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抗缪勒氏管激素(Amh)信号通路在硬骨鱼中的作用——多种功能不限于性腺

The role of Amh signaling in teleost fish--Multiple functions not restricted to the gonads.

作者信息

Pfennig Frank, Standke Andrea, Gutzeit Herwig O

机构信息

Institut für Zoologie, TU Dresden, D-01062 Dresden, Germany.

Institut für Zoologie, TU Dresden, D-01062 Dresden, Germany.

出版信息

Gen Comp Endocrinol. 2015 Nov 1;223:87-107. doi: 10.1016/j.ygcen.2015.09.025. Epub 2015 Sep 30.

Abstract

This review summarizes the important role of Anti-Müllerian hormone (Amh) during gonad development in fishes. This Tgfβ-domain bearing hormone was named after one of its known functions, the induction of the regression of Müllerian ducts in male mammalian embryos. Later in development it is involved in male and female gonad differentiation and extragonadal expression has been reported in mammals as well. Teleosts lack Müllerian ducts, but they have amh orthologous genes. amh expression is reported from 21 fish species and possible regulatory interactions with further factors like sex steroids and gonadotropic hormones are discussed. The gonadotropin Fsh inhibits amh expression in all fish species studied. Sex steroids show no consistent influence on amh expression. Amh is produced in male Sertoli cells and female granulosa cells and inhibits germ cell proliferation and differentiation as well as steroidogenesis in both sexes. Therefore, Amh might be a central player in gonad development and a target of gonadotropic Fsh. Furthermore, there is evidence that an Amh-type II receptor is involved in germ cell regulation. Amh and its corresponding type II receptor are also present in brain and pituitary, at least in some teleosts, indicating additional roles of Amh effects in the brain-pituitary-gonadal axis. Unraveling Amh signaling is important in stem cell research and for reproduction as well as for aquaculture and in environmental science.

摘要

本综述总结了抗缪勒氏管激素(Amh)在鱼类性腺发育过程中的重要作用。这种含有转化生长因子β(Tgfβ)结构域的激素因其已知功能之一而得名,即诱导雄性哺乳动物胚胎中缪勒氏管退化。在发育后期,它参与雄性和雌性性腺分化,并且在哺乳动物中也有性腺外表达的报道。硬骨鱼缺乏缪勒氏管,但它们有amh直系同源基因。已报道了21种鱼类中的amh表达情况,并讨论了其与性类固醇和促性腺激素等其他因子可能存在的调控相互作用。在所有研究的鱼类中,促性腺激素Fsh均抑制amh表达。性类固醇对amh表达没有一致的影响。Amh由雄性支持细胞和雌性颗粒细胞产生,抑制两性生殖细胞的增殖和分化以及类固醇生成。因此,Amh可能是性腺发育的核心参与者以及促性腺激素Fsh的作用靶点。此外,有证据表明Amh II型受体参与生殖细胞调控。至少在一些硬骨鱼中,Amh及其相应的II型受体也存在于脑和垂体中,这表明Amh在脑-垂体-性腺轴中还有其他作用。阐明Amh信号传导在干细胞研究、生殖、水产养殖以及环境科学中都很重要。

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