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Cysteine-rich protein 2 alters p130Cas localization and inhibits vascular smooth muscle cell migration

机译:富含半胱氨酸的蛋白2改变p130Cas的定位并抑制血管平滑肌细胞迁移

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Aims: Cysteine-rich protein (CRP) 2, a member of the LIM-only CRP family that contains two LIM domains, is expressed in vascular smooth muscle cells (VSMCs) of blood vessels and functions to repress VSMC migration and vascular remodelling. The goal of this study was to define the molecular mechanisms by which CRP2 regulates VSMC migration. Methods and results: Transfection of VSMCs with CRP2-EGFP constructs revealed that CRP2 associated with the actin cytoskeleton. In response to chemoattractant stimulation, Csrp2 (mouse CRP2 gene symbol)-deficient (Csrp2-/-) VSMCs exhibited increased lamellipodia formation. Re-introduction of CRP2 abrogated the enhanced lamellipodia formation and migration of Csrp2-/- VSMCs following chemoattractant stimulation. Mammalian 2-hybrid and co-immunoprecipitation assays demonstrated that CRP2 interacts with p130Cas, a scaffold protein important for lamellipodia formation and cell motility. Immunofluorescence staining showed that CRP2 colocalized with phospho-p130Cas at focal adhesions (FAs)/terminal ends of stress fibres in non-migrating cells. Interestingly, in migrating cells phospho-p130Cas localized to the leading edge of lamellipodia and FAs, whereas CRP2 was restricted to FAs and stress fibres. Furthermore, we demonstrated that p130Cas expression and phosphorylation promote neointima formation following arterial injury. Conclusion: These studies demonstrate that CRP2 sequesters p130Cas at FAs, thereby reducing lamellipodia formation and blunting VSMC migration.
机译:目的:富含半胱氨酸的蛋白质(CRP)2是仅包含两个LIM域的LIM CRP家族的成员,在血管的血管平滑肌细胞(VSMC)中表达,并具有抑制VSMC迁移和血管重塑的功能。这项研究的目的是确定CRP2调节VSMC迁移的分子机制。方法和结果:用CRP2-EGFP构建体转染VSMCs显示CRP2与肌动蛋白细胞骨架有关。响应趋化性刺激,Csrp2(小鼠CRP2基因符号)缺陷(Csrp2-/-)VSMCs表现出增加的片状脂膜形成。 CRP2的重新引入消除了趋化刺激后Csrp2-/-VSMCs增强的片状脂蛋白形成和迁移。哺乳动物2杂交和共免疫沉淀试验表明CRP2与p130Cas相互作用,p130Cas是一种对lamellipodia形成和细胞运动很重要的支架蛋白。免疫荧光染色显示,CRP2与磷酸化p130Cas共定位于非迁移细胞的粘着斑(FAs)/应力纤维末端。有趣的是,在迁移细胞中,磷酸化p130Cas定位于片状脂膜和FA的前沿,而CRP2则局限于FA和应力纤维。此外,我们证明了p130Cas表达和磷酸化促进动脉损伤后新内膜的形成。结论:这些研究表明,CRP2在FA处隔离了p130Cas,从而减少了片状脂膜的形成并减弱了VSMC的迁移。

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