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核受体共抑制因子RIP140调节小鼠肝脏中细胞色素P450 2b10的昼夜表达。

Nuclear receptor co-repressor RIP140 regulates diurnal expression of cytochrome P450 2b10 in mouse liver.

作者信息

Zhao Mengjing, Zhao Huan, Lin Luomin, Wang Yi, Chen Menglin, Wu Baojian

机构信息

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

International Cooperative Laboratory of Traditional Chinese Medicine Modernization and Innovative Drug Development of Chinese Ministry of Education (MOE), College of Pharmacy, Jinan University, Guangzhou, China.

出版信息

Xenobiotica. 2020 Oct;50(10):1139-1148. doi: 10.1080/00498254.2020.1751342. Epub 2020 Apr 16.

Abstract

Elucidating the mechanisms for circadian expression of drug-metabolizing enzymes is essential for a better understanding of dosing time-dependent drug metabolism and pharmacokinetics. CYP2B6 (Cyp2b10 in mice) is an important enzyme responsible for metabolism and detoxification of approximately 10% of drugs. Here, we aimed to investigate a potential role of nuclear receptor co-repressor RIP140 in circadian regulation of Cyp2b10 in mice.We first uncovered diurnal rhythmicity in hepatic RIP140 mRNA and protein with peak values at ZT10 (ZT, zeitgeber time). RIP140 ablation up-regulated Cyp2b10 expression and blunted its rhythm in mice and in AML-12 cells. Consistent with a negative regulatory effect, overexpression of RIP140 inhibited promoter activity and reduced cellular Cyp2b10 expression.Furthermore, RIP140 suppressed Car- and Pxr-mediated transactivation of Cyp2b10, and the suppressive effects were attenuated when the gene was silenced. Chromatin immunoprecipitation assays revealed that recruitment of RIP140 protein to the Cyp2b10 promoter was circadian time-dependent in wild-type mice. More extensive recruitment was observed at ZT10 than at ZT2 consistent with the rhythmic pattern of RIP140 protein. However, the time-dependency of RIP140 recruitment was lost in mice.Additionally, we identified a D-box and a RORE -element in promoter. D-box- and RORE-acting clock components such as Dbp, E4bp4, Rev-erbα/β and Rorα transcriptionally regulated RIP140, potentially accounting for its rhythmic expression.In conclusion, RIP140 regulates diurnal expression of Cyp2b10 in mouse liver through periodical repression of Car- and Pxr-mediated transactivation. This co-regulator-driven mechanism represents a novel source of diurnal rhythmicity in drug-metabolizing enzymes.

摘要

阐明药物代谢酶昼夜节律表达的机制对于更好地理解给药时间依赖性药物代谢和药代动力学至关重要。CYP2B6(小鼠中的Cyp2b10)是一种重要的酶,负责约10%的药物的代谢和解毒。在此,我们旨在研究核受体共抑制因子RIP140在小鼠Cyp2b10昼夜节律调节中的潜在作用。我们首先发现肝脏中RIP140 mRNA和蛋白质存在昼夜节律,在 Zeitgeber时间(ZT)10时达到峰值。RIP140基因敲除上调了小鼠和AML-12细胞中Cyp2b10的表达并使其节律减弱。与负调控作用一致,RIP140的过表达抑制了启动子活性并降低了细胞中Cyp2b10的表达。此外,RIP140抑制了Car和Pxr介导的Cyp2b10的反式激活,当该基因沉默时,抑制作用减弱。染色质免疫沉淀分析表明,在野生型小鼠中,RIP140蛋白募集到Cyp2b10启动子是昼夜时间依赖性的。与RIP140蛋白的节律模式一致,在ZT10时观察到的募集比ZT2时更广泛。然而,在 小鼠中,RIP140募集的时间依赖性丧失。此外,我们在 启动子中鉴定出一个D-box和一个RORE元件。Dbp、E4bp4、Rev-erbα/β和Rorα等作用于D-box和RORE的生物钟成分转录调节RIP140,这可能是其节律性表达的原因。总之,RIP140通过周期性抑制Car和Pxr介导的反式激活来调节小鼠肝脏中Cyp

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