首页> 美国卫生研究院文献>Journal of the Endocrine Society >Upregulation of Aryl Hydrocarbon Receptor in Granulosa Cells by Endoplasmic Reticulum Stress Contributes to the PCOS Pathophysiology
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Upregulation of Aryl Hydrocarbon Receptor in Granulosa Cells by Endoplasmic Reticulum Stress Contributes to the PCOS Pathophysiology

机译:通过内质网应力造粒细胞淀粉烃受体的上调有助于PCOS病理生理学

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摘要

Studies have demonstrated that endocrine disrupting chemicals (EDC) are involved in the pathophysiology of PCOS, and aryl hydrocarbon receptor (AHR) mediates the cellular effect of EDC by inducing xenobiotic metabolizing enzymes including cytochrome P450 1B1 (CYP1B1). However, recent studies suggest the novel role of AHR in various diseases, including obesity and cancer progression, independent from the EDC metabolism. We previously demonstrated that endoplasmic reticulum (ER) stress, a newly recognized local factor, contributes to PCOS pathology by affecting diverse functions of granulosa cells. We hypothesized that ER stress induces the expression of AHR and activates its downstream signaling in granulosa cells, irrespective of the presence of EDCs, thereby promoting PCOS pathogenesis. At first, we determined the upregulation of AHR, AHR nuclear translocator (ARNT), and AHR target gene cytochrome P450 1B1 (CYP1B1) in the granulosa cells of PCOS patients and model mice by immunohistochemical staining and qPCR. We examined CYP1B1 as a representative AHR target gene. Treatment of cultured human granulosa-lutein cells (GLCs) with tunicamycin (ER stress inducer) upregulated the expression of AHR, ARNT and CYP1B1. Knockdown of AHR decreased the tunicamycin-induced expression and activity of CYP1B1, suggesting the intermediary role of AHR in upregulation of AHR activity by ER stress. To confirm the role of AHR in vivo, we administered the AHR antagonist {"type":"entrez-nucleotide","attrs":{"text":"CH223191","term_id":"44935898","term_text":"CH223191"}}CH223191 to PCOS model mice. The administration of the antagonist restored estrous cycling and decreased the number of atretic antral follicles, concomitant with downregulation of AHR and CYP1B1 in granulosa cells. Taken together, this study indicates that AHR and downstream signaling are activated by ER stress in GLCs of PCOS. Moreover, downregulation of local AHR expression and activation restores a normal reproductive phenotype in a PCOS mouse model. Our findings demonstrate that AHR activated by ER stress in the follicular microenvironment contributes to PCOS pathology, and that AHR represents a novel therapeutic target for PCOS.
机译:研究表明,内分泌破坏化学品(EDC)参与PCOS的病理生理学,芳基烃受体(AHR)通过诱导包括细胞色素P4501B1(CYP1B1)的异骨代谢酶来介导EDC的细胞效应。然而,最近的研究表明AHR在各种疾病中的新的作用,包括肥胖症和癌症进展,与EDC新陈代谢无关。我们之前证明内质网(ER)应力,一种新公认的局部因素,通过影响颗粒细胞的不同功能来促进PCOS病理。我们假设ER应激诱导AHR的表达,并在颗粒细胞中激活其下游信号,而不管EDC的存在,从而促进PCOS发病机制。首先,我们确定通过免疫组织化学染色和QPCR在PCOS患者的颗粒细胞和模型小鼠的颗粒细胞中上调AHR,AHR核转移率(ARNNT)和AHR靶基因细胞色素P4501B1(CYP1B1)。我们检查了CYP1B1作为代表性AHR靶基因。用唐氏霉素(ER应激诱导剂)治疗培养的人颗粒体 - 叶黄素细胞(GLC)(ER应激诱导剂)上调AHR,ARNT和CYP1B1的表达。 AHR的敲低降低了CYP1B1的胞苷诱导的CYP1B1的表达和活性,表明AHR中的中介作用在ER应激上的USHR活性上调。要确认AHR在体内的作用,我们管理的AHR拮抗剂{“类型”:“entrez-nucleotide”,“attrez”:{“text”:“ch223191”,“term_id”:“44935898”,“term_text”: “CH223191”}} CH223191至PCOS模型小鼠。拮抗剂的给药恢复了溶解的循环并降低了贫瘠嗜睡卵泡的数量,伴随着颗粒细胞中AHR和CYP1B1的下调。在一起,本研究表明AHR和下游信号通过PCOS的GLC中的ER应力激活。此外,局部AHR表达和激活的下调恢复了PCOS小鼠模型中的正常生殖表型。我们的研究结果表明,滤泡微环境中ER应激激活的AHR有助于PCOS病理学,并且AHR代表PCOS的新型治疗靶标。

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