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Apoptosis of Sertoli cells after conditional ablation of murine double minute 2 (Mdm2) gene is p53-dependent and results in male sterility

机译:有条件消融小鼠双分钟2(Mdm2)基因后Sertoli细胞凋亡是p53依赖性的,并导致雄性不育

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Beside its well-documented role in carcinogenesis, the function of p53 family has been more recently revealed in development and female reproduction, but it is still poorly documented in male reproduction. We specifically tested this possibility by ablating Mdm2, an E3 ligase that regulates p53 protein stability and transactivation function, specifically in Sertoli cells (SCs) using the AMH-Cre line and created the new SC-Mdm2(-/-) line. Heterozygous SC-Mdm2(-/+) adult males were fertile, but SC-Mdm2(-/-) males were infertile and exhibited: a shorter ano-genital distance, an extra duct along the vas deferens that presents a uterus-like morphology, degenerated testes with no organized seminiferous tubules and a complete loss of differentiated germ cells. In adults, testosterone levels as well as StAR, P450c17 (Cyp17a1) and P450scc (Cyp11a1) mRNA levels decreased significantly, and both plasma LH and FSH levels increased. A detailed investigation of testicular development indicated that the phenotype arose during fetal life, with SC-Mdm2(-/-) testes being much smaller at birth. Interestingly, Leydig cells remained present until adulthood and fetal germ cells abnormally initiated meiosis. Inactivation of Mdm2 in SCs triggered p53 activation and apoptosis as early as 15.5 days post conception with significant increase in apoptotic SCs. Importantly, testis development occurred normally in SC-Mdm2(-/-) lacking p53 mice (SC-Mdm2(-/-)p53(-/-)) and accordingly, these mice were fertile indicating that the aforementioned phenotypes are entirely p53-dependent. These data not only highlight the importance of keeping p53 in check for proper testicular development and male fertility but also certify the critical role of SCs in the maintenance of meiotic repression.
机译:除了其在致癌作用中的有据可查的作用外,p53家族的功能最近在发育和雌性生殖中得到了揭示,但在雄性生殖中却鲜有记载。我们通过消融Mdm2(一种调节p53蛋白稳定性和反式激活功能的E3连接酶,特别是使用AMH-Cre系在Sertoli细胞(SCs)中的表达)来测试这种可能性,并创建了新的SC-Mdm2(-/-)系。杂合子SC-Mdm2(-/ +)成年雄性可育,但SC-Mdm2(-/-)成年雄性不育并表现出:较短的生殖器距离,沿着输精管的额外导管,呈现子宫样形态,退化的睾丸,没有有组织的生精小管,完全失去了分化的生殖细胞。在成年人中,睾丸激素水平以及StAR,P450c17(Cyp17a1)和P450scc(Cyp11a1)mRNA水平显着降低,血浆LH和FSH水平均升高。对睾丸发育的详细研究表明,该表型在胎儿生命期间出现,SC-Mdm2(-/-)睾丸在出生时要小得多。有趣的是,Leydig细胞一直存在直到成年,胎儿生殖细胞异常引发减数分裂。 SCs中Mdm2的失活最早在受孕后15.5天触发了p53的活化和凋亡,凋亡SCs明显增加。重要的是,睾丸发育正常发生在缺乏p53小鼠的SC-Mdm2(-/-)(SC-Mdm2(-/-)p53(-/-))中,因此这些小鼠可育,表明上述表型完全是p53-依赖。这些数据不仅突显了保持p53正常睾丸发育和男性生育能力检查的重要性,而且证明了SC在维持减数分裂抑制中的关键作用。

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