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肠道 CYP2E1 在酒精诱导的生物钟基因介导的肠道通透性增加中的作用。

Role for intestinal CYP2E1 in alcohol-induced circadian gene-mediated intestinal hyperpermeability.

机构信息

Department of Internal Medicine, Rush University Medical Center, Chicago, IL 60612, USA.

出版信息

Am J Physiol Gastrointest Liver Physiol. 2013 Jul 15;305(2):G185-95. doi: 10.1152/ajpgi.00354.2012. Epub 2013 May 9.

Abstract

We have shown that alcohol increases Caco-2 intestinal epithelial cell monolayer permeability in vitro by inducing the expression of redox-sensitive circadian clock proteins CLOCK and PER2 and that these proteins are necessary for alcohol-induced hyperpermeability. We hypothesized that alcohol metabolism by intestinal Cytochrome P450 isoform 2E1 (CYP2E1) could alter circadian gene expression (Clock and Per2), resulting in alcohol-induced hyperpermeability. In vitro Caco-2 intestinal epithelial cells were exposed to alcohol, and CYP2E1 protein, activity, and mRNA were measured. CYP2E1 expression was knocked down via siRNA and alcohol-induced hyperpermeability, and CLOCK and PER2 protein expression were measured. Caco-2 cells were also treated with alcohol or H₂O₂ with or without N-acetylcysteine (NAC) anti-oxidant, and CLOCK and PER2 proteins were measured at 4 or 2 h. In vivo Cyp2e1 protein and mRNA were also measured in colon tissue from alcohol-fed mice. Alcohol increased CYP2E1 protein by 93% and enzyme activity by 69% in intestinal cells in vitro. Alcohol feeding also increased mouse colonic Cyp2e1 protein by 73%. mRNA levels of Cyp2e1 were not changed by alcohol in vitro or in mouse intestine. siRNA knockdown of CYP2E1 in Caco-2 cells prevented alcohol-induced hyperpermeability and induction of CLOCK and PER2 proteins. Alcohol-induced and H₂O₂-induced increases in intestinal cell CLOCK and PER2 were significantly inhibited by treatment with NAC. We concluded that our data support a novel role for intestinal CYP2E1 in alcohol-induced intestinal hyperpermeability via a mechanism involving CYP2E1-dependent induction of oxidative stress and upregulation of circadian clock proteins CLOCK and PER2.

摘要

我们已经证明,酒精通过诱导氧化还原敏感的生物钟蛋白 CLOCK 和 PER2 的表达,增加体外 Caco-2 肠上皮细胞单层通透性,并且这些蛋白是酒精诱导的高通透性所必需的。我们假设,肠道细胞色素 P450 同工酶 2E1(CYP2E1)代谢酒精会改变生物钟基因表达(Clock 和 Per2),导致酒精诱导的高通透性。在体外,Caco-2 肠上皮细胞暴露于酒精中,测量 CYP2E1 蛋白、活性和 mRNA。通过 siRNA 敲低 CYP2E1,测量酒精诱导的高通透性和 CLOCK 和 PER2 蛋白表达。还将 Caco-2 细胞用酒精或 H₂O₂处理,有或没有 N-乙酰半胱氨酸(NAC)抗氧化剂,4 或 2 小时后测量 CLOCK 和 PER2 蛋白。体内还在酒精喂养小鼠的结肠组织中测量 Cyp2e1 蛋白和 mRNA。酒精在体外增加肠道细胞 CYP2E1 蛋白 93%,酶活性增加 69%。酒精喂养也使小鼠结肠 Cyp2e1 蛋白增加 73%。体外或小鼠肠道内酒精对 Cyp2e1 mRNA 水平没有影响。Caco-2 细胞中 CYP2E1 的 siRNA 敲低可防止酒精诱导的高通透性和 CLOCK 和 PER2 蛋白的诱导。用 NAC 处理可显著抑制酒精诱导和 H₂O₂诱导的肠道细胞 CLOCK 和 PER2 的增加。我们的结论是,我们的数据支持肠道 CYP2E1 通过依赖 CYP2E1 的诱导氧化应激和上调生物钟蛋白 CLOCK 和 PER2 在酒精诱导的肠道通透性增加中的新作用。

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