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首页> 外文期刊>American Journal of Physiology >A potential role for caveolin-1 in VEGF-induced fibronectin upregulation in mesangial cells: Involvement of VEGFR2 and Src
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A potential role for caveolin-1 in VEGF-induced fibronectin upregulation in mesangial cells: Involvement of VEGFR2 and Src

机译:小窝蛋白1在肾小球系膜细胞中VEGF诱导的纤连蛋白上调中的潜在作用:VEGFR2和Src的参与

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VEGF is known to be an endothelial cell mitogen that stimulates angiogenesis by promoting endothelial cell survival, proliferation, migration, and differentiation. Recent studies have suggested that VEGF may play a pivotal role in glomerular sclerosis through extracellular matrix protein (ECM) accumulation, although the signaling mechanism is still unclear. The GTPase RhoA has been implicated in VEGF-induced type IV collagen accumulation in some settings. Here we study the role of different VEGF receptors and membrane mi-crodomain caveolae in VEGF-induced RhoA activation and fibronec-tin upregulation in mesangial cells (MCs). In primary rat MC, VEGF time and dose dependently increased fibronectin production. Rho pathway inhibition blocked VEGF-induced fibronectin upregulation. VEGF-induced RhoA activation was prevented by disrupting cave-olae with cholesterol depletion and rescued by cholesterol repletion. VEGF stimulation led to a markedly increased VEGFR2/caveolin-1 but failed to increase VEGFR1/caveolin-1 association. VEGF also increased caveolin-1/Src association and activated Src, and Src inhibitor blocked RhoA activation and fibronectin upregulation. Src-mediated phosphorylation of caveolin-1 on Y14 has also been implicated in signaling responses. Overexpression of nonphosphorylatable caveolin-1 Y14A prevented VEGF-induced RhoA activation and fibronectin upregulation. In vivo, although VEGFR1 and VEGFR2 protein levels were both increased in the kidney cortices of diabetic rats, VEGFR2/caveolin-1 association but not VEGFR1/caveolin-1 association was significantly increased. In conclusion, VEGF-induced RhoA activation and fibronectin upregulation require caveolae and caveolin-1 interaction with VEGFR2 and Src. Interference with caveolin/-ae signaling may provide new avenues for the treatment of fibrotic renal disease.
机译:已知VEGF是内皮细胞促分裂原,其通过促进内皮细胞存活,增殖,迁移和分化来刺激血管生成。最近的研究表明,VEGF可能通过细胞外基质蛋白(ECM)积累在肾小球硬化中起关键作用,尽管其信号传导机制仍不清楚。在某些情况下,GTPase RhoA与VEGF诱导的IV型胶原蓄积有关。在这里,我们研究了不同的VEGF受体和膜微crocrodomain小窝在VEGF诱导的系膜细胞(MCs)中的RhoA激活和纤维蛋白原上调中的作用。在原代大鼠MC中,VEGF时间和剂量依赖性地增加纤连蛋白的产生。 Rho途径抑制阻止VEGF诱导的纤连蛋白上调。 VEGF诱导的RhoA活化可通过破坏胆固醇消耗来阻止卵泡,并通过胆固醇补充来挽救。 VEGF刺激导致VEGFR2 / caveolin-1明显增加,但未能增加VEGFR1 / caveolin-1缔合。 VEGF还增加了Caveolin-1 / Src缔合并激活了Src,Src抑制剂阻止了RhoA激活和纤连蛋白上调。 Y14上的小孔蛋白1的Src介导的磷酸化也与信号反应有关。不可磷酸化的caveolin-1 Y14A的过表达阻止了VEGF诱导的RhoA激活和纤连蛋白上调。在体内,尽管糖尿病大鼠肾脏皮质中的VEGFR1和VEGFR2蛋白水平均升高,但VEGFR2 / caveolin-1缔合却没有明显升高,而VEGFR1 / caveolin-1缔合却显着增加。总之,VEGF诱导的RhoA激活和纤连蛋白上调需要小窝和小窝蛋白1与VEGFR2和Src相互作用。干扰caveolin / -ae信号可能为纤维化性肾脏疾病的治疗提供新的途径。

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