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鱼类和两栖类动物中雄激素 5α-二氢睾酮(DHT)和 5α-还原酶的最新研究进展。

Current perspectives on the androgen 5 alpha-dihydrotestosterone (DHT) and 5 alpha-reductases in teleost fishes and amphibians.

机构信息

University of New Brunswick and Canadian River Institute, NB E2L 4L5, Canada.

出版信息

Gen Comp Endocrinol. 2013 Dec 1;194:264-74. doi: 10.1016/j.ygcen.2013.09.019. Epub 2013 Oct 3.

Abstract

The androgen 5 alpha-dihydrotestosterone (DHT) is a steroidogenic metabolite that has received little attention in non-mammalian species. DHT is produced by the reduction of the double-bond of testosterone by a group of enzymes called 5 alpha-reductases of which there can be multiple isoforms (i.e., srd5a1, srd5a2, and srd5a3). Data from amphibians suggest that the expression of the srd5a genes occurs in early development, and continues until adulthood; however insufficient data exist in fish species, where DHT is thought to be relatively biologically inactive. Here, we demonstrate that fathead minnow (FHM; Pimephales promelas) developing embryos and adults express srd5a enzyme isoforms. During FHM embryogenesis, both srd5a1 and srd5a3 mRNA levels were significantly correlated in expression levels while srd5a2 showed a more unique pattern of expression. In adult FHMs, males had significantly higher levels of srd5a2 in the liver and gonad compared to females. In the male and female liver, transcript levels for srd5a2 were more abundant compared to srd5a1 and srd5a3, suggesting a prominent role for srd5a2 in this tissue. Interestingly, the ovary expressed higher mRNA levels of srd5a3 than the testis. Thus, data suggest that srd5a isoforms can show sexually dimorphic expression patterns in fish. We also conducted a literature review of the biological effects observed in embryonic and adult fish and amphibians after treatments with DHT and DHT-related compounds. Treatments with DHT in teleost fishes and amphibians have resulted in unexpected biological responses that are characteristic of both androgens and anti-androgens. For example, in fish DHT can induce vitellogenin in vitro from male and female hepatocytes and can increase 17β-estradiol production from the teleost ovary. We propose, that to generate further understanding of the roles of DHT in non-mammals, studies are needed that (1) address how DHT is synthesized within tissues of fish and amphibians; (2) examine the full range of biological responses to endogenous DHT, and its interactions with other signaling pathways; and (3) investigate how DHT production varies with reproductive stage. Lastly, we suggest that the Srd5a enzymes can be targets of endocrine disruptors in fish and frogs, which may result in disruptions in the estrogen:androgen balance in aquatic organisms.

摘要

雄激素 5α-二氢睾酮(DHT)是一种类固醇代谢物,在非哺乳动物中很少受到关注。DHT 是由一组称为 5α-还原酶的酶将睾酮的双键还原产生的,其中可能有多种同工型(即 srd5a1、srd5a2 和 srd5a3)。来自两栖动物的数据表明,srd5a 基因的表达发生在早期发育过程中,并持续到成年期;然而,在鱼类中,DHT 被认为相对没有生物活性,因此数据不足。在这里,我们证明了食蚊鱼(FHM;Pimephales promelas)发育中的胚胎和成年鱼都表达了 srd5a 酶同工型。在 FHM 胚胎发生过程中,srd5a1 和 srd5a3 的 mRNA 水平呈显著相关表达,而 srd5a2 则表现出更独特的表达模式。在成年 FHMs 中,雄性鱼的肝脏和性腺中 srd5a2 的水平明显高于雌性。在雄性和雌性肝脏中,srd5a2 的转录水平比 srd5a1 和 srd5a3 更丰富,表明 srd5a2 在该组织中具有重要作用。有趣的是,卵巢中 srd5a3 的 mRNA 水平高于睾丸。因此,数据表明 srd5a 同工型在鱼类中可以表现出性别二态性表达模式。我们还对 DHT 和 DHT 相关化合物处理后在鱼类和两栖动物的胚胎和成年期观察到的生物学效应进行了文献综述。在硬骨鱼类和两栖动物中,DHT 的处理导致了意想不到的生物学反应,这些反应既有雄激素的特征,也有抗雄激素的特征。例如,在鱼类中,DHT 可以从雄性和雌性肝细胞中诱导卵黄蛋白原,并且可以增加从硬骨鱼卵巢中产生 17β-雌二醇。我们提出,为了进一步了解 DHT 在非哺乳动物中的作用,需要进行以下研究:(1)研究 DHT 如何在鱼类和两栖动物组织中合成;(2)研究内源性 DHT 的生物学反应的全貌及其与其他信号通路的相互作用;(3)研究 DHT 产生如何随生殖阶段而变化。最后,我们建议 Srd5a 酶可以成为鱼类和青蛙中内分泌干扰物的靶标,这可能导致水生生物体内雌激素:雄激素平衡的破坏。

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