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Curcumin Inhibits Transforming Growth Factor-β1-Induced EMT via PPARγ Pathway Not Smad Pathway in Renal Tubular Epithelial Cells

机译:姜黄素通过肾小管上皮细胞中的PPARγ途径而不是Smad途径抑制转化生长因子-β1诱导的EMT

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摘要

Tubulointerstitial fibrosis (TIF) is the final common pathway in the end-stage renal disease. Epithelial-to-mesenchymal transition (EMT) is considered a major contributor to the TIF by increasing the number of myofibroblasts. Curcumin, a polyphenolic compound derived from rhizomes of Curcuma, has been shown to possess potent anti-fibrotic properties but the mechanism remains elusive. We found that curcumin inhibited the EMT as assessed by reduced expression of α-SMA and PAI-1, and increased E-cadherin in TGF-β1 treated proximal tubular epithelial cell HK-2 cells. Both of the conventional TGF-β1/Smad pathway and non-Smad pathway were investigated. Curcumin reduced TGF-β receptor type I (TβR-I) and TGF-β receptor type II (TβR II), but had no effect on phosphorylation of Smad2 and Smad3. On the other hand, in non-Smad pathway curcumin reduced TGF-β1-induced ERK phosphorylation and PPARγ phosphorylation, and promoted nuclear translocation of PPARγ. Further, the effect of curcumin on α-SMA, PAI-1, E-cadherin, TβR I and TβR II were reversed by ERK inhibitor U0126 or PPARγ inhibitor BADGE, or PPARγ shRNA. Blocking PPARγ signaling pathway by inhibitor BADGE or shRNA had no effect on the phosphorylation of ERK whereas the suppression of ERK signaling pathway inhibited the phosphorylation of PPARγ. We conclude that curcumin counteracted TGF-β1-induced EMT in renal tubular epithelial cells via ERK-dependent and then PPARγ-dependent pathway.
机译:肾间质纤维化(TIF)是终末期肾脏疾病的最终常见途径。上皮到间充质转变(EMT)被认为是通过增加成肌纤维细胞数量而导致TIF的主要因素。姜黄素是衍生自姜黄根茎的多酚化合物,已显示具有有效的抗纤维化特性,但其机理尚不清楚。我们发现,姜黄素可以抑制α-SMA和PAI-1的表达,并在TGF-β1治疗的近端肾小管上皮细胞HK-2细胞中增加E-钙粘蛋白,从而抑制了EMT。研究了传统的TGF-β1/ Smad途径和非Smad途径。姜黄素可降低I型TGF-β受体和II型TGF-β受体(TβRII),但对Smad2和Smad3的磷酸化没有影响。另一方面,在非Smad途径中,姜黄素减少TGF-β1诱导的ERK磷酸化和PPARγ磷酸化,并促进PPARγ的核易位。此外,姜黄素对α-SMA,PAI-1,E-钙黏着蛋白,TβRI和TβRII的作用被ERK抑制剂U0126或PPARγ抑制剂BADGE或PPARγshRNA逆转。抑制剂BADGE或shRNA阻断PPARγ信号通路对ERK的磷酸化没有影响,而ERK信号通路的抑制则抑制了PPARγ的磷酸化。我们得出结论,姜黄素通过ERK依赖性然后PPARγ依赖性途径抵消了肾小管上皮细胞中TGF-β1诱导的EMT。

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