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首页> 外文期刊>Toxicology and Applied Pharmacology >Non-coplanar polychlorinated biphenyls (PCBs) are direct agonists for the human pregnane-X receptor and constitutive androstane receptor, and activate target gene expression in a tissue-specific manner
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Non-coplanar polychlorinated biphenyls (PCBs) are direct agonists for the human pregnane-X receptor and constitutive androstane receptor, and activate target gene expression in a tissue-specific manner

机译:非共面多氯联苯(PCB)是人孕烷X受体和组成型雄烷受体的直接激动剂,并以组织特异性方式激活靶基因表达

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摘要

The polychlorinated biphenyl group possesses high environmental persistence, leading to bioaccumulation and a number of adverse effects in mammals. Whilst coplanar PCBs elicit their toxic effects through agonism of the aryl hydrocarbon receptor; however, non-coplanar PCBs are not ligands for AhR, but may be ligands for members of the nuclear receptor family of proteins. To better understand the biological actions of non-coplanar PCBs, we have undertaken a systematic analysis of their ability to activate PXR and CAR-mediated effects.Cells were exposed to a range of non-coplanar PCBs (99, 138, 153, 180 and 194), or the coplanar PCB77: Direct activation of PXR and CAR was measured using a mammalian receptor activation assay in human liver cells, with rifampicin and CITCO used as positive controls ligands for PXR and CAR, respectively; activation of target gene expression was examined using reporter gene plasmids for CYP3A4 and MDR1 transfected into liver, intestine and lung cell lines.Several of the non-coplanar PCBs directly activated PXR and CAR, whilst the coplanar PCB77 did not. Non-coplanar PCBs were also able to activate PXR/CAR target gene expression in a substitution- and tissue-specific manner.Non-coplanar PCBs act as direct activators for the nuclear receptors PXR and CAR, and are able to elicit transcriptional activation of target genes in a substitution- and tissue-dependent manner. Chronic activation of PXR/CAR is linked to adverse effects and must be included in any risk assessment of PCBs.
机译:多氯联苯具有较高的环境持久性,导致生物蓄积并在哺乳动物中产生许多不利影响。共面多氯联苯通过芳烃受体的激动作用引起毒性作用。但是,非共面PCB并非AhR的配体,而可能是蛋白质核受体家族成员的配体。为了更好地了解非共面多氯联苯的生物学作用,我们对它们激活PXR和CAR介导的作用的能力进行了系统分析。细胞暴露于一系列非共面多氯联苯(99、138、153、180和194)或共面PCB77:使用哺乳动物受体激活测定法在人肝细胞中测量PXR和CAR的直接激活,其中利福平和CITCO分别用作PXR和CAR的阳性对照配体;使用转染入肝,肠和肺细胞系的CYP3A4和MDR1的报告基因质粒检查了靶基因表达的激活,其中几个非共面的PCB直接激活了PXR和CAR,而共面的PCB77没有激活。非共面多氯联苯还能够以取代和组织特异性方式激活PXR / CAR靶基因表达。非共面多氯联苯充当核受体PXR和CAR的直接激活剂,并能够引起靶标的转录激活基因以取代和组织依赖性方式存在。 PXR / CAR的长期激活与不良反应有关,必须将其包括在PCB的任何风险评估中。

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