Molecular mechanism of antihistamines recognition and regulation of the histamine H<sub>1</sub> receptor.

Wang, Dandan; Guo, Qiong; Wu, Zhangsong; Li, Ming; He, Binbin; Du, Yang; Zhang, Kaiming; Tao, Yuyong · Nat Commun · 2024

basic_science · Level V

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Abstract

Histamine receptors are a group of G protein-coupled receptors (GPCRs) that play important roles in various physiological and pathophysiological conditions. Antihistamines that target the histamine H<sub>1</sub> receptor (H<sub>1</sub>R) have been widely used to relieve the symptoms of allergy and inflammation. Here, to uncover the details of the regulation of H<sub>1</sub>R by the known second-generation antihistamines, thereby providing clues for the rational design of newer antihistamines, we determine the cryo-EM structure of H<sub>1</sub>R in the apo form and bound to different antihistamines. In addition to the deep hydrophobic cavity, we identify a secondary ligand-binding site in H<sub>1</sub>R, which potentially may support the introduction of new derivative groups to generate newer antihistamines. Furthermore, these structures show that antihistamines exert inverse regulation by utilizing a shared phenyl group that inserts into the deep cavity and block the movement of the toggle switch residue W428<sup>6.48</sup>. Together, these results enrich our understanding of GPCR modulation and facilitate the structure-based design of novel antihistamines.

Medical subject headings