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Multiple piscine vitellogenins : biomarkers of fish exposure to estrogenic endocrine disruptors in aquatic environments

机译:多种鱼类卵黄蛋白原素:鱼类在水生环境中暴露于雌激素内分泌干扰物的生物标记

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摘要

Vitellogenin (Vg), a major estrogen-inducible yolk precursor protein, has become an important biomarker for assessing the estrogenic potency of chemicals and the exposure of animals to estrogenic contaminants present in aquatic environments. These contaminants, which can disrupt functioning of the vertebrate neuroendocrine system, are known as endocrine disrupting chemicals (EDCs). In general, investigations of the significance of estrogenic EDCs have failed to keep pace with recent developments in our understanding of vitellogenesis in fishes. Recent gene cloning and immunobiochemical analyses have verified the general multiplicity of piscine Vg and led to exploration of the unique roles of yolk proteins derived from different forms of Vg in the processes of oogenesis and embryogenesis. The levels of circulating Vg proteins (or Vg gene transcripts) during oogenesis and their degree of induction by estrogens appear to vary among species and among different types of Vg within species. The kinetics of induction of distinct types of Vg by estrogens in fishes appears to depend on environmental factors (e.g., water temperature and photoperiod), life history stage, and the concentration and type of estrogenic compound. Consideration of these findings will contribute to development of Vg-based bioassays superior to those currently based on the outdated "single Vg" model.
机译:卵黄蛋白原(Vg)是一种主要的雌激素可诱导的卵黄前体蛋白,已成为评估化学物质的雌激素效力以及动物接触水生环境中存在的雌激素污染物的重要生物标志物。这些可能破坏脊椎动物神经内分泌系统功能的污染物被称为内分泌破坏化学物质(EDC)。总的来说,对雌激素EDCs重要性的研究未能跟上我们对鱼类卵黄发生的认识的最新发展。最近的基因克隆和免疫生化分析已验证了鱼Vg的总体多样性,并导致探索从卵的不同形式衍生的卵黄蛋白在卵子发生和胚胎发生过程中的独特作用。卵子发生过程中循环的Vg蛋白(或Vg基因转录物)的水平及其被雌激素诱导的程度似乎在物种之间以及物种内不同类型的Vg之间有所不同。鱼类中雌激素诱导不同类型Vg的动力学似乎取决于环境因素(例如水温和光周期),生命史阶段以及雌激素化合物的浓度和类型。考虑这些发现将有助于开发基于Vg的生物测定法,优于目前基于过时的“单一Vg”模型的生物测定法。

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