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生物钟基因 Bmal1 控制肠道羧酸酯酶 1 的表达和活性的昼夜节律。

Clock gene Bmal1 controls diurnal rhythms in expression and activity of intestinal carboxylesterase 1.

机构信息

Research Center for Biopharmaceutics and Pharmacokinetics, College of Pharmacy, Jinan University, Guangzhou, Guangzhou, Guangdong Province, China.

Binzhou Polytechnic, Binzhou, Shandong, China.

出版信息

J Pharm Pharmacol. 2021 Mar 1;73(1):52-59. doi: 10.1093/jpp/rgaa035.

Abstract

OBJECTIVES

We aimed to characterize diurnal rhythms in CES1 expression and activity in mouse intestine, and to investigate a potential role of the core clock gene Bmal1 in generating diurnal rhythms.

METHODS

The regulatory effects of intestinal Bmal1 on diurnal CES1 expression were assessed using intestine-specific Bmal1 knockout (Bmal1iKO) mice and colon cancer cells. The relative mRNA and protein levels were determined by qPCR and Western blotting, respectively. Metabolic activity of CES1 in vitro and in vivo were determined by microsomal assays and pharmacokinetic studies, respectively. Transcriptional gene regulation was investigated using luciferase reporter assay.

KEY FINDINGS

Total CES1 protein varied significantly according to time of the day in wild-type (Bmal1fl/fl) mice, peaking at ZT6. Of detectable Ces1 genes, Ces1d mRNA displayed a robust diurnal rhythm with a peak level at ZT6, whereas mRNAs of Ces1e, 1f and 1g showed no rhythms in wild-type mice. Loss of intestinal Bmal1 reduced the levels of total CES1 protein and Ces1d mRNA, and blunted their diurnal rhythms in mice. In vitro microsomal assays indicated that intestinal metabolism of mycophenolate mofetil (MMF, a known CES1 substrate) was more extensive at ZT6 than at ZT18. ZT6 dosing of MMF to wild-type mice generated a higher systemic exposure of mycophenolic acid (the active metabolite of MMF) as compared with ZT18 dosing. Intestinal ablation of Bmal1 down-regulated CES1 metabolism at ZT6, and abolished its time-dependency both in vitro and in vivo. Furthermore, Ces1d/CES1 rhythmicity and positive regulation of Ces1d/CES1 by BMAL1 were confirmed in CT26 and Caco-2 cells. Mechanistically, BMAL1 trans-activated Ces1d/CES1 probably via binding to the E-box elements in the gene promoters.

CONCLUSIONS

Bmal1 controls diurnal rhythms in expression and activity of intestinal CES1. Our findings have implications for understanding the crosstalk between circadian clock and xenobiotic metabolism in the intestine.

摘要

目的

本研究旨在研究肠道中 CES1 表达和活性的昼夜节律特征,并探讨核心时钟基因 Bmal1 在产生昼夜节律中的潜在作用。

方法

通过肠特异性 Bmal1 敲除(Bmal1iKO)小鼠和结肠癌细胞评估肠道 Bmal1 对昼夜 CES1 表达的调节作用。通过 qPCR 和 Western blotting 分别测定相对 mRNA 和蛋白水平。通过微体测定法和药代动力学研究分别测定 CES1 的体外和体内代谢活性。通过荧光素酶报告基因检测研究转录基因调控。

主要发现

野生型(Bmal1fl/fl)小鼠中,总 CES1 蛋白水平随时间呈现显著变化,在 ZT6 时达到峰值。在可检测到的 Ces1 基因中,Ces1d mRNA 表现出明显的昼夜节律,峰值出现在 ZT6,而 Ces1e、1f 和 1g 的 mRNA 在野生型小鼠中没有节律。肠道 Bmal1 缺失降低了总 CES1 蛋白和 Ces1d mRNA 的水平,并使它们在小鼠中的昼夜节律变平。体外微体测定法表明,在 ZT6 时,米科酚酸莫酯(MMF,一种已知的 CES1 底物)的肠道代谢更为广泛。与 ZT18 给药相比,ZT6 给野生型小鼠给药 MMF 可产生更高的米科酚酸(MMF 的活性代谢物)的全身暴露。肠道 Bmal1 缺失下调了 ZT6 时的 CES1 代谢,并在体外和体内均消除了其时间依赖性。此外,在 CT26 和 Caco-2 细胞中证实了 Ces1d/CES1 的节律性和 BMAL1 对 Ces1d/CES1 的正向调节。在机制上,BMAL1 通过结合基因启动子中的 E 盒元件,可能转录激活 Ces1d/CES1。

结论

Bmal1 控制肠道 CES1 的昼夜节律表达和活性。我们的研究结果对于理解生物钟和肠道中外源物代谢之间的相互作用具有重要意义。

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