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Differential topical susceptibility to TGFβ in intact and injured regions of the epithelium: key role in myofibroblast transition

机译:完整和受损上皮区域对TGFβ的局部局部敏感性:在成纤维细胞转化中的关键作用

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摘要

Induction of epithelial–myofibroblast transition (EMyT), a robust fibrogenic phenotype change hallmarked by α-smooth muscle actin (SMA) expression, requires transforming growth factor-β1 (TGFβ) and the absence/uncoupling of intracellular contacts. This suggests that an “injured” epithelium may be topically susceptible to TGFβ. To explore this concept, we use an epithelial wound model in which intact and contact-deprived regions of the same monolayer can be analyzed simultaneously. We show that TGFβ elicits dramatically different responses at these two loci. SMA expression and initially enhanced nuclear Smad3 accumulation followed by Smad3 mRNA and protein down-regulation occur exclusively at the wound. Mechanistically, three transcriptional coactivators whose localization is regulated by cell contact integrity are critical for these local effects. These are myocardin-related transcription factor (MRTF), the driver of the SMA promoter; β-catenin, which counteracts the known inhibitory effect of Smad3 on MRTF and maintains MRTF protein stability and mRNA expression in the wound; and TAZ, a Hippo effector and Smad3 retention factor. Remarkably, active TAZ stimulates the SMA and suppresses the Smad3 promoter, whereas TAZ silencing prevents wound-restricted expression of SMA and loss of Smad3. Such locus-specific reprogramming might play key roles in wound healing and the susceptibility of the injured epithelium to fibrogenesis.
机译:上皮细胞-成纤维细胞转化(EMyT)的诱导,以α-平滑肌肌动蛋白(SMA)表达为特征的强烈的纤维化表型改变,需要转化生长因子-β1(TGFβ)和细胞内接触的缺乏/解偶联。这表明“受伤的”上皮可能对TGFβ局部敏感。为了探索这一概念,我们使用上皮伤口模型,其中可以同时分析同一单层的完整区域和接触剥夺区域。我们显示,TGFβ在这两个基因座处引起显着不同的反应。 SMA表达和最初增强的核Smad3积累以及随后的Smad3 mRNA和蛋白下调仅在伤口处发生。从机理上讲,三个转录共激活因子的定位受细胞接触完整性的调节对于这些局部效应至关重要。它们是心肌相关转录因子(MRTF),是SMA启动子的驱动因子。 β-catenin可抵消Smad3对MRTF的已知抑制作用,并维持MRTF蛋白的稳定性和伤口中的mRNA表达; TAZ,河马效应子和Smad3保留因子。值得注意的是,活性TAZ刺激SMA并抑制Smad3启动子,而TAZ沉默则可防止SMA的伤口限制性表达和Smad3的丢失。这样的基因座特异性重编程可能在伤口愈合和受伤的上皮对纤维发生的敏感性中起关键作用。

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