Laboratory for Molecular Pharmacology, Department of Biomedical Sciences, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen, Denmark.
Department of Growth and Reproduction and International Center for Research and Research Training in Endocrine Disruption of Male Reproduction and Child Health (EDMaRC), Copenhagen University Hospital - Rigshospitalet, Copenhagen, Denmark.
FASEB J. 2023 Feb;37(2):e22781. doi: 10.1096/fj.202200762RR.
The adhesion receptor ADGRA3 (GPR125) is a known spermatogonial stem cell marker, but its impact on male reproduction and fertility has not been examined. Using a mouse model lacking Adgra3 (Adgra3 ), we show that 55% of the male mice are infertile from puberty despite having normal spermatogenesis and epididymal sperm count. Instead, male mice lacking Adgra3 exhibited decreased estrogen receptor alpha expression and transient dilation of the epididymis. Combined with an increased estradiol production, this indicates a post-pubertal hormonal imbalance and fluid retention. Dye injection revealed a blockage between the ejaculatory duct and the urethra, which is rare in mice suffering from infertility, thereby mimicking the etiologies of obstructive azoospermia found in human male infertility. To summarize, male reproductive tract development is dependent on ADGRA3 function that in concert with estrogen signaling may influence fluid handling during sperm maturation and storage.
黏附受体 ADGRA3(GPR125)是一种已知的精原干细胞标志物,但它对男性生殖和生育能力的影响尚未被研究过。我们使用缺乏 Adgra3(Adgra3 )的小鼠模型,尽管精子发生和附睾精子计数正常,但仍有 55%的雄性小鼠从青春期开始就不育。相反,缺乏 Adgra3 的雄性小鼠表现出雌激素受体 α 表达减少和附睾短暂扩张。再加上雌激素产生增加,这表明青春期后存在激素失衡和液体潴留。染料注射显示射精管和尿道之间存在阻塞,这种情况在不育的小鼠中很少见,因此模拟了人类男性不育中发现的梗阻性无精子症的病因。总之,雄性生殖道的发育依赖于 ADGRA3 功能,该功能与雌激素信号传导一起可能影响精子成熟和储存过程中的液体处理。