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芳基烃受体 (AHR) 在 NAD 代谢、髓系细胞生成和肥胖中发挥作用。

Aryl hydrocarbon receptor (AHR) functions in NAD metabolism, myelopoiesis and obesity.

机构信息

Department of Toxicology, Institute of Experimental and Clinical Pharmacology and Toxicology, Wilhelmstrasse 56, D-72074 Tübingen, Germany.

出版信息

Biochem Pharmacol. 2019 May;163:128-132. doi: 10.1016/j.bcp.2019.02.021. Epub 2019 Feb 16.

Abstract

Diverse physiologic functions of AHR, a transcription factor discovered in studies of dioxin toxicity, are currently elucidated in many laboratories including chemical and microbial defense, immunity and myelopoiesis. Accumulating evidence suggests that AHR may also be involved in obesity and TCDD-mediated lethality in sensitive species. Underlying mechanisms include NAD- and sirtuin-mediated deregulation of lipid, glucose and NAD homeostasis. Progress in NAD metabolome research suggests large consumption of NAD by NAD glycohydrolases (NADases) and NAD-dependent sirtuins. In focus are two NADases: (i) TiPARP (TCDD-induced poly(ADP-ribose) polymerase), one of several nuclear NADases, and (ii) plasma membrane-bound ectoNADase/CD38, a multifunctional enzyme and receptor. CD38 is involved in extra- and intracellular NAD degradation but acts also as differentiation marker. Both CD38 and AHR are components of a complex signalsome that enhances retinoic acid-induced differentiation of myeloid progenitor cells to granulocytes. Further advances of NAD metabolome research may lead to therapeutic options in the control of obesity and to improved risk assessment of TCDD toxicity.

摘要

AHR 的多种生理功能目前正在包括化学和微生物防御、免疫和髓系发生在内的许多实验室中得到阐明,AHR 是一种转录因子,最初是在二恶英毒性研究中发现的。越来越多的证据表明,AHR 也可能参与肥胖和 TCDD 介导的敏感物种的致死作用。潜在机制包括 NAD 和 sirtuin 介导的脂质、葡萄糖和 NAD 动态平衡失调。NAD 代谢组学研究的进展表明,NAD 糖基水解酶(NADase)和 NAD 依赖的 sirtuins 大量消耗 NAD。目前的焦点是两种 NADase:(i)TiPARP(TCDD 诱导的多聚(ADP-核糖)聚合酶),这是几种核 NADase 之一,和(ii)质膜结合的外核苷酸酶/CD38,一种多功能酶和受体。CD38 参与细胞外和细胞内 NAD 的降解,但也作为分化标记。CD38 和 AHR 都是信号转导复合物的组成部分,该复合物增强维甲酸诱导的髓样祖细胞向粒细胞的分化。NAD 代谢组学研究的进一步进展可能会为控制肥胖提供治疗选择,并改善 TCDD 毒性的风险评估。

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