Ming Zhenhua, Bagheri-Fam Stefan, Frost Emily R, Ryan Janelle M, Harley Vincent R
Sex Development Laboratory, Hudson Institute of Medical Research, Melbourne, VIC, Australia.
Department of Molecular and Translational Science, Monash University, Melbourne, VIC, Australia.
Front Cell Dev Biol. 2024 Feb 15;12:1337714. doi: 10.3389/fcell.2024.1337714. eCollection 2024.
SOX9 is a key transcription factor for testis determination and development. Mutations in and around the gene contribute to Differences/Disorders of Sex Development (DSD). However, a substantial proportion of DSD patients lack a definitive genetic diagnosis. SOX9 target genes are potentially DSD-causative genes, yet only a limited subset of these genes has been investigated during testis development. We hypothesize that SOX9 target genes play an integral role in testis development and could potentially be causative genes in DSD. In this study, we describe a novel testicular target gene of SOX9, . exhibits high expression levels in the SOX9-expressing male Sertoli cells compared to female granulosa cells in mouse fetal gonads between embryonic day 11.5 (E11.5) and E13.5. In XY knockout gonads, expression is markedly downregulated. Moreover, culture of E11.5 XY mouse gonads with TRPC3 inhibitor Pyr3 resulted in decreased germ cell numbers caused by reduced germ cell proliferation. is also expressed in endothelial cells and Pyr3-treated E11.5 XY mouse gonads showed a loss of the coelomic blood vessel due to increased apoptosis of endothelial cells. In the human testicular cell line NT2/D1, TRPC3 promotes cell proliferation and controls cell morphology, as observed by xCELLigence and HoloMonitor real-time analysis. In summary, our study suggests that SOX9 positively regulates in mouse testes and TRPC3 may mediate SOX9 function during Sertoli, germ and endothelial cell development.
SOX9是睾丸决定和发育的关键转录因子。该基因内部及其周围的突变会导致性发育差异/障碍(DSD)。然而,相当一部分DSD患者缺乏明确的基因诊断。SOX9靶基因可能是导致DSD的基因,但在睾丸发育过程中,仅对这些基因中的有限子集进行了研究。我们假设SOX9靶基因在睾丸发育中起不可或缺的作用,并且可能是DSD的致病基因。在本研究中,我们描述了一种新的SOX9睾丸靶基因, 。与胚胎第11.5天(E11.5)至E13.5期间小鼠胎儿性腺中的雌性颗粒细胞相比, 在表达SOX9的雄性支持细胞中表现出高表达水平。在XY 基因敲除性腺中, 的表达明显下调。此外,用TRPC3抑制剂Pyr3培养E11.5 XY小鼠性腺会导致生殖细胞数量减少,这是由生殖细胞增殖减少引起的。 在内皮细胞中也有表达,并且Pyr3处理的E11.5 XY小鼠性腺由于内皮细胞凋亡增加而出现体腔血管缺失。在人睾丸细胞系NT2/D1中,通过xCELLigence和HoloMonitor实时分析观察到,TRPC3促进细胞增殖并控制细胞形态。总之,我们的研究表明,SOX9在小鼠睾丸中正向调节 ,并且TRPC3可能在支持细胞、生殖细胞和内皮细胞发育过程中介导SOX9的功能。