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首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Nuclear translocation of adenoviral-enhanced yellow fluorescent protein-tagged-human constitutive androstane receptor (hCAR): a novel tool for screening hCAR activators in human primary hepatocytes.
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Nuclear translocation of adenoviral-enhanced yellow fluorescent protein-tagged-human constitutive androstane receptor (hCAR): a novel tool for screening hCAR activators in human primary hepatocytes.

机译:腺病毒增强的黄色荧光蛋白标记的人类组成型雄激素受体(hCAR)的核易位:一种用于筛选人原代肝细胞中hCAR激活剂的新型工具。

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摘要

The constitutive androstane receptor [(CAR) NR1I3] is a hepatic transcription factor that controls the expression of numerous drug-metabolizing enzymes and transporters in response to xenobiotic exposures. In primary hepatocytes and intact liver, CAR resides in the cytoplasm under basal condition and translocates to the nucleus upon exposure to inducers. However, CAR spontaneously accumulates in the nucleus of immortalized cell lines and exhibits constitutive activation in the absence of activators, which makes the identification of CAR activators extremely challenging. Here, we have established an efficient screening method for determining the nuclear translocation of human (h) CAR in human primary hepatocytes (HPHs). Our results demonstrated that adenoviral-enhanced yellow fluorescent protein-tagged hCAR (Ad/EYFP-hCAR) infects HPHs with high efficiency, and the majority of Ad/EYFP-hCAR (>80%) is expressed in the cytoplasm of noninduced HPHs and is translocated to the nucleus in response to activatorsand antagonists of hCAR. Furthermore, 22 compounds including known hCAR activators, nonactivators, CYP2B inducers, and deactivators were evaluated in this system. Our results indicated that chemical-mediated Ad/EYFP-hCAR translocation in HPHs significantly correlated with hCAR activation and target gene induction. Compared with cell-based reporter assays in cell lines and in vitro ligand-binding assays, the established Ad/EYFP-hCAR translocation assay in HPHs exhibits apparent advantages such as sensitivity to chemical activators and responses to both direct and indirect hCAR activators. Thus, nuclear translocation of Ad/EYFP-hCAR in HPHs represents an efficient means for in vitro prediction of chemical-mediated hCAR nuclear accumulation.
机译:组成型雄烷烃受体[(CAR)NR1I3]是一种肝转录因子,可响应异源生物暴露控制多种药物代谢酶和转运蛋白的表达。在原代肝细胞和完整的肝脏中,CAR在基础条件下驻留在细胞质中,并在暴露于诱导剂后易位至细胞核。然而,CAR自发地积聚在永生化细胞系的细胞核中,并且在没有激活剂的情况下表现出组成性激活,这使CAR激活剂的鉴定极具挑战性。在这里,我们建立了一种有效的筛选方法,用于确定人原代肝细胞(HPHs)中人(h)CAR的核易位。我们的结果表明,腺病毒增强的黄色荧光蛋白标记的hCAR(Ad / EYFP-hCAR)可以高效感染HPH,而大部分Ad / EYFP-hCAR(> 80%)在未诱导的HPHs细胞质中表达,并且响应hCAR的激活剂和拮抗剂转位到细胞核。此外,在该系统中评估了22种化合物,包括已知的hCAR激活剂,非激活剂,CYP2B诱导剂和失活剂。我们的结果表明,HPHs中化学介导的Ad / EYFP-hCAR易位与hCAR激活和靶基因诱导显着相关。与细胞系中基于细胞的报告基因检测和体外配体结合检测相比,HPH中已建立的Ad / EYFP-hCAR易位检测显示出明显的优势,例如对化学激活剂的敏感性以及对直接和间接hCAR激活剂的响应。因此,HPHs中Ad / EYFP-hCAR的核易位代表了体外预测化学介导的hCAR核积累的有效手段。

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