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Androgen Receptor Roles in Spermatogenesis and Fertility: Lessons from Testicular Cell-Specific Androgen Receptor Knockout Mice

机译:雄激素受体在精子发生和生育中的作用:睾丸细胞特异性雄激素受体基因敲除小鼠的经验教训

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摘要

Androgens are critical steroid hormones that determine the expression of the male phenotype, including the outward development of secondary sex characteristics as well as the initiation and maintenance of spermatogenesis. Their actions are mediated by the androgen receptor (AR), a member of the nuclear receptor superfamily. AR functions as a ligand-dependent transcription factor, regulating expression of an array of androgen-responsive genes. Androgen and the AR play important roles in male spermatogenesis and fertility. The recent generation and characterization of male total and conditional AR knockout mice from different laboratories demonstrated the necessity of AR signaling for both external and internal male phenotype development. As expected, the male total AR knockout mice exhibited female-typical external appearance (including a vagina with a blind end and a clitoris-like phallus), the testis was located abdominally, and germ cell development was severely disrupted, which was similar to a human complete androgen insensitivity syndrome or testicular feminization mouse. However, the process of spermatogenesis is highly dependent on autocrine and paracrine communication among testicular cell types, and the disruption of AR throughout an experimental animal cannot answer the question about how AR in each type of testicular cell can play roles in the process of spermatogenesis. In this review, we provide new insights by comparing the results of cell-specific AR knockout in germ cells, peritubular myoid cells, Leydig cells, and Sertoli cells mouse models that were generated by different laboratories to see the consequent defects in spermatogenesis due to AR loss in different testicular cell types in spermatogenesis. Briefly, this review summarizes these results as follows: 1) the impact of lacking AR in Sertoli cells mainly affects Sertoli cell functions to support and nurture germ cells, leading to spermatogenesis arrest at the diplotene primary spermatocyte stage prior to the accomplishment of first meiotic division; 2) the impact of lacking AR in Leydig cells mainly affects steroidogenic functions leading to arrest of spermatogenesis at the round spermatid stage; 3) the impact of lacking AR in the smooth muscle cells and peritubular myoid cells in mice results in similar fertility despite decreased sperm output as compared to wild-type controls; and 4) the deletion of AR gene in mouse germ cells does not affect spermatogenesis and male fertility. This review tries to clarify the useful information regarding how androgen/AR functions in individual cells of the testis. The future studies of detailed molecular mechanisms in these in vivo animals with cell-specific AR knockout could possibly lead to useful insights for improvements in the treatment of male infertility, hypogonadism, and testicular dysgenesis syndrome, and in attempts to create safe as well as effective male contraceptive methods.
机译:雄激素是决定男性表型表达的关键类固醇激素,包括表象的继发性特征的向外发展以及精子发生的起始和维持。它们的作用由核受体超家族成员雄激素受体(AR)介导。 AR起配体依赖性转录因子的作用,调节雄激素响应基因阵列的表达。雄激素和AR在男性精子发生和生育中起重要作用。来自不同实验室的雄性总和条件性AR基因敲除小鼠的最新世代和特征证明了内部和外部雄性表型发育的AR信号传导的必要性。正如预期的那样,雄性全部AR基因敲除小鼠表现出典型的雌性外观(包括带有盲端的阴道和阴蒂样的阴茎),睾丸位于腹部,生殖细胞发育受到严重破坏,这与正常情况相似。人类完全雄激素不敏感综合征或睾丸女性化小鼠。然而,精子发生的过程高度依赖于睾丸细胞类型之间的自分泌和旁分泌通讯,整个实验动物中AR的破坏都无法回答关于每种睾丸细胞中的AR在精子发生过程中如何发挥作用的问题。在这篇综述中,我们通过比较由不同实验室产生的生殖细胞,肾小管肌样细胞,Leydig细胞和Sertoli细胞小鼠模型中的细胞特异性AR敲除的结果来提供新的见解,以查看AR引起的精子发生的缺陷精子发生过程中不同睾丸细胞类型的损失。简而言之,本综述总结了以下结果:1)Sertoli细胞缺乏AR的影响主要影响Sertoli细胞支持和培育生殖细胞的功能,导致精子发生停滞在首次减数分裂分裂之前的二倍体初生精子细胞阶段。 ; 2)睾丸间质细胞缺乏AR的影响主要影响类固醇生成功能,从而导致圆形精子形成阶段精子发生停止。 3)与野生型对照组相比,尽管精子产量减少,但小鼠平滑肌细胞和肾小管周围肌样细胞缺乏AR的影响导致相似的受精率; 4)小鼠生殖细胞中AR基因的缺失不影响精子发生和雄性育性。这篇综述试图阐明有关雄激素/ AR如何在睾丸单个细胞中发挥作用的有用信息。对这些具有细胞特异性AR基因敲除的体内动物的详细分子机制的进一步研究可能会为改善男性不育症,性腺功能低下和睾丸发育不全综合征的治疗提供有益的见解,并试图创造安全有效的方法。男性避孕方法。

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