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Coordinated activity of spry1 and spry2 is required for normal development of the external genitalia

机译:spry1和spry2的协调活动是外生殖器正常发育所必需的

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Development of the mammalian external genitalia is controlled by a network of signaling molecules and transcription factors. Because FGF signaling plays a central role in this complicated morphogenetic process, we investigated the role of Sprouty genes, which are important intracellular modulators of FGF signaling, during embryonic development of the external genitalia in mice. We found that Sprouty genes are expressed by the urethral epithelium during embryogenesis, and that they have a critical function during urethral canalization and fusion. Development of the genital tubercle (GT), the anlage of the prepuce and glans penis in males and glans clitoris in females, was severely affected in male embryos carrying null alleles of both Spry1 and Spry2. In Spry1-/-;Spry2-/- embryos, the internal tubular urethra was absent, and urothelial morphology and organization was abnormal. These effects were due, in part, to elevated levels of epithelial cell proliferation in Spry1-/-;Spry2-/- embryos. Despite changes in overall organization, terminal differentiation of the urothelium was not significantly affected. Characterization of the molecular pathways that regulate normal GT development confirmed that deletion of Sprouty genes leads to elevated FGF signaling, whereas levels of signaling in other cascades were largely preserved. Together, these results show that levels of FGF signaling must be tightly regulated during embryonic development of the external genitalia in mice, and that this regulation is mediated in part through the activity of Sprouty gene products.
机译:哺乳动物外生殖器的发育受信号分子和转录因子网络的控制。因为FGF信号在这个复杂的形态发生过程中起着核心作用,所以我们在小鼠外生殖器的胚胎发育过程中研究了Sprouty基因的作用,Sprouty基因是FGF信号的重要细胞内调节剂。我们发现Sprouty基因在胚胎发生过程中由尿道上皮表达,并且在尿道的导管形成和融合过程中具有关键功能。生殖器结节(GT)的发育,雄性的包皮和龟头阴茎的膨胀以及雌性的阴蒂龟头的生殖,在带有Spry1和Spry2无效等位基因的雄性胚胎中受到严重影响。在Spry1-/-; Spry2-/-胚胎中,没有内部管状尿道,尿路上皮形态和组织异常。这些影响部分归因于Spry1-/-; Spry2-/-胚胎中上皮细胞增殖水平的升高。尽管整体组织发生了变化,但尿路上皮的终末分化并未受到明显影响。调节正常GT发育的分子途径的特征证实,Sprouty基因的缺失会导致FGF信号转导升高,而其他级联反应中的信号转导水平则得以保留。总之,这些结果表明,在小鼠外部生殖器的胚胎发育过程中,必须严格调节FGF信号传导的水平,并且这种调节部分是通过Sprouty基因产物的活性来介导的。

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