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Amino acid substitutions in the aryl hydrocarbon receptor ligand binding domain reveal YH439 as an atypical AhR activator

机译:芳烃受体配体结合结构域中的氨基酸取代揭示YH439为非典型ahR激活剂

摘要

The aryl hydrocarbon receptor (AhR) is traditionally defined as a transcription factor activated by exogenous polyaromatic and halogenated aromatic hydrocarbon (PAH/HAH) ligands. Active AhR induces genes involved in xenobiotic metabolism, including cytochrome P4501A1, which function to metabolize activating ligands. However, recent studies implicate AhR in biological events that are apparently unrelated to the xenobiotic response, implying that endogenous activation mechanisms exist. Three AhR genes in zebrafish (Danio rerio) encode proteins that demonstrate differential activation in response to PAH/HAHs, with the nonresponsive drAhR1a having some sequence divergence from the PAH/HAH-responsive AhRs in the ligand binding domain (LBD). We used these differences to guide the mutagenesis of mouse AhR (mAhR), aiming to generate variants that functionally discriminate between activation mechanisms. We found substitution of histidine 285 in the LBD with tyrosine gave a receptor that could be activated by isopropyl-2-(1,3-dithietane-2-ylidene)-2-[N-(4-methylthiazol-2-yl)carbamoyl]acetate (YH439), a potential AhR ligand chemically distinct from classic PAH/HAH-type ligands, but prevented activation by both exogenous PAH/HAH ligands and the endogenous activation mimics of suspension culture and application of shear-stressed serum. The differential response of H285Y mAhR to YH439 suggests that this activator has a novel mode of interaction that tolerates tyrosine at position 285 in the LBD and is distinct from the binding mode of the well characterized PAH/HAH ligands. In support of this, the PAH-type antagonist 3′,4′-dimethoxyflavone blocked mAhR activation by 2,3,7,8-tetrachlorodibenzo-p-dioxin but not YH439. Furthermore, the strict correlation between response to exogenous PAH/HAH ligands and mimics of endogenous activation suggests that a PAH-type ligand may underpin endogenous mechanisms of activation.
机译:传统上,芳烃受体(AhR)定义为由外源性多芳族和卤代芳烃(PAH / HAH)配体激活的转录因子。活性AhR诱导涉及异种生物代谢的基因,包括细胞色素P4501A1,其功能是代谢激活配体。但是,最近的研究表明,AhR参与了与异种反应无关的生物学事件,这表明存在内源性激活机制。斑马鱼(Danio rerio)中的三个AhR基因编码的蛋白表现出对PAH / HAHs响应的差异激活,而无响应的drAhR1a在配体结合域(LBD)中与PAH / HAH响应的AhRs有一些序列差异。我们使用这些差异来指导小鼠AhR(mAhR)的诱变,目的是生成在功能上区分激活机制的变体。我们发现酪氨酸取代了LBD中的组氨酸285,产生了一种可以被异丙基-2-(1,3-二硫杂环丁-2-亚基)-2- [N-(4-甲基噻唑-2-基)氨基甲酰基激活的受体。乙酸](YH439),在化学上不同于经典的PAH / HAH型配体的潜在AhR配体,但阻止了外源PAH / HAH配体的激活以及悬浮培养和剪切应力血清的内源性激活模拟。 H285Y mAhR对YH439的差异反应表明,该活化剂具有新颖的相互作用模式,可耐受LBD中第285位的酪氨酸,并且与特征明确的PAH / HAH配体的结合模式不同。支持这一点的是,PAH型拮抗剂3',4'-二甲氧基黄酮阻止了2,3,7,8-四氯二苯并-p-二恶英对mAhR的活化,但不阻止YH439。此外,对外源PAH / HAH配体的响应与内源性激活物的模拟之间的严格相关性表明,PAH型配体可能是内源性激活机制的基础。

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