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Diazepam Promotes Translocation of Human Constitutive Androstane Receptor (CAR) via Direct Interaction with the Ligand-Binding Domain

机译:Diazepam通过与配体结合结构域的直接相互作用促进人组成型和rostane受体(轿厢)的易位

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摘要

The constitutive androstane receptor (CAR) is the essential regulator of genes involved both in xenobiotic and endobiotic metabolism. Diazepam has been shown as a potent stimulator of CAR nuclear translocation and is assumed as an indirect CAR activator not interacting with the CAR cavity. In this study, we sought to determine if diazepam is a ligand directly interacting with the CAR ligand binding domain (LBD) and if it regulates its target genes in a therapeutically relevant concentration. We used different CAR constructs in translocation and luciferase reporter assays, recombinant CAR-LBD in a TR-FRET assay, and target genes induction studied in primary human hepatocytes (PHHs), HepaRG cells, and in CAR humanized mice. We also used in silico docking and CAR-LBD mutants to characterize the interaction of diazepam and its metabolites with the CAR cavity. Diazepam and its metabolites such as nordazepam, temazepam, and oxazepam are activators of CAR+Ala in translocation and two-hybrid assays and fit the CAR cavity in docking experiments. In gene reporter assays with CAR3 and in the TR-FRET assay, only diazepam significantly interacts with CAR-LBD. Diazepam also promotes up-regulation of CYP2B6 in PHHs and in HepaRG cells. However, in humanized CAR mice, diazepam significantly induces neither CYP2B6 nor Cyp2b10 genes nor does it regulate critical genes involved in glucose and lipids metabolism and liver proliferation. Thus, we demonstrate that diazepam interacts with human CAR-LBD as a weak ligand, but it does not significantly affect expression of tested CAR target genes in CAR humanized mice.
机译:组成型和rostane受体(轿车)是涉及异种型和生生菌代谢的基因的必要调节因子。 Diazepam已经显示为汽车核易位的有效刺激器,并且假设作为与车腔相互作用的间接车激活器。在这项研究中,我们试图确定Diazepam是否是直接与汽车配体结合结构域(LBD)相互作用的配体,并且如果它在治疗相关浓度下调节其靶基因。我们在Tr-FRET测定中使用了不同的汽车构建体,在TR-FRET测定中的重组轿车 - LBD,并在原发性人肝细胞(PHHS),肝细胞和汽车人源化小鼠中研究的靶基因诱导。我们还用于硅基硅和Car-LBD突变体,以表征Diazepam及其代谢物与汽车腔的相互作用。 Diazepam及其代谢产物如Nordazepam,Temazepam和Oxazep​​am是易位和双杂交测定的汽车+ ALA的激活剂,并在对接实验中拟合汽车腔。在基因报告器中与CAR3和TR-FRET测定进行测定,只有DiazepaM显着与Car-LBD相互作用。 Diazepam还促进了PHHS和Heparg细胞中CYP2B6的上调。然而,在人性化车小鼠中,Diazepam显着诱导CYP2B6和CYP2B10基因,也没有调节参与葡萄糖和脂质代谢和肝脏增殖的关键基因。因此,我们证明了Diazepam与人类汽车-LBD相互作用,作为弱配体,但它不会显着影响测试的汽车靶向小鼠中测试的汽车靶基因的表达。

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