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Gene expression during sex determination reveals a robust female genetic program at the onset of ovarian development

机译:性别决定过程中的基因表达揭示了卵巢发育开始时强大的女性遗传程序

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摘要

The primary event in mammalian sexual development is the differentiation of the bipotential gonads into either testes or ovaries. Our understanding of the molecular pathways specifying gonadal differentiation is still incomplete. To identify the initial molecular changes accompanying gonadal differentiation in mice, we have performed a large-scale transcriptional analysis of XX and XY Sf1-positive gonadal cells during sex determination. In both male and female genital ridges, a robust genetic program is initiated pre-dating the first morphological changes of the differentiating gonads. Between E10.5 and E13.5, 2306 genes were expressed in a sex-specific manner in the somatic compartment of the gonads; 1223 were overexpressed in XX embryos and 1083 in XY embryos. Although sexually dimorphic genes were scattered throughout the mouse genome, we identified chromosomal regions hosting clusters of genes displaying similar expression profiles. The cyclin-dependent kinase inhibitors Cdkn1a and Cdkn1c are overexpressed in XX gonads at E11.5 and E12.5, suggesting that the increased proliferation of XY gonads relative to XX gonads may result from the overexpression of cell cycle inhibitors in the developing ovaries. These studies define the major characteristics of testicular and ovarian transcriptional programs and reveal the richness of signaling processes in differentiation of the bipotential gonads into testes and ovaries.
机译:哺乳动物性发育的主要事件是双电位性腺分化为睾丸或卵巢。我们对指定性腺分化的分子途径的理解仍然不完全。为了确定伴随性腺分化的初始分子变化,我们在性别确定期间对XX和XY Sf1阳性性腺细胞进行了大规模转录分析。在雄性和雌性生殖脊中,在分化性腺的首次形态变化之前就启动了强大的遗传程序。在E10.5和E13.5之间,在性腺的体细胞区中以性别特异性方式表达了2306个基因。在XX胚胎中过表达1223,在XY胚胎中过表达1083。尽管有性双态性基因散布在整个小鼠基因组中,但我们鉴定了托管显示相似表达谱的基因簇的染色体区域。细胞周期蛋白依赖性激酶抑制剂Cdkn1a和Cdkn1c在E11.5和E12.5的XX性腺中过表达,表明XY性腺相对于XX性腺的增殖增加可能是由于发育中的卵巢中细胞周期抑制剂的过度表达所致。这些研究定义了睾丸和卵巢转录程序的主要特征,并揭示了将双能性腺分化为睾丸和卵巢的信号传导过程的丰富性。

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