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Molecular analysis of external genitalia formation: the role of fibroblast growth factor (Fgf) genes during genital tubercle formation.

机译:外生殖器形成的分子分析:成纤维细胞生长因子(Fgf)基因在生殖器结节形成过程中的作用。

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摘要

The molecular mechanisms underlying the development of the external genitalia in mammals have been very little examined. Recent gene knockout studies have suggested that the developmental processes of its anlage, the genital tubercle (GT), have much in common with those of limb buds. The Fgf genes have been postulated as regulating several downstream genes during organogenesis. Fgf8 was expressed in the distal urethral plate epithelium of the genital tubercle (GT) together with other markers such as the Msx1, Fgf10, Hoxd13 and Bmp4 expressed in the mesenchyme. To analyze the role of the FGF system during GT formation, an in vitro organ culture system was utilized. It is suggested that the distal urethral plate epithelium of GT, the Fgf8-expressing region, regulates the outgrowth of GT. Ectopic application of FGF8 beads to the murine GT induced mesenchymal gene expression, and also promoted the outgrowth of the GT. Experiments utilizing anti-FGF neutralizing antibody suggested a growth-promoting role for FGF protein(s) in GT outgrowth. In contrast, despite its vital role during limb-bud formation, Fgf10 appears not to be primarily essential for initial outgrowth of GT, as extrapolated from Fgf10(-/-) GTs. However, the abnormal external genitalia development of Fgf10(-/-) perinatal mice suggested the importance of Fgf10 in the development of the glans penis and the glans clitoridis. These results suggest that the FGF system is a key element in orchestrating GT development.
机译:很少研究哺乳动物外生殖器发育的分子机制。最近的基因敲除研究表明,其生殖器官,生殖结节(GT)的发育过程与肢芽有很多共同点。 Fgf基因被假定在器官发生过程中调控多个下游基因。 Fgf8在生殖器结节(GT)的远端尿道板上皮中表达,并在间充质中表达其他标记,例如Msx1,Fgf10,Hoxd13和Bmp4。为分析FGF系统在GT形成过程中的作用,采用了体外器官培养系统。提示GT的远端尿道板上皮即Fgf8表达区域可调节GT的生长。 FGF8珠异位应用到小鼠GT诱导间质基因表达,也促进了GT的生长。利用抗FGF中和抗体的实验表明FGF蛋白在GT增长中具有促进生长的作用。相比之下,尽管Fgf10在肢芽形成过程中起着至关重要的作用,但从Fgf10(-/-)GTs推断出,它似乎并不是GT最初的主要产物。但是,Fgf10(-/-)围生期小鼠的异常外部生殖器发育表明Fgf10在龟头阴茎和阴蒂龟的发育中具有重要意义。这些结果表明,FGF系统是协调GT发育的关键因素。

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