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SMAD2 and p38 signaling pathways act in concert to determine XY primordial germ cell fate in mice

机译:SMAD2和p38信号通路协同作用确定小鼠XY原始生殖细胞的命运

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The sex of primordial germ cells (PGCs) is determined in developing gonads on the basis of cues from somatic cells. In XY gonads, sex-determining region Y (SRY) triggers fibroblast growth factor 9 (FGF9) expression in somatic cells. FGF signaling, together with downstream nodal/activin signaling, promotes male differentiation in XY germ cells by suppressing retinoic acid (RA)-dependent meiotic entry and inducing male-specific genes. However, the mechanism by which nodal/activin signaling regulates XY PGC fate is unknown. We uncovered the roles of SMAD2/3 and p38 MAPK, the putative downstream factors of nodal/activin signaling, in PGC sexual fate decision. We found that conditional deletion of Smad2, but not Smad3, from XY PGCs led to a loss of male-specific gene expression. Moreover, suppression of RA signaling did not rescue male-specific gene expression in Smad2-mutant testes, indicating that SMAD2 signaling promotes male differentiation in a RA-independent manner. By contrast, we found that p38 signaling has an important role in the suppression of RA signaling. The Smad2 deletion did not disrupt the p38 signaling pathway even though Nodal expression was significantly reduced, suggesting that p38 was not regulated by nodal signaling in XY PGCs. Additionally, the inhibition of p38 signaling in the Smad2-mutant testes severely impeded XY PGC differentiation and induced meiosis. In conclusion, we propose a model in which p38 and SMAD2 signaling coordinate to determine the sexual fate of XY PGCs.
机译:原始生殖细胞(PGC)的性别是根据来自体细胞的信号在发育中的性腺中确定的。在XY性腺中,性别决定区域Y(SRY)触发体细胞中成纤维细胞生长因子9(FGF9)的表达。 FGF信号与下游节点/激活素信号一起,通过抑制视黄酸(RA)依赖性减数分裂进入并诱导雄性特异性基因,促进XY生殖细胞中的雄性分化。但是,节点/激活素信号调节XY PGC命运的机制尚不清楚。我们发现了SMAD2 / 3和p38 MAPK(结节/激活素信号传导的假定下游因素)在PGC性命运决定中的作用。我们发现有条件地从XY PGC中删除Smad2而不是Smad3导致男性特异性基因表达的丧失。此外,抑制RA信号传导不能挽救Smad2突变型睾丸中男性特异性基因的表达,表明SMAD2信号传导以RA独立的方式促进男性分化。相比之下,我们发现p38信号在抑制RA信号中具有重要作用。即使节点表达明显降低,Smad2缺失也不会破坏p38信号传导途径,这表明XY PGC中p38不受信号传导调节。另外,在Smad2突变型睾丸中p38信号转导的抑制严重阻碍了XY PGC的分化并诱导了减数分裂。总之,我们提出了一个模型,其中p38和SMAD2信号协同确定XY PGC的性命运。

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