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抑癌 miRNA 簇 miR-106b∼25 的缺失导致少精子症,miR-106b∼25 和 miR-17∼92 的协同作用是维持男性生育力所必需的。

Deficiency of the onco-miRNA cluster, miR-106b∼25, causes oligozoospermia and the cooperative action of miR-106b∼25 and miR-17∼92 is required to maintain male fertility.

机构信息

Departamento de Genética e Instituto de Biotecnología, Universidad de Granada, Labs 127 and 105a, Centro de Investigación Biomédica, Avenida del Conocimiento, 18016 Armilla, Granada, Spain.

Departamento de Bioquímica y Biología Molecular I e Instituto de Investigación Biosanitaria de Granada, Universidad de Granada, Laboratorio 127 Centro de Investigación Biomédica, Avenida del Conocimiento, 18016 Armilla, Granada, Spain.

出版信息

Mol Hum Reprod. 2020 Jun 1;26(6):389-401. doi: 10.1093/molehr/gaaa027.

Abstract

The identification of new genes involved in sexual development and gonadal function as potential candidates causing male infertility is important for both diagnostic and therapeutic purposes. Deficiency of the onco-miRNA cluster miR-17∼92 has been shown to disrupt spermatogenesis, whereas mutations in its paralog cluster, miR-106b∼25, that is expressed in the same cells, were reported to have no effect on testis development and function. The aim of this work is to determine the role of these two miRNA clusters in spermatogenesis and male fertility. For this, we analyzed miR-106b∼25 and miR-17∼92 single and double mouse mutants and compared them to control mice. We found that miR-106b∼25 knock out testes show reduced size, oligozoospermia and altered spermatogenesis. Transcriptomic analysis showed that multiple molecular pathways are deregulated in these mutant testes. Nevertheless, mutant males conserved normal fertility even when early spermatogenesis and other functions were disrupted. In contrast, miR-17∼92+/-; miR-106b∼25-/- double mutants showed severely disrupted testicular histology and significantly reduced fertility. Our results indicate that miR-106b∼25 and miR-17∼92 ensure accurate gene expression levels in the adult testis, keeping them within the required thresholds. They play a crucial role in testis homeostasis and are required to maintain male fertility. Hence, we have identified new candidate genetic factors to be screened in the molecular diagnosis of human males with reproductive disorders. Finally, considering the well-known oncogenic nature of these two clusters and the fact that patients with reduced fertility are more prone to testicular cancer, our results might also help to elucidate the molecular mechanisms linking both pathologies.

摘要

鉴定新的与性发育和性腺功能相关的基因,作为导致男性不育的潜在候选基因,这对于诊断和治疗都非常重要。已经表明,miR-17∼92 癌基因 miRNA 簇的缺失会破坏精子发生,而其在相同细胞中表达的 miR-106b∼25 基因簇的突变对睾丸发育和功能没有影响。本研究旨在确定这两个 miRNA 簇在精子发生和男性生育力中的作用。为此,我们分析了 miR-106b∼25 和 miR-17∼92 单突变和双突变小鼠,并将其与对照小鼠进行了比较。我们发现,miR-106b∼25 敲除的睾丸体积减小,精子数量减少,精子发生发生改变。转录组分析表明,这些突变睾丸中多个分子途径失调。然而,即使早期精子发生和其他功能受到干扰,突变雄性仍保持正常的生育能力。相比之下,miR-17∼92+/-;miR-106b∼25-/-双突变体显示出严重破坏的睾丸组织学和显著降低的生育能力。我们的研究结果表明,miR-106b∼25 和 miR-17∼92 确保了成年睾丸中基因表达水平的准确性,使它们保持在所需的阈值内。它们在睾丸稳态中发挥着至关重要的作用,是维持雄性生育力所必需的。因此,我们已经确定了新的候选遗传因素,可以在具有生殖障碍的人类男性的分子诊断中进行筛选。最后,鉴于这两个簇的众所周知的致癌性质,以及生育能力降低的患者更容易发生睾丸癌的事实,我们的研究结果也可能有助于阐明这两种病理之间的分子机制联系。

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