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揭示仓鼠中INSL3/RXFP2信号通路的内分泌格局。

Revealing the endocrine landscape of INSL3/RXFP2 signaling in hamster.

作者信息

Ruiz Aidet, Ramos Luis

机构信息

Department of Reproductive Biology, Instituto Nacional de Ciencias Médicas y Nutrición Salvador Zubirán, México City, México.

出版信息

PLoS One. 2025 Aug 12;20(8):e0329696. doi: 10.1371/journal.pone.0329696. eCollection 2025.

Abstract

In mammals, insulin-like peptide 3 (INSL3) and its cognate receptor (RXFP2) are reported to be essential regulators of male reproductive physiology. It is also believed that INSL3/RXFP2 signaling has a role in female ovarian function and follicle development, although its exact mechanisms and functions are still being studied. This research aimed to explore the transcriptional landscape of INSL3/RXFP2 genes in adult hamsters. The cloned cDNA fragments of INSL3/RXFP2 were 888 and 3233 base-pairs (bp), including an open reading frame of 375 bp and 2211 bp, encoding 125 and 737 amino acids, respectively. The phylogenetic relationships, gene function predictions, and three-dimensional structure predictions of INSL3/RXFP2 revealed evolutionary conserved domains. Quantification analysis showed that INSL3 mRNA was highly expressed in the testis, male adrenal glands, and ovary, weakly expressed in male reproductive glands and the female adrenal gland, and barely expressed in the male hypothalamus. INSL3 mRNA expression peaked in ovaries during the proestrus phase, indicating sex-steroid-dependent regulation. RXFP2 mRNA was mainly expressed in the male hypothalamus and uterus, slightly lower in the female cerebellum, epididymis, and ovary, and much lower in the female hypothalamus, male cerebellum, and testis. The RXFP2 in the uterus exhibited the highest expression during the proestrus phase, suggesting regulation via sex steroids. Our findings suggest that sexually dimorphic INSL3/RXFP2 signaling plays a novel role in the reproductive and endocrine systems, particularly in uterine tissue. These results suggest that INSL3/RXFP2 signaling in the hamster model may provide an alternative avenue for studying human female reproduction and endocrine disorders in conditions such as endometriosis or uterine disease in future clinical research.

摘要

在哺乳动物中,胰岛素样肽3(INSL3)及其同源受体(RXFP2)据报道是雄性生殖生理学的重要调节因子。也有人认为,INSL3/RXFP2信号传导在雌性卵巢功能和卵泡发育中起作用,尽管其确切机制和功能仍在研究中。本研究旨在探索成年仓鼠中INSL3/RXFP2基因的转录图谱。克隆的INSL3/RXFP2 cDNA片段分别为888和3233个碱基对(bp),包括375 bp和2211 bp的开放阅读框,分别编码125和737个氨基酸。INSL3/RXFP2的系统发育关系、基因功能预测和三维结构预测揭示了进化保守结构域。定量分析表明,INSL3 mRNA在睾丸、雄性肾上腺和卵巢中高表达,在雄性生殖腺和雌性肾上腺中弱表达,在雄性下丘脑几乎不表达。INSL3 mRNA表达在发情前期的卵巢中达到峰值,表明存在性类固醇依赖性调节。RXFP2 mRNA主要在雄性下丘脑和子宫中表达,在雌性小脑、附睾和卵巢中略低,在雌性下丘脑、雄性小脑和睾丸中更低。子宫中的RXFP2在发情前期表达最高,表明通过性类固醇进行调节。我们的研究结果表明,两性异形的INSL3/RXFP2信号传导在生殖和内分泌系统中发挥新作用,特别是在子宫组织中。这些结果表明,仓鼠模型中的INSL3/RXFP2信号传导可能为未来临床研究中研究诸如子宫内膜异位症或子宫疾病等情况下的人类女性生殖和内分泌紊乱提供一条替代途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c39d/12342288/f9dde54ef646/pone.0329696.g001.jpg

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