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The RNA-binding protein ELAVL1/HuR is essential for mouse spermatogenesis, acting both at meiotic and postmeiotic stages

机译:RNA结合蛋白ELAVL1 / HuR对小鼠的精子发生至关重要,在减数分裂和减数分裂后期均起作用

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Posttranscriptional mechanisms are crucial to regulate spermatogenesis. Accurate protein synthesis during germ cell development relies on RNA binding proteins that control the storage, stability, and translation of mRNAs in a tightly and temporally regulated manner. Here, we focused on the RNA binding protein Embryonic Lethal Abnormal Vision (ELAV) L1/Human antigen R (HuR) known to be a key regulator of posttranscriptional regulation in somatic cells but the function of which during gametogenesis has never been investigated. In this study, we have used conditional loss-and gain-of-function approaches to address this issue in mice. We show that targeted deletion of HuR specifically in germ cells leads to male but not female sterility. Mutant males are azoospermic because of the extensive death of spermatocytes at meiotic divisions and failure of spermatid elongation. The latter defect is also observed upon HuR overexpression. To elucidate further the molecular mechanisms underlying spermatogenesis defects in HuR-deleted and-overexpressing testes, we undertook a target gene approach and discovered that heat shock protein (HSP)A2/HSP70-2, a crucial regulator of spermatogenesis, was down-regulated in both situations. HuR specifically binds hspa2 mRNA and controls its expression at the translational level in germ cells. Our study provides the first genetic evidence of HuR involvement during spermatogenesis and reveals Hspa2 as a target for HuR.
机译:转录后机制对于调节精子发生至关重要。生殖细胞发育过程中准确的蛋白质合成依赖于RNA结合蛋白,该蛋白以严格的时间调控方式控制mRNA的存储,稳定性和翻译。在这里,我们专注于RNA结合蛋白胚胎致死性异常视觉(ELAV)L1 /人类抗原R(HuR),已知是体细胞转录后调控的关键调控因子,但从未研究其在配子发生过程中的功能。在这项研究中,我们使用了条件丧失和功能获得方法来解决小鼠中的这一问题。我们显示有针对性的删除HuR专门在生殖细胞中导致雄性而不是雌性不育。突变的男性是无精子的,因为减数分裂处精细胞的广泛死亡和精子伸长的失败。在HuR过表达时也观察到后一种缺陷。为了进一步阐明在HuR缺失和过表达的睾丸中精子发生缺陷的分子机制,我们进行了靶基因研究,发现热休克蛋白(HSP)A2 / HSP70-2是精子发生的关键调节因子,在人类中被下调。两种情况。 HuR特异性结合hspa2 mRNA,并控制其在生殖细胞中的翻译水平表达。我们的研究提供了在精子发生过程中HuR参与的第一个遗传证据,并揭示了Hspa2作为HuR的靶标。

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