首页> 外文期刊>Toxicological sciences: An official journal of the Society of Toxicology >Role of Pregnane X Receptor and Aryl Hydrocarbon Receptor in Transcriptional Regulation of pxr, CYP2, and CYP3 Genes in Developing Zebrafish
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Role of Pregnane X Receptor and Aryl Hydrocarbon Receptor in Transcriptional Regulation of pxr, CYP2, and CYP3 Genes in Developing Zebrafish

机译:孕烷X受体和芳烃受体在斑马鱼发育过程中pxr,CYP2和CYP3基因转录调控中的作用

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摘要

Ligand-activated receptors regulate numerous genes, and mediate effects of a broad set of endogenous and exogenous chemicals in vertebrates. Understanding the roles of these transcription factors in zebrafish (Danio rerio) is important to the use of this non-mammalian model in toxicological, pharmacological, and carcinogenesis research. Response to a potential agonist for the pregnane X receptor (Pxr) [pregnenolone (PN)] was examined in developing zebrafish, to assess involvement of Pxr in regulation of selected genes, including genes in cytochrome P450 subfamilies CYP2 and CYP3. We also examined interaction of Pxr and the aryl hydrocarbon receptor (Ahr) signaling pathways. Pregnenolone caused a dose-dependent increase in mRNA levels of pxr, ahr2, CYP1A, CYP2AA1, CYP2AA12, CYP3A65, and CYP3C1, most of which peaked at 3 A mu M PN. The well-known Ahr agonist 3,3',4,4',5-pentachlorobiphenyl (PCB126) also upregulated expression of pxr, ahr2, CYP1A, CYP2AA12, CYP3A65, and CYP3C1 in a dose-dependent manner. Inhibition of pxr translation by morpholino antisense oligonucleotides (MO) suppressed PN-induced expression of pxr, ahr2, CYP3A65, and CYP3C1 genes. Levels of CYP2AA1 and CYP2AA12 mRNA were increased in the control-MO group exposed to PN; this was prevented by knocking down Pxr. Similarly, Ahr2-MO treatment blocked PCB126-induced mRNA expression of pxr, CYP1A, CYP2AA12, CYP3A65, and CYP3C1. The present study shows self-regulation of pxr by PN in developing zebrafish. Selected zebrafish CYP1, CYP2 (including several CYP2AAs) and CYP3 genes appear to be under the regulation of both Pxr and Ahr2.
机译:配体激活的受体调节众多基因,并介导脊椎动物中大量内源性和外源性化学物质的作用。了解这些转录因子在斑马鱼中的作用对于在毒理学,药理学和致癌研究中使用这种非哺乳动物模型很重要。在发育中的斑马鱼中检查了对孕烷X受体(Pxr)[孕烯醇酮(PN)]潜在激动剂的反应,以评估Pxr参与所选基因的调控,包括细胞色素P450亚家族CYP2和CYP3中的基因。我们还检查了Pxr和芳烃受体(Ahr)信号通路的相互作用。孕烯醇酮导致pxr,ahr2,CYP1A,CYP2AA1,CYP2AA12,CYP3A65和CYP3C1的mRNA水平呈剂量依赖性增加,大多数在3 AμMPN时达到峰值。著名的Ahr激动剂3,3',4,4',5-五氯联苯(PCB126)也以剂量依赖性方式上调pxr,ahr2,CYP1A,CYP2AA12,CYP3A65和CYP3C1的表达。吗啉代反义寡核苷酸(MO)抑制pxr翻译可抑制PN诱导的pxr,ahr2,CYP3A65和CYP3C1基因的表达。暴露于PN的对照组比较CYP2AA1和CYP2AA12 mRNA水平升高。这可以通过降低Pxr来防止。同样,Ahr2-MO处理可阻断PCB126诱导的pxr,CYP1A,CYP2AA12,CYP3A65和CYP3C1的mRNA表达。本研究显示了在发育中的斑马鱼中PN对pxr的自我调节。选定的斑马鱼CYP1,CYP2(包括几种CYP2AAs)和CYP3基因似乎受Pxr和Ahr2的调控。

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