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Autophagy regulates hepatocyte identity and epithelial-to-mesenchymal and mesenchymal-to-epithelial transitions promoting Snail degradation

机译:自噬调节肝细胞的身份以及上皮到间质和间质到上皮的转变促进蜗牛的降解

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摘要

Epithelial-to-mesenchymal transition (EMT) and the reverse process mesenchymal-to-epithelial transition (MET) are events involved in development, wound healing and stem cell behaviour and contribute pathologically to cancer progression. The identification of the molecular mechanisms underlying these phenotypic conversions in hepatocytes are fundamental to design specific therapeutic strategies aimed at optimising liver repair. The role of autophagy in EMT/MET processes of hepatocytes was investigated in liver-specific autophagy-deficient mice (Alb-Cre;ATG7fl/fl) and using the nontumorigenic immortalised hepatocytes cell line MMH. Autophagy deficiency in vivo reduces epithelial markers' expression and increases the levels of mesenchymal markers. These alterations are associated with an increased protein level of the EMT master regulator Snail, without transcriptional induction. Interestingly, we found that autophagy degrades Snail in a p62/SQSTM1 (Sequestosome-1)-dependent manner. Moreover, accordingly to a pro-epithelial function, we observed that autophagy stimulation strongly affects EMT progression, whereas it is necessary for MET. Finally, we found that the EMT induced by TGFβ affects the autophagy flux, indicating that these processes regulate each other. Overall, we found that autophagy regulates the phenotype plasticity of hepatocytes promoting their epithelial identity through the inhibition of the mesenchymal programme.
机译:上皮到间充质转化(EMT)和逆过程间充质到上皮转化(MET)是涉及发育,伤口愈合和干细胞行为的事件,并且在病理上有助于癌症的进展。鉴定肝细胞中这些表型转化的分子机制是设计旨在优化肝脏修复的特定治疗策略的基础。研究了自噬在肝特异性自噬缺陷小鼠(Alb-Cre; ATG7 fl / fl )和非致瘤性永生化肝细胞系MMH中对肝细胞EMT / MET过程的作用。体内自噬缺乏会降低上皮标记物的表达并增加间充质标记物的水平。这些改变与EMT主调节器Snail的蛋白水平增加相关,而没有转录诱导。有趣的是,我们发现自噬以p62 / SQSTM1(Sequestosome-1)依赖的方式降解Snail。此外,相应于上皮功能,我们观察到自噬刺激强烈影响EMT进程,而MET是必需的。最后,我们发现TGFβ诱导的EMT影响自噬通量,表明这些过程相互调节。总的来说,我们发现自噬通过抑制间充质程序来调节肝细胞的表型可塑性,从而促进它们的上皮特性。

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