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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Glial cell-line derived neurotrophic factor-mediated RET signaling regulates spermatogonial stem cell fate
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Glial cell-line derived neurotrophic factor-mediated RET signaling regulates spermatogonial stem cell fate

机译:胶质细胞源性神经营养因子介导的RET信号调节精原干细胞的命运

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摘要

Normal spermatogenesis is essential for reproduction and depends on proper spermatogonial stem cell (SSC) function. Genes and signaling pathways that regulate SSC function have not been well defined. We report that glial cell-line-derived neurotrophic factor (GDNF) signaling through the RET tyrosine kinase/GFRA1 receptor complex is required for spermatogonial self-renewal in mice. GFRA1 and RET expression was identified in a subset of gonocytes at birth, was restricted to SSCs during normal spermatogenesis, and RET expressing cells were abundant in a cryptorchid model of SSC self-renewal. We used the whole-testis transplantation technique to overcome the limitation of neonatal lethality of Gdnf-, Gfra1-, and Ret-deficient mice and found that each of these genes is required for postnatal spermatogenesis and not for embryological testes development. Each mutant testis shows severe SSC depletion by Postnatal Day 7 during the first wave of spermatogenesis. These defects were due to lack of SSC proliferation and an inability of SSCs to maintain an undifferentiated state. Our results demonstrate that GDNF-mediated RET signaling is critical for the fate of undifferentiated spermatogonia and that abnormalities in this pathway may contribute to male infertility and testicular germ cell tumors.
机译:正常的精子发生对于生殖至关重要,并取决于适当的精​​原干细胞(SSC)功能。调节SSC功能的基因和信号传导途径尚未明确。我们报告说,通过RET酪氨酸激酶/ GFRA1受体复合物的神经胶质细胞系衍生的神经营养因子(GDNF)信号是小鼠精原体自我更新所必需的。 GFRA1和RET的表达在出生时的一个精子细胞亚群中被确定,在正常的精子发生过程中仅限于SSC,并且在SSC自我更新的隐睾模型中RET表达的细胞丰富。我们使用了全睾丸移植技术来克服Gdnf-,Gfra1-和Ret缺陷小鼠的新生儿致死性的局限性,发现这些基因中的每一个对于出生后的精子发生而不是胚胎学的发育都是必需的。在精子发生的第一波期间,每个突变的睾丸在产后第7天都显示出严重的SSC消耗。这些缺陷是由于缺乏SSC增殖和SSC无法维持未分化状态所致。我们的结果表明,GDNF介导的RET信号对于未分化的精原细胞的命运至关重要,并且该途径的异常可能会导致男性不育和睾丸生殖细胞肿瘤。

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