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Dioxin toxicology and the aryl hydrocarbon receptor: Insights from fish and other non-traditional models

机译:二恶英毒理学和芳基烃受体:鱼类和其他非传统模型的见解

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摘要

Fish are established models in biology. Recent Findings suggest that Fish and other nontraditional species also may serve as valuable model systems for understanding receptor-dependent signaling pathways and their interactions with environmental chemicals. Because they are highly sensitive to chlorinated dioxins and related halogenated aromatic hydrocarbons, fish are being used to elucidate the role of chemical signaling pathways in the developmental and molecular toxicology of dioxin-like compounds. Much of this work is focused on the aryl hydrocarbon receptor (AHR), a ligand-activated, bHLH-PAS transcription factor through which dioxins cause altered gene expression and toxicity. In contrast to mammals, which appear to express a single dioxin-binding AHR, many fish species possess at least two AHR genes. Studies of these two fish AHRs may help to reveal the multiple functions of the single mammalian "AHR," its physiological ligand, and the molecular mechanisms involved in differential sensitivity to dioxin-like compounds. In addition, fish have great potential as models for understanding the in vivo functions and interactions of bHLH-PAS proteins, the evolutionary history of their diversification in vertebrates, and their role in human physiology and disease.
机译:鱼是生物学的公认模型。最新发现表明,鱼类和其他非传统物种也可以作为有价值的模型系统,用于了解受体依赖性信号传导途径及其与环境化学物质的相互作用。因为它们对氯代二恶英和相关的卤代芳烃高度敏感,所以鱼类被用于阐明化学信号通路在二恶英样化合物的发育和分子毒理学中的作用。这项工作大部分集中在芳烃受体(AHR)上,后者是一种配体激活的bHLH-PAS转录因子,二恶英可通过该转录因子改变基因表达和毒性。与似乎表达单一二恶英结合AHR的哺乳动物相反,许多鱼类至少具有两个AHR基因。对这两种鱼类AHR的研究可能有助于揭示单个哺乳动物“ AHR”的多种功能,其生理配体,以及对二恶英样化合物的敏感性差异所涉及的分子机制。此外,鱼类作为了解bHLH-PAS蛋白质的体内功能和相互作用,其在脊椎动物中的多样化进化史以及它们在人类生理和疾病中的作用的模型具有巨大潜力。

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