2,2 ',5,5 ' -四氯和2,2 ',3,3 ',4,4 ' -六氯联苯对Ah受体作用的种特异性拮抗作用

Jac M.M.J.G. Aarts , Michael S. Denison , Mary A. Cox , Marjolijn A.C. Schalk , Patricia M. Garrison , Kathryn Tullis , Laura H.J. de Haan , Abraham Brouwer
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引用次数: 182

摘要

利用Ah受体控制的荧光素酶报告基因表达的重组细胞系,研究了二邻代多氯联苯(PCBs)与Ah受体激动剂的相互作用。在重组Hepa1c1c7小鼠肝癌(H1L1.1c7)细胞中,观察到2,2 ',5,5 ' -四氯联苯(PCB52)与2,3,7,8-四氯二苯并-对二恶英(TCDD)或3,3 ',4,4 ' -四氯联苯(PCB77)诱导的荧光素酶表达具有强拮抗作用,2,2 ',3,3 ',4,4 ' -六氯联苯(PCB128)和PCB77之间也存在类似的相互作用。因此,我们发现PCB52在野生型Hepa1c1c7细胞中抑制PCB77诱导的乙氧基间苯二酚- o -去乙基酶(EROD)。相比之下,PCB52对tcdd诱导的荧光素酶表达的拮抗作用在重组豚鼠GPC16结肠癌(g16l1.1 .1c8)和人HepG2肝癌(hg2l1.1 .1c3)细胞中仅为微弱,在重组H4IIE大鼠肝癌(h4l1.1 .1c4)细胞中为中等。凝胶阻滞研究使用32p标记的二恶英反应元件(DRE)-含寡核苷酸,配体结合研究使用[3H]TCDD,证明了PCB52对Ah受体控制的荧光素酶表达的物种特异性拮抗活性是由于Ah受体配体和DNA结合的抑制。我们得出结论,Ah介导的荧光素酶表达为研究Ah受体(蚂蚁)激动剂的物种特异性提供了一个有用的工具。
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Species-specific antagonism of Ah receptor action by 2,2′,5,5′-tetrachloro- and 2,2′,3,3′,4,4′-hexachlorobiphenyl

Using recombinant cell lines showing Ah receptor-controlled expression of a luciferase reporter gene, the interaction of di-ortho-substituted polychlorinated biphenyls (PCBs) with Ah receptor agonists was studied. In the recombinant Hepa1c1c7 mouse hepatoma (H1L1.1c7) cells strong antagonistic interaction of 2,2′,5,5′-tetrachlorobiphenyl (PCB52) with luciferase expression induced by 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) or 3,3′,4,4′-tetrachlorobiphenyl (PCB77) was observed, and similarly, between 2,2′,3,3′,4,4′-hexachlorobiphenyl (PCB128) and PCB77. Accordingly, PCB52 was found to inhibit ethoxyresorufin-O-deethylase (EROD) induction by PCB77 in wild-type Hepa1c1c7 cells. In contrast, the antagonistic effect of PCB52 on TCDD-induced luciferase expression was only minor in recombinant guinea pig GPC16 colon adenocarcinoma (G16L1.1c8) and human HepG2 hepatoma (HG2L1.1c3) cells, and intemediate in recombinant H4IIE rat hepatoma (H4L1.1c4) cells. Gel retardation studies using a 32P-labelled dioxin responsive element (DRE)-containing oligonucleotide, and ligand binding studies using [3H]TCDD, demonstrated that the species-specific antagonistic activity of PCB52 on Ah receptor-controlled luciferase expression is due to inhibition of Ah receptor ligand and DNA binding. We conclude, that Ah-mediated luciferase expression provides a useful tool to study the species specificity of Ah receptor (ant)agonists.

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