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首页> 外文期刊>Archives of Toxicology >Cadmium modulates expression of aryl hydrocarbon receptor-associated genes in rat uterus by interaction with the estrogen receptor.
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Cadmium modulates expression of aryl hydrocarbon receptor-associated genes in rat uterus by interaction with the estrogen receptor.

机译:镉通过与雌激素受体的相互作用来调节大鼠子宫中与芳烃受体相关的基因的表达。

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摘要

Estrogen-like effects of the heavy metal cadmium have been reported in both in vitro and in vivo studies. Yet, the molecular mechanisms involved in the hormonal activity of cadmium ions have not been fully elucidated. There are extensive data on cross-talk between aryl hydrocarbon receptor (AhR) and estrogen receptor (ER). Recently, 17β-estradiol (E(2)) was found to modulate the expression of AhR and AhR-regulated genes in rat uterus (Kretzschmar et al. in Mol Cell Endocrinol 321:253-257, 2010). Thus, we hypothesized that cadmium may also affect AhR signaling and examined whether cadmium or E(2) modulate AhR-associated genes via the ER in rat uterus. Ovariectomized Wistar rats received E(2) (0.5 mg/kg bw) or cadmium chloride (0.05 and 2 mg/kg bw i.p.) alone and in combination with the pure anti-estrogen ZK191703. We also co-treated a group with E(2) and cadmium 2 mg/kg bw to assess how they act in concert. Uterus wet weight, uterus epithelial height, complement C3 mRNA, and progesterone receptor (PR) protein expression served as estrogen response parameters, and expression of Mt1a mRNA was analyzed as a cadmium responsive gene. The expression of AhR protein and AhR-associated gene expression, i.e., Ahr, Arnt1, Arnt2, Cyp1a1, and Gsta2, were analyzed to examine effects on AhR-mediated signaling pathways in the uterus of all groups. Both, E(2) and cadmium induced C3 and PR expression, and this was antagonized by ZK191703. Mt1a expression was clearly induced by cadmium but slightly reduced by E(2) compared to controls. Uterine Ahr, Arnt1, Arnt2, and Cyp1a1 expression was modulated by E(2) via the ER since down-regulation by E(2) was reversed by anti-estrogen. Cadmium apparently also modulated Cyp1a1 expression via the ER. Furthermore, cadmium-induced AhR was antagonized by E(2,) and anti-estrogen-induced Gsta2 expression was antagonized by cadmium. Together our findings provide evidence for cross-talk of ER and AhR in the rat uterus.
机译:在体外和体内研究中均已报道了重金属镉的类雌激素作用。然而,尚未完全阐明涉及镉离子激素活性的分子机制。关于芳烃受体(AhR)与雌激素受体(ER)之间的串扰,已有大量数据。最近,发现17β-雌二醇(E(2))调节AhR和AhR调节的基因在大鼠子宫中的表达(Kretzschmar等人在Mol Cell Endocrinol 321:253-257,2010)。因此,我们假设镉也可能影响AhR信号,并检查镉或E(2)是否通过大鼠子宫中的ER调节与AhR相关的基因。卵巢切除的Wistar大鼠单独接受E(2)(0.5 mg / kg bw)或氯化镉(0.05和2 mg / kg bw i.p.),并与纯抗雌激素ZK191703联合使用。我们还与E(2)和2 mg / kg体重的镉共同治疗了一组,以评估它们的协同作用。子宫湿重,子宫上皮高度,补体C3 mRNA和孕激素受体(PR)蛋白表达用作雌激素响应参数,而Mt1a mRNA表达则作为镉响应基因进行分析。分析AhR蛋白的表达和与AhR相关的基因表达,即Ahr,Arnt1,Arnt2,Cyp1a1和Gsta2,以检查对所有组子宫中AhR介导的信号通路的影响。 E(2)和镉都诱导C3和PR表达,这被ZK191703拮抗。 Mt1a表达显然由镉诱导,但与对照相比,E(2)略有降低。子宫Ahr,Arnt1,Arnt2和Cyp1a1的表达受E(2)通过ER调节,因为E(2)的下调作用被抗雌激素逆转。镉显然也通过ER调节了Cyp1a1的表达。此外,镉诱导的AhR被E(2)拮抗,抗雌激素诱导的Gsta2表达被镉拮抗。我们的研究结果共同为大鼠子宫中ER和AhR的串扰提供了证据。

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