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Endogenous Nodal signaling regulates germ cell potency during mammalian testis development

机译:内源性节点信号调节哺乳动物睾丸发育过程中的生殖细胞效能。

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Germ cells, the embryonic precursors of sperm or oocytes, respond to molecular cues that regulate their sex-specific development in the fetal gonads. In males in particular, the balance between continued proliferation and cell fate commitment is crucial: defects in proliferation result in insufficient spermatogonial stem cells for fertility, but escape from commitment and prolonged pluripotency can cause testicular germ cell tumors. However, the factors that regulate this balance remain unidentified. Here, we show that signaling by the TGFβ morphogen Nodal and its co-receptor Cripto is active during a crucial window of male germ cell development. The Nodal pathway is triggered when somatic signals, including FGF9, induce testicular germ cells to upregulate Cripto. Germ cells of mutant mice with compromised Nodal signaling showed premature differentiation, reduced pluripotency marker expression and a reduced ability to form embryonic germ (EG) cell colonies in vitro. Conversely, human testicular tumors showed upregulation of NODAL and CRIPTO that was proportional to invasiveness and to the number of malignant cells. Thus, Nodal signaling provides a molecular control mechanism that regulates male germ cell potency in normal development and testicular cancer.
机译:生殖细胞是精子或卵母细胞的胚胎前体,它们对调节其在性腺中的性别特异性发育的分子提示作出反应。特别是在男性中,持续增殖与细胞命运承诺之间的平衡至关重要:增殖缺陷会导致精原干细胞的繁殖能力不足,但逃避承诺和延长的多能性会导致睾丸生殖细胞肿瘤。但是,调节这种平衡的因素仍然不确定。在这里,我们表明,在男性生殖细胞发育的关键窗口中,由TGFβ形态发生子Nodal及其共受体Cripto发出的信号是活跃的。当包括FGF9在内的体细胞信号诱导睾丸生殖细胞上调Cripto时,将触发Nodal途径。 Nodal信号受损的突变小鼠的生殖细胞表现出过早的分化,多能性标记物表达的减少以及体外形成胚芽(EG)细胞菌落的能力降低。相反,人类睾丸肿瘤显示NODAL和CRIPTO的上调与侵袭性和恶性细胞数量成正比。因此,节点信号提供了在正常发育和睾丸癌中调节男性生殖细胞效能的分子控制机制。

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