School of BioSciences, The University of Melbourne, Victoria, Australia.
Advanced Genomics Center, National Institute of Genetics, Mishima, Shizuoka, Japan.
Reproduction. 2019 Jan;157(1):1-12. doi: 10.1530/REP-18-0416.
The development of the mammalian phallus involves hormone-dependent mesenchymal-epithelial signalling mechanisms that contribute to urethral closure and regulation of phallus elongation and growth. In marsupials, most differentiation and growth of the phallus occurs post-natally, making them amenable to direct hormone treatment. Expression of IGFs, FGFs, EFNB2, MAFB, DLX5 and AP-1 mRNAs in the phallus at day 50 post-partum (pp) were altered after treatment of tammar wallaby young from day 20 to 40 pp with androgen, oestrogen or after castration at day 25 pp. However, the most interesting changes occurred in the IGF pathway genes. Androgen treatment upregulated IGF1 in female phalluses and oestrogen treatment upregulated IGF1 in male phalluses, but it was downregulated by castration. IGFBP3 was higher in female phalluses and downregulated by androgen. IGF1 expression was higher in all untreated male than in female phalluses from day 50 to 150 pp, but IGFBP3 had the reverse pattern. At day 90 pp, when urethral closure in males is progressing and male phallus growth is accelerating. IGF1 and PCNA protein were only detected in the male urorectal septum, suggesting for the first time that closure and elongation may involve IGF1 activation of cell proliferation specifically in male phalluses. These effects of sex steroids on gene expression and on the IGF1 signalling pathway in particular, suggest that the developing phallus may be especially susceptible to perturbation by exogenous hormones.
哺乳动物阴茎的发育涉及激素依赖的间质-上皮信号机制,这些机制有助于尿道闭合和调节阴茎的伸长和生长。在有袋动物中,阴茎的大部分分化和生长发生在产后,这使得它们可以直接接受激素治疗。在产后第 50 天(pp),塔马尔袋熊幼崽从第 20 天到第 40 天接受雄激素、雌激素或第 25 天去势治疗后,阴茎中 IGFs、FGFs、EFNB2、MAFB、DLX5 和 AP-1 mRNA 的表达发生改变。然而,最有趣的变化发生在 IGF 通路基因中。雄激素治疗上调了雌性阴茎中的 IGF1,雌激素治疗上调了雄性阴茎中的 IGF1,但去势会使其下调。IGFBP3 在雌性阴茎中较高,并受雄激素下调。在未处理的雄性阴茎中,IGF1 的表达从产后第 50 天到第 150 天一直高于雌性阴茎,但 IGFBP3 的表达则相反。在第 90 天,当雄性的尿道闭合进展且阴茎生长加速时。IGF1 和 PCNA 蛋白仅在雄性尿直肠隔中检测到,这首次表明闭合和伸长可能涉及 IGF1 激活细胞增殖,特别是在雄性阴茎中。性类固醇对基因表达的这些影响,特别是对 IGF1 信号通路的影响,表明发育中的阴茎可能特别容易受到外源激素的干扰。