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水生无脊椎动物中的类固醇。

Steroids in aquatic invertebrates.

作者信息

Lafont René, Mathieu Michel

机构信息

Biochimie Structurale et Fonctionnelle des Protéines, CNRS FRE 2852, Université Pierre et Marie Curie, Case Courrier no. 29, 75252 Paris Cedex 05, France.

出版信息

Ecotoxicology. 2007 Feb;16(1):109-30. doi: 10.1007/s10646-006-0113-1.

Abstract

Steroid molecules are present in all invertebrates, and some of them have established hormonal roles: this is the case for ecdysteroids in arthropods and, to a lesser extent, for vertebrate-type steroids in molluscs. Steroids are not only hormones, they may also fulfill many other functions in chemical communication, chemical defense or even digestive physiology. The increasing occurrence of endocrine disruption problems caused by environmental pollutants, which interfere in particular with reproductive physiology of vertebrates but also of invertebrates has made necessary to better understand the endocrine physiology of the latter and the role of steroids in these processes. So many attempts are being made to better understand the endocrine roles of steroids in arthropods and molluscs, and to establish whether they also fulfill similar functions in other invertebrate phyla. At the moment, both the precise identification of these steroids, the determination of their origin (endogenous versus exogenous) and of their mechanism of action are under active investigation. This research takes profit of the development of genome sequencing programs on many invertebrate species, which allow the identification of receptors and/or biosynthetic enzymes, when related to their vertebrate counterparts, but the story is not so simple, as will be exemplified by estrogen receptors of molluscs.

摘要

类固醇分子存在于所有无脊椎动物中,其中一些已确立了激素作用:节肢动物中的蜕皮类固醇就是如此,在较小程度上,软体动物中的脊椎动物型类固醇也是如此。类固醇不仅是激素,它们还可能在化学通讯、化学防御甚至消化生理学中发挥许多其他功能。环境污染物导致的内分泌干扰问题日益增多,这些污染物尤其会干扰脊椎动物的生殖生理学,也会干扰无脊椎动物的生殖生理学,因此有必要更好地了解后者的内分泌生理学以及类固醇在这些过程中的作用。目前正在进行许多尝试,以更好地了解类固醇在节肢动物和软体动物中的内分泌作用,并确定它们在其他无脊椎动物门中是否也发挥类似功能。目前,这些类固醇的精确鉴定、其来源(内源性与外源性)及其作用机制的确定都在积极研究中。这项研究得益于许多无脊椎动物物种基因组测序项目的发展,这些项目能够识别受体和/或生物合成酶,前提是它们与脊椎动物的对应物相关,但情况并非如此简单,软体动物的雌激素受体将作为例证。

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