Shima H, Tsuji M, Elfman F, Cunha G R
Department of Anatomy, University of California-San Francisco 94143, USA.
J Androl. 1995 May-Jun;16(3):233-41.
Androgen-dependent development of male secondary sexual glands is mediated by paracrine mesenchymal-epithelial interactions that regulate a complex array of biological events such as epithelial morphogenesis, growth, and cytodifferentiation. It is not known whether the action of mesenchyme on epithelial development in the male genital tract requires cell-cell contact or whether soluble, diffusible mediators are involved. To examine paracrine effects of urogenital sinus mesenchyme (UGM) on epithelial development, conditioned media (CM) from embryonic mouse UGM of normal (wild-type) and androgen-insensitive Tfm (testicular feminization) mice were tested for growth and morphogenetic effects on heterotypic tissue recombinants composed of rat or mouse bladder mesenchyme plus neonatal mouse seminal vesicle epithelium (BLM+SVE) or rat or mouse bladder mesenchyme plus neonatal mouse bulbourethral gland epithelium (BLM+BUG-E). Addition of a concentrate of CM from wild-type UGM grown in the presence of dihydrotestosterone (DHT) induced epithelial growth and complex epithelial morphogenesis in BLM+SVE recombinants, whereas CM from DHT-treated Tfm UGM or a saline control were without effect. CM from wild-type UGM elicited similar trophic effects in BLM+BUG-E recombinants, but in addition induced precocious mucous epithelial differentiation in BLM+BUG-E recombinants. These results suggest that the normally androgen-dependent epithelial growth and branching morphogenesis in developing male urogenital organs is elicited by soluble mesenchymal factors. Two-dimensional gel electrophoresis of proteins synthesized and secreted by wild-type UGM revealed several androgen-dependent proteins with molecular weights of approximately 30 kDa that are absent in CM of Tfm UGM either in the presence or absence of DHT.(ABSTRACT TRUNCATED AT 250 WORDS)
雄激素依赖的雄性副性腺发育是由旁分泌的间充质-上皮相互作用介导的,这种相互作用调节一系列复杂的生物学事件,如上皮形态发生、生长和细胞分化。目前尚不清楚间充质对雄性生殖道上皮发育的作用是否需要细胞间接触,或者是否涉及可溶性、可扩散的介质。为了研究泌尿生殖窦间充质(UGM)对上皮发育的旁分泌作用,对正常(野生型)和雄激素不敏感的Tfm(睾丸雌性化)小鼠胚胎UGM的条件培养基(CM)进行了测试,以观察其对由大鼠或小鼠膀胱间充质加新生小鼠精囊上皮(BLM+SVE)或大鼠或小鼠膀胱间充质加新生小鼠尿道球腺上皮(BLM+BUG-E)组成的异型组织重组体的生长和形态发生作用。添加在二氢睾酮(DHT)存在下培养的野生型UGM的CM浓缩物可诱导BLM+SVE重组体中的上皮生长和复杂的上皮形态发生,而DHT处理的Tfm UGM或生理盐水对照的CM则无此作用。野生型UGM的CM在BLM+BUG-E重组体中产生了类似的营养作用,但此外还诱导了BLM+BUG-E重组体中早熟的粘液上皮分化。这些结果表明,发育中的雄性泌尿生殖器官中正常雄激素依赖的上皮生长和分支形态发生是由可溶性间充质因子引起的。对野生型UGM合成和分泌的蛋白质进行二维凝胶电泳显示,有几种雄激素依赖的蛋白质,分子量约为30 kDa,无论有无DHT,在Tfm UGM的CM中均不存在。(摘要截断于250字)