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首页> 外文期刊>Cell death & disease. >Homocysteine activates autophagy by inhibition of CFTR expression via interaction between DNA methylation and H3K27me3 in mouse liver
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Homocysteine activates autophagy by inhibition of CFTR expression via interaction between DNA methylation and H3K27me3 in mouse liver

机译:同型半胱氨酸通过抑制DNA甲基化与H3K27me3在小鼠肝脏中的相互作用而抑制CFTR表达,从而激活自噬

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摘要

Elevated homocysteine (Hcy) levels have been reported to be involved in liver injury, and autophagy plays an important role in normal hepatic physiology and pathophysiology, but the mechanism underlying Hcy regulated autophagy is currently unknown. In this study, CBS+/- mice were fed with regular diet for 12 weeks to establish a hyperhomocysteinemia (HHcy) model and HL-7702 cells were treated with Hcy, we found that Hcy increases autophagy and aggravates liver injury by downregulation of cystic fibrosis transmembrane conductance regulator (CFTR) expression in vivo and in vitro. Overexpression of CFTR inhibited the formation of autophagosomes and the expression of autophagy-related proteins BECN1, LC3-II/I and Atg12, while the expression of p62 increased in Hcy-treated hepatocytes and CBS+/- mice injected with lentivirus expressing CFTR. Further study showed that CFTR expression is regulated by the interaction of DNA methyltransferase 1 (DNMT1) and enhancer of zeste homolog 2 (EZH2), which, respectively, regulate DNA methylation and histone H3 lysine 27 trimethylation (H3K27me3). In conclusion, our study showed that Hcy activates autophagy by inhibition of CFTR expression via interaction between H3K27me3 and DNA methylation in the mouse liver. These findings provide new insight into the mechanism of Hcy-induced autophagy in liver injury.
机译:据报道,同型半胱氨酸(Hcy)水平升高与肝损伤有关,自噬在正常肝生理和病理生理中起着重要作用,但是目前尚不清楚Hcy调控自噬的潜在机制。在这项研究中,对CBS +/-小鼠进行常规饮食12周以建立高同型半胱氨酸血症(HHcy)模型,并用Hcy处理HL-7702细胞,我们发现Hcy可通过下调囊性纤维化跨膜而增加自噬并加重肝损伤。电导调节剂(CFTR)在体内和体外的表达。 CFTR的过表达抑制了自噬体的形成以及自噬相关蛋白BECN1,LC3-II / I和Atg12的表达,而pcy的表达在经Hcy处理的肝细胞和注射表达CFTR的慢病毒的CBS +/-小鼠中增加了。进一步的研究表明,CFTR表达受DNA甲基转移酶1(DNMT1)和zeste同源物2(EZH2)增强子的相互作用调节,后者分别调节DNA甲基化和组蛋白H3赖氨酸27三甲基化(H3K27me3)。总之,我们的研究表明,Hcy通过H3K27me3与小鼠肝脏DNA甲基化之间的相互作用抑制CFTR表达来激活自噬。这些发现为肝损伤中Hcy诱导的自噬机制提供了新的见识。

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