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作为芳基烃受体激活机制,细胞色素 P4501 依赖性内源性激动剂 FICZ 清除的抑制作用。

Inhibition of cytochrome P4501-dependent clearance of the endogenous agonist FICZ as a mechanism for activation of the aryl hydrocarbon receptor.

机构信息

Institute of Environmental Medicine, Karolinska Institutet, SE-171 77 Stockholm, Sweden.

出版信息

Proc Natl Acad Sci U S A. 2012 Mar 20;109(12):4479-84. doi: 10.1073/pnas.1118467109. Epub 2012 Mar 5.

Abstract

Altered systemic levels of 6-formylindolo[3,2-b]carbazole (FICZ), an enigmatic endogenous ligand for the aryl hydrocarbon receptor (AHR), may explain adverse physiological responses evoked by small natural and anthropogenic molecules as well as by oxidative stress and light. We demonstrate here that several different chemical compounds can inhibit the metabolism of FICZ, thereby disrupting the autoregulatory feedback control of cytochrome P4501 systems and other proteins whose expression is regulated by AHR. FICZ is both the most tightly bound endogenous agonist for the AHR and an ideal substrate for cytochrome CYP1A1/1A2 and 1B1, thereby also participating in an autoregulatory loop that keeps its own steady-state concentration low. At very low concentrations FICZ influences circadian rhythms, responses to UV light, homeostasis associated with pro- and anti-inflammatory processes, and genomic stability. Here, we demonstrate that, if its metabolic clearance is compromised, femtomolar background levels of this compound in cell-culture medium are sufficient to up-regulate CYP1A1 mRNA and enzyme activity. The oxidants UVB irradiation and hydrogen peroxide and the model AHR antagonist 3'-methoxy-4'-nitroflavone all inhibited induction of CYP1A1 enzyme activity by FICZ or 2,3,7,8-tetrachlorodibenzo-p-dioxin, thereby subsequently elevating intracellular levels of FICZ and activating AHR. Taken together, these findings support an indirect mechanism of AHR activation, indicating that AHR activation by molecules with low affinity actually may reflect inhibition of FICZ metabolism and raising questions about the reported promiscuity of the AHR. Accordingly, we propose that prolonged induction of AHR activity through inhibition of CYP1 disturbs feedback regulation of FICZ levels, with potential detrimental consequences.

摘要

6-Formylindolo[3,2-b]carbazole(FICZ)是一种神秘的芳烃受体(AHR)内源性配体,其系统水平的改变可能解释了小分子天然和人为化合物以及氧化应激和光照引起的不良生理反应。我们在这里证明,几种不同的化学化合物可以抑制 FICZ 的代谢,从而破坏细胞色素 P4501 系统和其他受 AHR 调节表达的蛋白质的自调节反馈控制。FICZ 既是 AHR 结合最紧密的内源性激动剂,也是细胞色素 CYP1A1/1A2 和 1B1 的理想底物,因此也参与了一个自调节回路,使自身的稳态浓度保持在较低水平。在非常低的浓度下,FICZ 会影响昼夜节律、对紫外线的反应、与促炎和抗炎过程相关的动态平衡以及基因组稳定性。在这里,我们证明,如果其代谢清除受到损害,细胞培养物培养基中这种化合物的背景浓度低至飞摩尔级,就足以上调 CYP1A1 mRNA 和酶活性。氧化剂 UVB 照射和过氧化氢以及模型 AHR 拮抗剂 3'-甲氧基-4'-硝基黄酮都抑制了 FICZ 或 2,3,7,8-四氯二苯并-p-二恶英诱导的 CYP1A1 酶活性,从而随后提高了 FICZ 的细胞内水平并激活了 AHR。总之,这些发现支持 AHR 激活的间接机制,表明低亲和力分子对 AHR 的激活实际上可能反映了 FICZ 代谢的抑制,并对 AHR 的报道的混杂性提出了质疑。因此,我们提出,通过抑制 CYP1 来延长 AHR 活性的诱导会扰乱 FICZ 水平的反馈调节,可能产生潜在的不利后果。

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