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多氯联苯暴露与睾丸和肾上腺皮质细胞系中CYP19基因调控

Polychlorinated biphenyl exposure and CYP19 gene regulation in testicular and adrenocortical cell lines.

作者信息

Li Lih-Ann

机构信息

Division of Environmental Health and Occupational Medicine, National Health Research Institutes, Zhunan, Miaoli 35053, Taiwan, ROC.

出版信息

Toxicol In Vitro. 2007 Sep;21(6):1087-94. doi: 10.1016/j.tiv.2007.04.002. Epub 2007 Apr 14.

Abstract

Exposure to polychlorinated biphenyls (PCBs) disturbs many estrogen-mediated biochemical processes. PCBs may cause these abnormalities by altering expression of the aromatase gene CYP19. This study demonstrated that high concentrations of PCB126 increased basal CYP19 mRNA abundance in mouse testicular Leydig I-10 cells and human adrenocortical H295R cells. Stimulating the cells with chorionic gonadotropin or 8-Br-cAMP concealed the estrogenic effect of PCB126. PCB126 is a powerful ligand for nuclear receptor AhR. Antagonizing the AhR activity of H295R by an inhibitor abolished PCB126-elicited CYP19 induction. However, PCB126 elevated basal CYP19 expression and aromatase activity in a slow progressive manner contrary to the sharp induction of the classic AhR target gene CYP1A1. Exposure of H295R to PCBs with different AhR activation abilities also varied CYP19 and CYP1A1 expression in dissimilar patterns, although the CYP19 mRNA levels were in line with the AhR activation abilities of the congeners. In contrast to PCB126, PCB39, which could not activate AhR and lacked effect on CYP1A1, significantly reduced CYP19 mRNA expression. AhR apparently played an important role in CYP19 gene regulation, but it might regulate CYP19 differently from CYP1A1 in the adrenocortical cells. Regardless of the action mechanism, PCB exposure increases risk for CYP19 dysregulation.

摘要

接触多氯联苯(PCBs)会干扰许多雌激素介导的生化过程。多氯联苯可能通过改变芳香化酶基因CYP19的表达而导致这些异常。本研究表明,高浓度的多氯联苯126会增加小鼠睾丸间质I-10细胞和人肾上腺皮质H295R细胞中CYP19 mRNA的基础丰度。用绒毛膜促性腺激素或8-溴-cAMP刺激细胞可掩盖多氯联苯126的雌激素作用。多氯联苯126是核受体AhR的强效配体。用抑制剂拮抗H295R细胞的AhR活性可消除多氯联苯126诱导的CYP19表达。然而,与经典AhR靶基因CYP1A1的急剧诱导相反,多氯联苯126以缓慢渐进的方式提高基础CYP19表达和芳香化酶活性。将H295R细胞暴露于具有不同AhR激活能力的多氯联苯中,也会以不同模式改变CYP19和CYP1A1的表达,尽管CYP19 mRNA水平与同系物的AhR激活能力一致。与多氯联苯126相反,不能激活AhR且对CYP1A1无影响的多氯联苯39可显著降低CYP19 mRNA表达。AhR显然在CYP19基因调控中起重要作用,但它在肾上腺皮质细胞中对CYP19的调控可能与CYP1A1不同。无论作用机制如何,多氯联苯暴露都会增加CYP19失调的风险。

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