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环境多环芳烃混合物在人血液中的水平通过 ESR1 和 GPER1 而非 ESR2 受体降低颗粒细胞的雌二醇分泌。

Environmental polycyclic aromatic hydrocarbons mixture, in human blood levels, decreased oestradiol secretion by granulosa cells via ESR1 and GPER1 but not ESR2 receptor.

机构信息

Department of Physiology and Toxicology of Reproduction, Institute of Zoology and Biomedical Research, Jagiellonian University in Kraków, Poland.

出版信息

Hum Exp Toxicol. 2020 Mar;39(3):276-289. doi: 10.1177/0960327119886027. Epub 2019 Nov 7.

Abstract

Tissue-dependent oestrogenic and anti-oestrogenic activity of polycyclic aromatic hydrocarbons (PAHs) has been suggested. In this study, the effect of two PAH mixtures, M1 composed of all 16 priority pollutants and M2 composed of five (noted in the highest levels) compounds, on follicle-stimulating hormone receptor (FSHR) expression, basal or FSH-induced oestradiol (E2) secretion and aromatase cytochrome P450 (P450arom) protein expression, by non-luteinised human granulosa cell line (HGrC1) was determined. In addition, the consequences of gene silencing of oestrogen receptor alfa (siESR1), oestrogen receptor beta (siESR2) and a G protein-coupled receptor (siGPER1) on the above parameters were described. Neither PAH mixture had an effect on basal FSHR protein expression; however, both mixtures increased FSH-induced FSHR expression. Decreased E2 secretion and P450arom expression was also demonstrated. In both basal and FSH treated cells, siESR1 and siGPER1 reversed the inhibitory effect of the mixtures on E2 secretion; however, in siESR2 cells, the inhibitory effect was still observed. This study showed that both classic ESR1 and GPER1 were involved in the inhibitory effect of both PAH mixtures on E2 secretion and confirmed that expression of P450arom could be downregulated through the aryl hydrocarbon receptor and additionally through the ESR2.

摘要

多环芳烃(PAHs)具有组织依赖性的雌激素和抗雌激素活性。在这项研究中,研究了两种 PAH 混合物 M1(由 16 种优先污染物组成)和 M2(由 5 种(浓度最高的)化合物组成)对卵泡刺激素受体(FSHR)表达、基础或 FSH 诱导的雌二醇(E2)分泌以及芳香化酶细胞色素 P450(P450arom)蛋白表达的影响,非黄体化人颗粒细胞系(HGrC1)。此外,还描述了雌激素受体 alfa(siESR1)、雌激素受体 beta(siESR2)和 G 蛋白偶联受体(siGPER1)基因沉默对上述参数的影响。两种 PAH 混合物都没有影响基础 FSHR 蛋白表达;然而,两种混合物都增加了 FSH 诱导的 FSHR 表达。还证明了 E2 分泌和 P450arom 表达减少。在基础和 FSH 处理的细胞中,siESR1 和 siGPER1 逆转了混合物对 E2 分泌的抑制作用;然而,在 siESR2 细胞中,仍然观察到抑制作用。本研究表明,经典的 ESR1 和 GPER1 都参与了两种 PAH 混合物对 E2 分泌的抑制作用,并证实 P450arom 的表达可以通过芳香烃受体和 ESR2 下调。

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