Key Laboratory of Adaptation and Evolution of Plateau Biota, Northwest Institute of Plateau Biology, Chinese Academy of Sciences, Xining, 810001, Qinghai, China.
University of Chinese Academy of Sciences, Beijing, 100049, China.
Cell Mol Life Sci. 2024 May 9;81(1):212. doi: 10.1007/s00018-024-05249-5.
Leydig cells are essential components of testicular interstitial tissue and serve as a primary source of androgen in males. A functional deficiency in Leydig cells often causes severe reproductive disorders; however, the transcriptional programs underlying the fate decisions and steroidogenesis of these cells have not been fully defined. In this study, we report that the homeodomain transcription factor PBX1 is a master regulator of Leydig cell differentiation and testosterone production in mice. PBX1 was highly expressed in Leydig cells and peritubular myoid cells in the adult testis. Conditional deletion of Pbx1 in Leydig cells caused spermatogenic defects and complete sterility. Histological examinations revealed that Pbx1 deletion impaired testicular structure and led to disorganization of the seminiferous tubules. Single-cell RNA-seq analysis revealed that loss of Pbx1 function affected the fate decisions of progenitor Leydig cells and altered the transcription of genes associated with testosterone synthesis in the adult testis. Pbx1 directly regulates the transcription of genes that play important roles in steroidogenesis (Prlr, Nr2f2 and Nedd4). Further analysis demonstrated that deletion of Pbx1 leads to a significant decrease in testosterone levels, accompanied by increases in pregnenolone, androstenedione and luteinizing hormone. Collectively, our data revealed that PBX1 is indispensable for maintaining Leydig cell function. These findings provide insights into testicular dysgenesis and the regulation of hormone secretion in Leydig cells.
间质细胞是睾丸间质组织的重要组成部分,是雄性动物雄激素的主要来源。间质细胞功能缺陷常导致严重的生殖障碍;然而,这些细胞的命运决定和类固醇生成的转录程序尚未完全定义。在这项研究中,我们报告 PBX1 同源域转录因子是小鼠间质细胞分化和睾酮产生的主要调节因子。 PBX1 在成年睾丸的间质细胞和成纤维细胞中高度表达。间质细胞中 Pbx1 的条件性缺失导致精子发生缺陷和完全不育。组织学检查显示,Pbx1 缺失破坏了睾丸结构,导致生精小管排列紊乱。单细胞 RNA-seq 分析表明,Pbx1 功能丧失影响祖细胞间质细胞的命运决定,并改变成年睾丸中与睾酮合成相关的基因转录。 Pbx1 直接调节在类固醇生成中起重要作用的基因的转录(Prlr、Nr2f2 和 Nedd4)。进一步分析表明,Pbx1 的缺失导致睾酮水平显著下降,同时伴有 pregnenolone、androstenedione 和促黄体生成素的增加。总之,我们的数据表明 PBX1 对于维持间质细胞功能是不可或缺的。这些发现为睾丸发育不良和间质细胞中激素分泌的调节提供了新的见解。