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Notch signaling maintains Leydig progenitor cells in the mouse testis.

机译:Notch信号可维持小鼠睾丸中的Leydig祖细胞。

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摘要

During testis development, fetal Leydig cells increase their population from a pool of progenitor cells rather than from proliferation of a differentiated cell population. However, the mechanism that regulates Leydig stem cell self-renewal and differentiation is unknown. Here, we show that blocking Notch signaling, by inhibiting gamma-secretase activity or deleting the downstream target gene Hairy/Enhancer-of-split 1, results in an increase in Leydig cells in the testis. By contrast, constitutively active Notch signaling in gonadal somatic progenitor cells causes a dramatic Leydig cell loss, associated with an increase in undifferentiated mesenchymal cells. These results indicate that active Notch signaling restricts fetal Leydig cell differentiation by promoting a progenitor cell fate. Germ cell loss and abnormal testis cord formation were observed in both gain- and loss-of-function gonads, suggesting that regulation of the Leydig/interstitial cell population is important for male germ cell survival and testis cord formation.
机译:在睾丸发育过程中,胎儿睾丸间质细胞从一群祖细胞而不是从分化细胞群体的增殖中增加其种群。然而,调节莱迪希干细胞自我更新和分化的机制尚不清楚。在这里,我们显示,通过抑制γ-分泌酶活性或删除下游靶基因“毛/增强子分裂1”来阻断Notch信号传导,会导致睾丸间质细胞增多。相比之下,性腺体细胞祖细胞中的组成型活性Notch信号传导会导致戏剧性的Leydig细胞损失,并伴随未分化的间充质细胞的增加。这些结果表明,有效的Notch信号传导通过促进祖细胞命运来限制胎儿Leydig细胞的分化。在获得性功能丧失和性功能丧失的性腺中均观察到生殖细胞丢失和睾丸索异常形成,这表明调节睾丸间质/间质细胞群对男性生殖细胞存活和睾丸索形成很重要。

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