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首页> 外文期刊>Biochemical Pharmacology >Ah receptor signals cross-talk with multiple developmental pathways.
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Ah receptor signals cross-talk with multiple developmental pathways.

机译:Ah受体发出与多个发育途径的串扰信号。

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For many years, the Ah receptor (AHR) has been a favorite of toxicologists and molecular biologists studying the connections between genes and the changes in the control of gene expression resulting from environmental exposures. Much of the attention given to the Ah receptor has focused on the nature of its ligands, many of which are known or suspected carcinogens, and on the role that its best studied regulatory product, the CYP1A1 enzyme, plays in toxic responses and carcinogen activation. This understandable bias has resulted in a disproportionate amount of Ah receptor research being directed at toxicological or adaptive end points. In recent times, it has become evident that Ah receptor functions are also involved in molecular cascades that lead to inhibition of proliferation, promotion of differentiation, or apoptosis, with an important bearing in development. Developmental and toxicological AHR functions may not always be related. The ancestral AHR protein in invertebrates directs the developmental fate of a few specific neurons and does not bind xenobiotic ligands. The mammalian AHR maintains normal liver function in the absence of exogenous ligands and, when activated by dioxin, cross-talks with morphogenetic and developmental signals. Toxic end points, such as the induction of cleft palate by dioxin in mice embryos, might be at the crossroads of these signals and provide important clues as to the developmental role of the AHR.
机译:多年来,Ah受体(AHR)一直是毒理学家和分子生物学家研究基因接触和环境暴露导致的基因表达控制变化之间联系的最爱。对Ah受体的大部分关注都集中在其配体的性质上,其中许多是已知的或可疑的致癌物,并且是对其最深入研究的调节产物CYP1A1酶在毒性反应和致癌物激活中所起的作用。这种可理解的偏见导致针对毒理学或适应性终点的Ah受体研究不成比例。近年来,很明显,Ah受体的功能也参与了分子级联反应,从而导致了对增殖的抑制,对分化的促进或对细胞凋亡的促进,在发展中具有重要意义。发育和毒理学AHR功能可能并不总是相关的。无脊椎动物中的祖先AHR蛋白指导一些特定神经元的发育命运,并且不结合异种生物配体。在没有外源配体的情况下,哺乳动物AHR维持正常的肝功能,当被二恶英激活时,会与形态发生和发育信号发生串扰。有毒的终点,例如二恶英在小鼠胚胎中诱导的pa裂可能正处于这些信号的十字路口,并为AHR的发育作用提供了重要的线索。

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