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Structures of human gastrin-releasing peptide receptors bound to antagonist and agonist for cancer and itch therapy.


ABSTRACT: Gastrin releasing peptide receptor (GRPR), a member of the bombesin (BBN) G protein-coupled receptors, is aberrantly overexpressed in several malignant tumors, including those of the breast, prostate, pancreas, lung, and central nervous system. Additionally, it also mediates non-histaminergic itch and pathological itch conditions in mice. Thus, GRPR could be an attractive target for cancer and itch therapy. Here, we report the inactive state crystal structure of human GRPR in complex with the non-peptide antagonist PD176252, as well as two active state cryo-electron microscopy (cryo-EM) structures of GRPR bound to the endogenous peptide agonist gastrin-releasing peptide and the synthetic BBN analog [D-Phe6, β-Ala11, Phe13, Nle14] Bn (6-14), in complex with Gq heterotrimers. These structures revealed the molecular mechanisms for the ligand binding, receptor activation, and Gq proteins signaling of GRPR, which are expected to accelerate the structure-based design of GRPR antagonists and agonists for the treatments of cancer and pruritus.

SUBMITTER: Peng S 

PROVIDER: S-EPMC9963752 | biostudies-literature | 2023 Feb

REPOSITORIES: biostudies-literature

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Structures of human gastrin-releasing peptide receptors bound to antagonist and agonist for cancer and itch therapy.

Peng Shuman S   Zhan Yuting Y   Zhang Dongqi D   Ren Lu L   Chen Anqi A   Chen Zhou-Feng ZF   Zhang Haitao H  

Proceedings of the National Academy of Sciences of the United States of America 20230201 6


Gastrin releasing peptide receptor (GRPR), a member of the bombesin (BBN) G protein-coupled receptors, is aberrantly overexpressed in several malignant tumors, including those of the breast, prostate, pancreas, lung, and central nervous system. Additionally, it also mediates non-histaminergic itch and pathological itch conditions in mice. Thus, GRPR could be an attractive target for cancer and itch therapy. Here, we report the inactive state crystal structure of human GRPR in complex with the no  ...[more]

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