Targeting of CYP2E1 by miRNAs in alcohol-induced intestine injury

IF 3.7 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Hyejin Mun , Sungyul Lee , Suyoung Choi , Ji-Hoon Jeong , Seungbeom Ko , Yoo Lim Chun , Benjamin Deaton , Clay T. Yeager , Audrey Boyette , Juliana Palmera , London Newman , Ping Zhou , Soona Shin , Dong-Chan Kim , Cari A. Sagum , Mark T. Bedford , Young-Kook Kim , Jaeyul Kwon , Junyang Jung , Jeong Ho Chang , Je-Hyun Yoon
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引用次数: 0

Abstract

Although binge alcohol-induced gut leakage has been studied extensively in the context of reactive oxygen species−mediated signaling, it was recently revealed that post-transcriptional regulation plays an essential role as well. Ethanol (EtOH)-inducible cytochrome P450-2E1 (CYP2E1), a key enzyme in EtOH metabolism, promotes alcohol-induced hepatic steatosis and inflammatory liver disease, at least in part by mediating changes in intestinal permeability. For instance, gut leakage and elevated intestinal permeability to endotoxins have been shown to be regulated by enhancing CYP2E1 mRNA and CYP2E1 protein levels. Although it is understood that EtOH promotes CYP2E1 induction and activation, the mechanisms that regulate CYP2E1 expression in the context of intestinal damage remain poorly defined. Specific miRNAs, including miR-132, miR-212, miR-378, and miR-552, have been shown to repress the expression of CYP2E1, suggesting that these miRNAs contribute to EtOH-induced intestinal injury. Here, we have shown that CYP2E1 expression is regulated post-transcriptionally through miRNA-mediated degradation, as follows: (1) the RNA-binding protein AU-binding factor 1 (AUF1) binds mature miRNAs, including CYP2E1-targeting miRNAs, and this binding modulates the degradation of corresponding target mRNAs upon EtOH treatment; (2) the serine/threonine kinase mammalian Ste20-like kinase 1 (MST1) mediates oxidative stress-induced phosphorylation of AUF1. Those findings suggest that reactive oxygen species−mediated signaling modulates AUF1/miRNA interaction through MST1-mediated phosphorylation. Thus, our study demonstrates the critical functions of AUF1 phosphorylation by MST1 in the decay of miRNAs targeting CYP2E1, the stabilization of CYP2E1 mRNA in the presence of EtOH, and the relationship of this pathway to subsequent intestinal injury.

miRNA 在酒精诱导的肠道损伤中靶向 CYP2E1。
尽管人们已经在活性氧(ROS)介导的信号转导背景下对暴饮暴食酒精诱导的肠道渗漏进行了广泛研究,但最近发现转录后调控也起着至关重要的作用。乙醇(EtOH)诱导的细胞色素 P450-2E1 (CYP2E1)是乙醇代谢过程中的一个关键酶,它促进酒精诱导的肝脂肪变性和炎症性肝病,至少部分原因是通过介导肠道渗透性的变化。例如,肠道渗漏和肠道对内毒素的渗透性升高已被证明是通过提高 CYP2E1 mRNA 和 CYP2E1 蛋白水平来调节的。虽然人们知道乙醇会促进 CYP2E1 的诱导和活化,但在肠道损伤的情况下调节 CYP2E1 表达的机制仍不十分明确。研究表明,包括 miR-132、miR-212、miR-378 和 miR-552 在内的特定 miRNA 可抑制 CYP2E1 的表达,这表明这些 miRNA 在乙醇引起的肠道损伤中起了作用。在这里,我们发现 CYP2E1 的表达是通过 miRNA 介导的降解进行转录后调控的,具体如下:1)RNA 结合蛋白 AU 结合因子 1(AUF1)可结合成熟的 miRNA,包括 CYP2E1 靶向的 miRNA,这种结合可在 EtOH 处理时调节相应靶 mRNA 的降解;2)丝氨酸/苏氨酸激酶 MST1 可介导氧化应激诱导的 AUF1 磷酸化。这些发现表明,ROS 介导的信号通过 MST1 介导的磷酸化调节 AUF1/miRNA 的相互作用。因此,我们的研究证明了 MST1 磷酸化 AUF1 在靶向 CYP2E1 的 miRNA 的衰变、EtOH 存在时 CYP2E1 mRNA 的稳定以及这一途径与后续肠道损伤的关系中的关键作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Molecules and Cells
Molecules and Cells 生物-生化与分子生物学
CiteScore
6.60
自引率
10.50%
发文量
83
审稿时长
2.3 months
期刊介绍: Molecules and Cells is an international on-line open-access journal devoted to the advancement and dissemination of fundamental knowledge in molecular and cellular biology. It was launched in 1990 and ISO abbreviation is ''Mol. Cells''. Reports on a broad range of topics of general interest to molecular and cell biologists are published. It is published on the last day of each month by the Korean Society for Molecular and Cellular Biology.
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