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双酚 A 干扰青春期小鼠卵巢中 lncRNA Fhadlos2 和 RUNX3 的结合。

Bisphenol A interferes with lncRNA Fhadlos2 and RUNX3 association in adolescent mouse ovary.

机构信息

Anhui Province Key Laboratory of Environmental Hormone and Reproduction, Fuyang Normal University, Fuyang, China; Anhui Province Key Laboratory of Embryo Development and Reproductive Regulation, Fuyang Normal University, Fuyang, China.

The Second People's Hospital of Fuyang, Fuyang, China.

出版信息

Ecotoxicol Environ Saf. 2023 Jul 1;259:115060. doi: 10.1016/j.ecoenv.2023.115060. Epub 2023 May 23.

Abstract

Bisphenol A (BPA) has a number of adverse effects on the reproductive development of females. In particular, the mechanism of disruption of ovarian development in adolescent mice is still unclear. Based on transcriptome sequencing results, a differentially expressed lncRNA, Fhad1os2, was detected in the ovaries of BPA-exposed pubertal mice. In our study, the lncRNA Fhad1os2, localized in the ovarian granulosa cell cytoplasm, could regulate the proliferation of mouse ovarian granulosa cells. Mechanistically, the results of RNA pull-down experiments as well as mass spectrometry analysis showed that ERα, an interfering signaling molecule of BPA, could directly bind lncRNA Fhad1os2 and decrease the transcription of lncRNA Fhad1os2 in response to the estrogen-like effect of BPA. BPA exposure also caused abnormal lncRNA Fhad1os2 pulldown protein-related signaling pathways in the ovaries of adolescent mice. Furthermore, lncRNA Fhad1os2 interacted with RUNX3, a transcription factor related to follicle development and hormone synthesis. As a negative regulator, lncRNA Fhad1os2 transactivated the expression of Runx3, which in turn induced RUNX3 to positively regulate aromatase (Cyp19a1) expression in mouse ovarian granulosa cells and promote estrogen synthesis. In conclusion, our study indicates that BPA exposure interferes with ERα-regulated lncRNA Fhad1os2 interactions with RUNX3 in pubertal mice, affecting estrogen synthesis in mouse granulosa cells and contributing to premature ovarian maturation in pubertal mice.

摘要

双酚 A (BPA) 对女性生殖发育有许多不良影响。特别是,青春期小鼠卵巢发育中断的机制尚不清楚。基于转录组测序结果,在 BPA 暴露的青春期小鼠卵巢中检测到一种差异表达的长非编码 RNA,Fhad1os2。在我们的研究中,定位于卵巢颗粒细胞细胞质中的长非编码 RNA Fhad1os2 可以调节小鼠卵巢颗粒细胞的增殖。从机制上讲,RNA 下拉实验和质谱分析的结果表明,BPA 的干扰信号分子 ERα 可以直接结合长非编码 RNA Fhad1os2,并响应 BPA 的雌激素样作用降低 lncRNA Fhad1os2 的转录。BPA 暴露还导致青春期小鼠卵巢中异常的 lncRNA Fhad1os2 下拉蛋白相关信号通路。此外,lncRNA Fhad1os2 与 RUNX3 相互作用,后者与卵泡发育和激素合成有关。作为负调节剂,lncRNA Fhad1os2 反式激活转录因子 Runx3 的表达,进而诱导 RUNX3 正向调节小鼠卵巢颗粒细胞中的芳香化酶(Cyp19a1)表达并促进雌激素合成。总之,我们的研究表明,BPA 暴露干扰了 ERα 调节的 lncRNA Fhad1os2 与 RUNX3 在青春期小鼠中的相互作用,影响了小鼠颗粒细胞中的雌激素合成,并导致青春期小鼠卵巢过早成熟。

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