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The Circadian Clock Gene Bmal1 Controls Intestinal Exporter MRP2 and Drug Disposition

机译:昼夜节律基因Bmal1控制肠道出口商MRP2和药物处置

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摘要

The intestinal exporter MRP2 plays an important role in disposition and elimination of a wide range of drugs. Here, we aimed to clarify the impact of circadian clock on intestinal MRP2, and to determine the molecular mechanisms for generation of diurnal MRP2 expression.>Methods: The regulatory effects of Bmal1 on intestinal MRP2 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. Everted gut sac, cell viability and in situ intestinal perfusion experiments were performed to evaluate intestinal efflux of the MRP2 substrate methotrexate (MTX). Toxicity and pharmacokinetic experiments were performed with Bmal1iKO mice and control littermates (Bmal1fl/fl mice) after oral gavage of MTX. Transcriptional gene regulation was investigated using luciferase reporter, mobility shift and chromatin immunoprecipitation (ChIP) assays.>Results: Bmal1iKO mice were generated by inter-crossing the mice carrying a Bmal1 exon 8 floxed allele (Bmal1fl/fl) with Villin-Cre mice. Intestinal MRP2 expression exhibited a diurnal oscillation in Bmal1fl/fl mice with a zenith value at ZT6. Bmal1 ablation caused reductions in Mrp2 mRNA and protein levels [as well as in transport activity (measured by MTX)], and blunted their diurnal rhythms. Intestinal ablation of Bmal1 abrogated circadian time-dependency of MTX pharmacokinetics and toxicity. Bmal1/BMAL1 regulation of rhythmic Mrp2/MRP2 expression was also confirmed in the colon cancer CT26 and Caco-2 cells. Based on a combination of luciferase reporter, mobility shift and ChIP assays, we found that Dbp activated and E4bp4 repressed Mrp2 transcription via specific binding to a same D-box (-100/-89 bp) element in promoter region. Further, Bmal1 directly activated the transcription of Dbp and Rev-erbα through the E-boxes, whereas it negatively regulated E4bp4 via the transcriptional repressor Rev-erbα. Positive regulation of Mrp2 by Rev-erbα was also observed, and attained through modulation of E4bp4.>Conclusion: Bmal1 coordinates temporal expressions of DBP (a MRP2 activator), REV-ERBα (an E4BP4 repressor) and E4BP4 (a MRP2 repressor), generating diurnal MRP2 expression.
机译:肠道出口物MRP2在处置和消除各种药物中起着重要作用。在这里,我们旨在阐明昼夜节律对肠道MRP2的影响,并确定产生昼夜MRP2表达的分子机制。>方法:使用肠道评估Bmal1对肠道MRP2表达的调节作用。特异性Bmal1基因敲除(Bmal1 iKO )小鼠和结肠癌细胞。相对mRNA和蛋白质水平分别通过qPCR和Western印迹测定。进行肠外翻囊,细胞活力和原位肠灌注实验以评估MRP2底物甲氨蝶呤(MTX)的肠外排。口服管饲MTX后,对Bmal1 iKO 小鼠和对照同窝仔动物(Bmal1 fl / fl 小鼠)进行了毒性和药代动力学实验。使用荧光素酶报道分子,迁移率迁移和染色质免疫沉淀(ChIP)分析方法研究转录基因的调控。>结果:通过交叉携带Bmal1外显子的小鼠产生Bmal1 iKO 小鼠8个Villin-Cre小鼠的等位基因(Bmal1 fl / fl )。肠道MRP2表达在Bmal1 fl / fl 小鼠中表现出昼夜振荡,ZT6的天顶值为。 Bmal1消融导致Mrp2 mRNA和蛋白水平降低(以及转运活性(通过MTX测量)),并减弱了其昼夜节律。 Bmal1的肠切除消除了MTX药代动力学和毒性的昼夜节律性。在结肠癌CT26和Caco-2细胞中也证实了Bmal1 / BMAL1对节律性Mrp2 / MRP2表达的调节。基于萤光素酶报道分子,迁移率变化和ChIP分析的组合,我们发现Dbp激活和E4bp4通过与启动子区域中相同的D-box(-100 / -89 bp)元件特异性结合而抑制了Mrp2转录。此外,Bmal1通过E-boxs直接激活Dbp和Rev-erbα的转录,而它通过转录抑制因子Rev-erbα负调控E4bp4。还观察到Rev-erbα对Mrp2的正向调节,并通过调节E4bp4获得。>结论:Bmal1协调DBP(一种MRP2激活剂),REV-ERBα(一种E4BP4阻遏物)和E4BP4的时间表达。 (MRP2阻遏物),产生昼夜MRP2表达。

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