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首页> 外文期刊>Arteriosclerosis, thrombosis, and vascular biology >The proteoglycan syndecan 4 regulates transient receptor potential canonical 6 channels via RhoA/Rho-associated protein kinase signaling.
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The proteoglycan syndecan 4 regulates transient receptor potential canonical 6 channels via RhoA/Rho-associated protein kinase signaling.

机译:蛋白聚糖syndecan 4通过RhoA / Rho相关的蛋白激酶信号传导调节瞬时受体电位经典6通道。

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OBJECTIVE: Syndecan 4 (Sdc4) modulates signal transduction and regulates activity of protein channels. Sdc4 is essential for the regulation of cellular permeability. We hypothesized that Sdc4 may regulate transient receptor potential canonical 6 (TRPC6) channels, a determinant of glomerular permeability, in a RhoA/Rho-associated protein kinase-dependent manner. METHODS AND RESULTS: Sdc4 knockout (Sdc4(-/-)) mice showed increased glomerular filtration rate and ameliorated albuminuria under baseline conditions and after bovine serum albumin overload (each P<0.05). Using reverse transcription-polymerase chain reaction and immunoblotting, Sdc4(-/-) mice showed reduced TRPC6 mRNA by 79% and TRPC6 protein by 82% (each P<0.05). Sdc4(-/-) mice showed an increased RhoA activity by 87% and increased phosphorylation of ezrin in glomeruli by 48% (each P<0.05). Sdc4 knockdown in cultured podocytes reduced TRPC6 gene expression and reduced the association of TRPC6 with plasma membrane and TRPC6-mediated calcium influx and currents. Sdc4 knockdown inactivated negative regulatory protein Rho GTPase activating protein by 33%, accompanied by a 41% increase in RhoA activity and increased phosphorylation of ezrin (P<0.05). Conversely, overexpression of Sdc4 reduced RhoA activity and increased TRPC6 protein and TRPC6-mediated calcium influx and currents. CONCLUSIONS: Our results establish a previously unknown function of Sdc4 for regulation of TRPC6 channels and support the role of Sdc4 for the regulation of glomerular permeability.
机译:目的:Syndecan 4(Sdc4)调节信号转导并调节蛋白通道的活性。 Sdc4对于调节细胞渗透性至关重要。我们假设Sdc4可能以RhoA / Rho相关蛋白激酶依赖的方式调节瞬时受体电位规范6(TRPC6)通道,肾小球通透性的决定因素。方法和结果:在基线条件下和牛血清白蛋白超负荷后,Sdc4基因敲除(Sdc4(-/-))小鼠显示出肾小球滤过率增加和白蛋白尿改善(每组P <0.05)。使用逆转录-聚合酶链反应和免疫印迹,Sdc4(-/-)小鼠显示出TRPC6 mRNA降低了79%,TRPC6蛋白降低了82%(每组P <0.05)。 Sdc4(-/-)小鼠显示RhoA活性增加了87%,肾小球中ezrin的磷酸化增加了48%(每个P <0.05)。培养的足细胞中的Sdc4敲低降低了TRPC6基因的表达,并减少了TRPC6与质膜的结合以及TRPC6介导的钙内流和电流。 Sdc4敲低使负调节蛋白Rho GTPase活化蛋白降低了33%,RhoA活性提高了41%,ezrin的磷酸化提高了(P <0.05)。相反,Sdc4的过表达降低RhoA活性,增加TRPC6蛋白和TRPC6介导的钙内流和电流。结论:我们的结果建立了Sdc4以前对TRPC6通道调节的未知功能,并支持Sdc4在调节肾小球通透性中的作用。

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