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首页> 外文期刊>Renal failure. >Effects of caveolin-1 and P-ERK1/2 on Ang II-induced glomerular mesangial cell proliferation
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Effects of caveolin-1 and P-ERK1/2 on Ang II-induced glomerular mesangial cell proliferation

机译:Caveolin-1和P-ERK1 / 2对Ang II诱导的肾小球系膜细胞增殖的影响

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摘要

This study explored the effects of caveolin-1, p-ERK1/2 and transient receptor potential channel 6 (TRPC6) on angiotensin II (Ang II)-induced glomerular mesangial cell (GMC) proliferation, and investigated the role of Ang II on GMC proliferation. GMC cultures were divided into Control, Ang II (Ang II 10-7mol/L), PD98059 (Ang II 10-7mol/L+PD98059 5×10-5mol/L) and MβCD groups (Ang II 10 -7mol/L+MβCD 10-2mol/L). GMCs proliferation was measured by the methyl thiazolil tetracolium and trypan blue assays. The distribution of caveolin-1, p-ERK1/2 and TRPC6 was monitored by immunocytochemistry. Real time polymerase chain reaction (PCR) was used to assess mRNA expression of caveolin-1 and TRPC6. Western blot analysis was used to assess protein expression of caveolin-1, p-ERK1/2 and TRPC6. The results showed that Ang II promoted GMC proliferation. PD98059 and MβCD blocked Ang II-induced GMC proliferation, by 31.06% and 48.96%, respectively. In comparison with the control group, the expression of p-ERK1/2 and TRPC6 was significantly higher and caveolin-1 expression was significantly lower in the Ang II group. PD98059 markedly decreased p-ERK1/2 and TRPC6 expression and increased caveolin-1 expression. MβCD decreased the expression of p-ERK1/2 and TRPC6, but had no significant effect on caveolin-1 protein expression. These findings suggested that the intact caveolae structure was associated with Ang II-induced GMC proliferation, ERK1/2 activation and TRPC6 expression. And p-ERK1/2 acted as an upstream signal molecule for TRPC6. Moreover, p-ERK1/2 and caveolin-1 appeared to be inhibited reciprocally, thus regulated GMC proliferation by regulating TRPC6 expression.
机译:这项研究探讨了Caveolin-1,p-ERK1 / 2和瞬时受体电位通道6(TRPC6)对血管紧张素II(Ang II)诱导的肾小球系膜细胞(GMC)增殖的影响,并研究了Ang II对GMC的作用增殖。 GMC培养分为对照组,Ang II(Ang II 10-7mol / L),PD98059(Ang II 10-7mol / L + PD98059 5×10-5mol / L)和MβCD组(Ang II 10 -7mol / L + MβCD10-2mol / L)。通过甲基噻唑四醇和锥虫蓝测定法测量了GMC的增殖。通过免疫细胞化学监测caveolin-1,p-ERK1 / 2和TRPC6的分布。实时聚合酶链反应(PCR)用于评估小窝蛋白1和TRPC6的mRNA表达。 Western印迹分析用于评估caveolin-1,p-ERK1 / 2和TRPC6的蛋白表达。结果表明Ang II促进了GMC的增殖。 PD98059和MβCD分别阻止Ang II诱导的GMC增殖31.06%和48.96%。与对照组相比,Ang II组中p-ERK1 / 2和TRPC6的表达明显较高,而Caveolin-1的表达则明显较低。 PD98059显着降低p-ERK1 / 2和TRPC6表达,并增加小窝蛋白1表达。 MβCD降低p-ERK1 / 2和TRPC6的表达,但对caveolin-1蛋白表达无明显影响。这些发现表明完整的小窝结构与Ang II诱导的GMC增殖,ERK1 / 2激活和TRPC6表达有关。 p-ERK1 / 2作为TRPC6的上游信号分子。此外,p-ERK1 / 2和小窝蛋白1似乎相互抑制,从而通过调节TRPC6的表达来调节GMC的增殖。

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