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通过高通量筛选和人源组成型雄烷受体 3 亚型的分子建模鉴定新型激动剂。

Identification of novel agonists by high-throughput screening and molecular modelling of human constitutive androstane receptor isoform 3.

机构信息

Fraunhofer Institute for Molecular Biology and Applied Ecology IME, Schnackenburgallee 114, 22525, Hamburg, Germany.

Dr. Margarete Fischer-Bosch-Institute of Clinical Pharmacology, Auerbachstrasse 112, 70376, Stuttgart, Germany.

出版信息

Arch Toxicol. 2019 Aug;93(8):2247-2264. doi: 10.1007/s00204-019-02495-6. Epub 2019 Jul 16.

Abstract

Prediction of drug interactions, based on the induction of drug disposition, calls for the identification of chemicals, which activate xenosensing nuclear receptors. Constitutive androstane receptor (CAR) is one of the major human xenosensors; however, the constitutive activity of its reference variant CAR1 in immortalized cell lines complicates the identification of agonists. The exclusively ligand-dependent isoform CAR3 represents an obvious alternative for screening of CAR agonists. As CAR3 is even more abundant in human liver than CAR1, identification of its agonists is also of pharmacological value in its own right. We here established a cellular high-throughput screening assay for CAR3 to identify ligands of this isoform and to analyse its suitability for identifying CAR ligands in general. Proof-of-concept screening of 2054 drug-like compounds at 10 µM resulted in the identification of novel CAR3 agonists. The CAR3 assay proved to detect the previously described CAR1 ligands in the screened libraries. However, we failed to detect CAR3-selective compounds, as the four novel agonists, which were selected for further investigations, all proved to activate CAR1 in different cellular and in vitro assays. In primary human hepatocytes, the compounds preferentially induced the expression of the prototypical CAR target gene CYP2B6. Failure to identify CAR3-selective compounds was investigated by molecular modelling, which showed that the isoform-specific insertion of five amino acids did not impact on the ligand binding pocket but only on heterodimerization with retinoid X receptor. In conclusion, we demonstrate here the usability of CAR3 for screening compound libraries for the presence of CAR agonists.

摘要

基于药物处置诱导的药物相互作用预测需要识别能够激活外源性感知核受体的化学物质。组成型雄烷受体(CAR)是人类主要的外源性感知受体之一;然而,其参考变体 CAR1 在永生化细胞系中的组成型活性使得激动剂的鉴定变得复杂。唯一依赖配体的同种型 CAR3 是筛选 CAR 激动剂的明显替代方法。由于 CAR3 在人肝中的丰度甚至高于 CAR1,因此鉴定其激动剂本身在药理学上也具有价值。我们在这里建立了一种用于 CAR3 的细胞高通量筛选测定法,以鉴定该同种型的配体,并分析其用于鉴定一般 CAR 配体的适用性。在 10 μM 下对 2054 种药物样化合物进行了概念验证筛选,结果鉴定出了新型 CAR3 激动剂。该 CAR3 测定法被证明可检测筛选库中先前描述的 CAR1 配体。然而,我们未能检测到 CAR3 选择性化合物,因为被选为进一步研究的四种新型激动剂在不同的细胞和体外测定中均被证明可激活 CAR1。在原代人肝细胞中,这些化合物优先诱导典型的 CAR 靶基因 CYP2B6 的表达。通过分子建模研究了未能鉴定出 CAR3 选择性化合物的原因,结果表明,同种型特异性插入的五个氨基酸不会影响配体结合口袋,而只会影响与视黄酸 X 受体的异二聚化。总之,我们在这里证明了 CAR3 可用于筛选化合物文库中是否存在 CAR 激动剂。

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