应于细胞外刺激通过与N-WA-WASP的磷酸化和物理相互作用。

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