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Inhibition of TRPC6 Signal Pathway Alleviates Podocyte Injury Induced by TGF-?21

机译:抑制TRPC6信号通路可减轻TGF-β21引起的足细胞损伤

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>Background/Aims: Transforming growth factor beta 1 (TGF-?21) plays a critical role in the pathogenesis of glomerulosclerosis. The purpose of this study was to examine the effects of inhibition of transient receptor potential cation channel C6 (TRPC6) on podocyte injury induced by TGF-?21 via nephrin and desmin mechanisms. Methods: A rat model of nephropathy was first induced by intravenous injections of adriamycin to determine TRPC6 signal pathway engaged in glomerulosclerosis in vivo. Conditionally immortalized podocytes were cultured in vitro and they were divided into four groups: control; TGF-?21 treatment; TGF-?21 with TRPC6 knockdown and TGF-?21 without TRPC6 knockdown. Real time RT-PCR and Western blot analysis were employed to determine the mRNA and protein of expression of nephrin, desmin and caspase-9, respectively. Flow cytometry was used to examine the apoptotic rate of podocytes and DAPI fluorescent staining was used to determine apoptotic morphology. Results: In vivo experiment, adriamycin significantly upregulated the protein expression of TGF-?21, TRPC6, desmin and caspase-9, and decreased nephrin. Consistent with the latter results, in vitro experiment mRNA and protein expression of desmin and caspase-9 was increased in cultured TGF-?21-treated podocytes, whereas nephrin was declined as compared with the control group. Importantly, TRPC6 knockdown significantly attenuated the upregulated desmin and caspase-9, and alleviated impairment of nephrin induced by TGF-?21. Moreover, typical morphologic features were presented in apoptotic podocytes. The number of apoptotic podocytes was increased after exposure to TGF-?21 and this was alleviated after TRPC6 knockdown. TRPC6 knockdown also decreased an apoptosis rate of TGF-?21-treated podocytes. Note that negative TRPC6 transfection control failed to alter an increase of the apoptosis rate in TGF-?21-treated podocytes. Conclusions: TGF-?21 induced by glomerulosclerosis impairs the protein expression of nephrin and amplifies the protein expression of desmin and caspase -9 via TRPC6 signal pathway. Inhibition of TRPC6 alleviates these changes in podocytes-treated with TGF-?21 and attenuated apoptosis of podocytes. Our data suggest that TRPC6 signal plays an important role in mediating TGF-?21-induced podocyte injury via nephrin, desmin and caspase-9. Results of the current study also indicate that blocking TRPC6 signal pathway has a protective effect on podocyte injury. Targeting one or more of these signaling molecules may present new opportunities for treatment and management of podocyte injury observed in glomerulosclerosis.
机译:> 背景/目标: 转化生长因子β1(TGF-β21)在肾小球硬化的发病机理中起着至关重要的作用。本研究的目的是通过肾素和结蛋白机制研究抑制瞬时受体电位阳离子通道C6(TRPC6)对TGF-β21诱导的足细胞损伤的影响。 方法: 首先通过静脉注射阿霉素诱导肾病大鼠模型,以确定其在体内参与肾小球硬化的TRPC6信号通路。有条件地使永生化的足细胞进行体外培养,并将其分为四组:对照组;对照组;和对照组。 TGF-β21治疗;带有TRPC6组合的TGF-β21和没有TRPC6组合的TGF-β21。实时RT-PCR和蛋白质印迹分析分别用于确定nephrin,desmin和caspase-9的mRNA和表达蛋白。流式细胞仪用于检查足细胞的凋亡率,DAPI荧光染色用于确定细胞凋亡的形态。 结果: 体内实验中,阿霉素显着上调了TGF-β21,TRPC6,结蛋白和半胱天冬酶9的蛋白表达,并降低了肾素。与后者的结果一致,在体外实验中,培养的经TGF-β21处理的足细胞中desmin和caspase-9的mRNA和蛋白表达增加,而与对照组相比,nephrin下降。重要的是,TRPC6的敲低显着减弱了desmin和caspase-9的上调,并减轻了TGF-β21诱导的肾素的损伤。此外,在凋亡的足细胞中表现出典型的形态学特征。暴露于TGF-β21后,凋亡足细胞的数量增加,而TRPC6敲低后,凋亡足细胞的数量减少。 TRPC6敲低还降低了TGF-β21处理的足细胞的凋亡率。注意,阴性TRPC6转染对照不能改变TGF-β21处理的足细胞凋亡率的增加。 结论: 肾小球硬化症诱导的TGF-β21通过TRPC6信号通路削弱了nephrin的蛋白表达,并增强了desmin和caspase -9的蛋白表达。抑制TRPC6减轻了用TGF-β21处理的足细胞的这些变化,并减弱了足细胞的凋亡。我们的数据表明,TRPC6信号在通过肾素,结蛋白和半胱天冬酶9介导TGF-β21诱导的足细胞损伤中起重要作用。目前的研究结果还表明,阻断TRPC6信号通路对足细胞损伤具有保护作用。靶向这些信号分子中的一个或多个可能为治疗和管理肾小球硬化中观察到的足细胞损伤提供新的机会。

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