平滑肌AKG/OXGR1信号调控附睾液酸碱平衡和精子成熟

Chang Xu, Yexian Yuan, Cha Zhang, Yuchuan Zhou, Jinping Yang, Huadong Yi, Ishwari Gyawali, Jingyi Lu, Sile Guo, Yunru Ji, Chengquan Tan, Songbo Wang, Yongliang Zhang, Q. Jiang, G. Shu
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引用次数: 1

摘要

不孕不育是一个全球性的问题,归因于遗传缺陷、生活方式、营养和任何其他影响生殖系统局部代谢和生态位微环境的因素。2-氧戊二酸受体1(OXGR1)在睾丸中大量表达;然而,OXGR1在男性生殖系统中的细胞分布和生物学功能尚不清楚。在目前的研究中,我们证明OXGR1主要在附睾平滑肌细胞(SMC)中表达。衰老和热应激显著降低了OXGR1在附睾中的表达。使用OXGR1全局敲除和附睾特异性OXGR1敲除模型,我们揭示了OXGR1对附睾精子成熟和液体酸碱平衡至关重要。补充OXGR1的内源性配体α-酮戊二酸(AKG)可有效逆转衰老和热应激引起的附睾精子成熟障碍。此外,体外研究表明,AKG显著刺激附睾SMC瞬时细胞内钙的释放,并通过OXGR1显著降低附睾SMC中的pHi值。从机制上讲,我们发现AKG/OXGR1通过细胞内钙信号介导,显著增加了附睾SMC中Na+/HCO3−协同转运蛋白(NBCe1)mRNA的表达。局部AKG/OXGR1系统改变附睾液pH值和HCO3−浓度,从而通过细胞内钙信号和NBCe1 mRNA表达调节精子成熟。这项研究首次揭示了OXGR1在男性生育能力中的关键作用,并阐明了代谢中间体在生殖营养干预中的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Smooth muscle AKG/OXGR1 signaling regulates epididymal fluid acid-base balance and sperm maturation
Infertility is a global concern attributed to genetic defects, lifestyle, nutrition, and any other factors that affect the local metabolism and niche microenvironment of the reproductive system. 2-oxoglutarate receptor 1 (OXGR1) is abundantly expressed in the testis; however, its cellular distribution and biological function of OXGR1 in the male reproductive system remain unclear. In the current study, we demonstrated that OXGR1 is primarily expressed in epididymal smooth muscle cells (SMCs). Aging and heat stress significantly reduced OXGR1 expression in the epididymis. Using OXGR1 global knockout and epididymal-specific OXGR1 knockdown models, we revealed that OXGR1 is essential for epididymal sperm maturation and fluid acid-base balance. Supplementation of α-ketoglutaric acid (AKG), the endogenous ligand of OXGR1, effectively reversed epididymal sperm maturation disorders caused by aging and heat stress. Furthermore, in vitro studies showed that AKG markedly stimulated the release of instantaneous intracellular calcium from epididymal SMCs and substantially reduced the pHi value in the epididymal SMCs via OXGR1. Mechanistically, we discovered that AKG/OXGR1 considerably increased the expression of Na +/HCO3− cotransporter (NBCe1) mRNA in the epididymal SMCs, mediated by intracellular calcium signaling. The local AKG/OXGR1 system changed the epididymal fluid pH value and HCO3− concentration, thereby regulating sperm maturation via intracellular calcium signaling and NBCe1 mRNA expression. This studyfor the first time reveals the crucial role of OXGR1 in male fertility and sheds light on the applicability of metabolic intermediates in the nutritional intervention of reproduction.
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