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基于 Cyp2a5 启动子的基因报告基因检测法:一种新型的基于细胞的生物测定法用于毒性预测。

Cyp2a5 Promoter-based Gene Reporter Assay: A Novel Design of Cell-based Bioassay for Toxicity Prediction.

机构信息

Faculty of Pharmacy, University Technology MARA Selangor, Puncak Alam, Malaysia.

Queensland Alliance for Environmental Health Science (QAEHS), The University of Queensland, Brisbane, QLD, Australia.

出版信息

Basic Clin Pharmacol Toxicol. 2018 Sep;123 Suppl 5:72-80. doi: 10.1111/bcpt.13046. Epub 2018 Jul 17.

Abstract

The murine cytochrome P450 2a5 (Cyp2a5) gene is regulated by complex interactions of various stress-activated transcription factors (TFs). Elevated Cyp2a5 transcription under chemical-induced stress conditions is achieved by interplay between the various TFs - including as aryl hydrocarbon receptor (AhR) and nuclear factor (erythroid-derived 2)-like 2 wild-type (Nrf2) - at the 'stress-responding' cluster of response elements on the Cyp2a5 promoter, as well as through mRNA stabilization mediated by interaction of the stress-activated heterogeneous nuclear ribonucleoprotein A1 (hnRNP A1) with the 3'-UTR of the CYP2A5 mRNA. We designed a unique toxicity pathway-based reporter assay to include regulatory regions from both the 5' and the 3' untranslated regions of Cyp2a5 in a luciferase reporter plasmid to reflect in vivo responses to chemical insult. Human breast cancer MCF-7 cells were stably transfected with pGL4.38-Cyp2a5_Wt3k (wild-type) or mutant - pGL4.38-Cyp2a5_StREMut and pGL4.38-Cyp2a5_XREMut - reporter gene to monitor chemical-induced cellular response mediated by AhR and Nrf2 signalling. The recombinant cells were treated with representative of AhR agonist, polycyclic aromatic hydrocarbons, brominated flame retardant, fluorosurfactant, aromatic organic compound and metal, to determine the sensitivity of the Cyp2a5 promoter-based gene reporter assays to chemical insults by measuring the LC and EC of the respective chemicals. The three assays are sensitive to sublethal cellular responses of chemicals, which is an ideal feature for toxicity pathway-based bioassay for toxicity prediction. The wild-type reporter responded well to chemicals that activate crosstalk between the AhR and Nrf2, whilst the mutant reporters effectively gauge cellular response driven by either Nrf2/StRE or AhR/XRE signalling. Thus, the three gene reporter assays could be used tandemly to determine the predominant toxicity pathway of a given compound.

摘要

鼠细胞色素 P450 2a5(Cyp2a5)基因受各种应激激活转录因子(TFs)的复杂相互作用调控。在化学诱导应激条件下,Cyp2a5 转录的升高是通过各种 TF 之间的相互作用实现的,包括芳香烃受体(AhR)和核因子(红系衍生 2)样 2 野生型(Nrf2),在 Cyp2a5 启动子的“应激反应”簇反应元件上,以及通过应激激活的异质核核糖核蛋白 A1(hnRNP A1)与 CYP2A5 mRNA 3'UTR 的相互作用介导的 mRNA 稳定化。我们设计了一种独特的基于毒性途径的报告基因检测,将 Cyp2a5 的 5'和 3'非翻译区的调节区纳入荧光素酶报告质粒中,以反映化学物质刺激下的体内反应。人乳腺癌 MCF-7 细胞被稳定转染 pGL4.38-Cyp2a5_Wt3k(野生型)或突变体-pGL4.38-Cyp2a5_StREMut 和 pGL4.38-Cyp2a5_XREMut-报告基因,以监测 AhR 和 Nrf2 信号介导的化学诱导细胞反应。重组细胞用代表性的 AhR 激动剂、多环芳烃、溴化阻燃剂、氟表面活性剂、芳香族有机化合物和金属处理,通过测量各自化学品的 LC 和 EC,确定基于 Cyp2a5 启动子的基因报告基因检测对化学物质刺激的敏感性。这三个检测都对化学物质的亚致死细胞反应敏感,这是毒性途径生物测定用于毒性预测的理想特征。野生型报告对激活 AhR 和 Nrf2 之间串扰的化学物质反应良好,而突变型报告则有效地衡量由 Nrf2/StRE 或 AhR/XRE 信号驱动的细胞反应。因此,这三个基因报告检测可以串联使用,以确定给定化合物的主要毒性途径。

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