Department of Cell Biology and Genetics, Faculty of Science, Palacký University, Olomouc, Czech Republic.
Department of Microbiology & Immunology, Drexel University College of Medicine, Philadelphia, PA, USA.
Nat Commun. 2023 May 11;14(1):2728. doi: 10.1038/s41467-023-38478-6.
The human aryl hydrocarbon receptor (AhR) is a ligand-activated transcription factor that is a pivotal regulator of human physiology and pathophysiology. Allosteric inhibition of AhR was previously thought to be untenable. Here, we identify carvones as noncompetitive, insurmountable antagonists of AhR and characterize the structural and functional consequences of their binding. Carvones do not displace radiolabeled ligands from binding to AhR but instead bind allosterically within the bHLH/PAS-A region of AhR. Carvones do not influence the translocation of ligand-activated AhR into the nucleus but inhibit the heterodimerization of AhR with its canonical partner ARNT and subsequent binding of AhR to the promoter of CYP1A1. As a proof of concept, we demonstrate physiologically relevant Ahr-antagonism by carvones in vivo in female mice. These substances establish the molecular basis for selective targeting of AhR regardless of the type of ligand(s) present and provide opportunities for the treatment of disease processes modified by AhR.
人类芳香烃受体 (AhR) 是一种配体激活的转录因子,是人体生理学和病理生理学的关键调节因子。先前认为,AhR 的变构抑制是不可行的。在这里,我们将香芹酮鉴定为 AhR 的非竞争性、不可逾越的拮抗剂,并对其结合的结构和功能后果进行了表征。香芹酮不会取代放射性标记配体与 AhR 的结合,但会在 AhR 的 bHLH/PAS-A 区域内变构结合。香芹酮不会影响配体激活的 AhR 向核内的易位,但会抑制 AhR 与其经典伴侣 ARNT 的异二聚化以及随后 AhR 与 CYP1A1 启动子的结合。作为概念验证,我们在雌性小鼠体内证明了香芹酮在体内具有生理相关的 Ahr 拮抗作用。这些物质为选择性靶向 AhR 提供了分子基础,无论存在哪种类型的配体,都为治疗受 AhR 调节的疾病过程提供了机会。
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