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首页> 外文期刊>Journal of the American Society of Nephrology: JASN >RhoA activation in mesangial cells by mechanical strain depends on caveolae and caveolin-1 interaction.
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RhoA activation in mesangial cells by mechanical strain depends on caveolae and caveolin-1 interaction.

机译:机械应力对肾小球系膜细胞的RhoA激活取决于小窝和小窝蛋白1的相互作用。

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Increased intraglomerular pressure is an important hemodynamic determinant of glomerulosclerosis and can be modeled in vitro by exposing mesangial cells to cyclic mechanical strain. A previous study showed that RhoA mediates strain-induced production of fibronectin; herein is investigated the role of caveolae in RhoA activation. Cyclodextrin and filipin, agents that disrupt caveolae, abrogated strain-induced RhoA activation in mesangial cells. Caveolin-1 (cav-1), the defining protein of caveolae, was Y14 phosphorylated by strain, and this was inhibited by PP1, showing Src dependence. Strain also induced c-SrcY416 phosphorylation and hence activation. Strain increased RhoA association with cav-1, which was blocked by PP1. Cyclodextrin and filipin inhibited the strain-induced RhoA/cav-1 association, indicating dependence on caveolar structural integrity. Restoration of caveolae by coincubation of cyclodextrin with cholesterol rescued both RhoA activation and RhoA/cav-1 association in response to strain. Sucrose gradient detected a significant portion of RhoA in caveolae, with Src located exclusively in these domains. Finally, in cells that were infected with retrovirus that encodes the nonphosphorylatable cav-1 Y14A, RhoA/cav-1 association, RhoA activation, and fibronectin secretion in response to strain were abrogated. It is concluded that strain-induced RhoA activation depends on the integrity of caveolae and on physical association of cav-1 and RhoA. The phosphorylation of cav-1 at Y14 by Src kinases is required for this to occur. These studies define a novel function for cav-1 and caveolae as positive effectors of RhoA activation. Targeting caveolae thus may provide a new therapeutic option for glomerular sclerosis that is associated with elevated intraglomerular pressure.
机译:肾小球内压升高是肾小球硬化的重要血流动力学决定因素,可以通过将肾小球膜细胞暴露于周期性机械应力下在体外进行建模。先前的研究表明,RhoA介导了菌株诱导的纤连蛋白的产生。本文研究了小窝在RhoA激活中的作用。环糊精和菲律宾蛋白,破坏小窝的药物,废除了系膜细胞中菌株诱导的RhoA活化。小窝的定义蛋白Caveolin-1(cav-1)被Y14菌株磷酸化,被PP1抑制,显示出Src依赖性。菌株还诱导了c-SrcY416的磷酸化并因此被激活。菌株增加了与cav-1的RhoA关联,cav-1被PP1阻断。环糊精和菲林抑制菌株诱导的RhoA / cav-1缔合,表明对海绵体结构完整性的依赖性。通过环糊精与胆固醇的共孵育来恢复小窝,以响应菌株恢复了RhoA活化和RhoA / cav-1缔合。蔗糖梯度检测到小窝中RhoA的大部分,其中Src仅位于这些域中。最后,在感染了编码不可磷酸化cav-1 Y14A的逆转录病毒的细胞中,消除了响应菌株的RhoA / cav-1关联,RhoA激活和纤连蛋白分泌。结论是,菌株诱导的RhoA活化取决于小窝的完整性以及cav-1和RhoA的物理结合。为此,需要Src激酶在Y14处使cav-1磷酸化。这些研究定义了cav-1和caveolae作为RhoA激活的正效应子的新功能。因此,靶向小窝可能为与肾小球内压力升高相关的肾小球硬化症提供新的治疗选择。

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