Pro-phagocytic function and structural basis of GPR84 signaling

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作者
Xuan Zhang
Yujing Wang
Shreyas Supekar
Xu Cao
Jingkai Zhou
Jessica Dang
Siqi Chen
Laura Jenkins
Sara Marsango
Xiu Li
Guibing Liu
Graeme Milligan
Mingye Feng
Hao Fan
Weimin Gong
Cheng Zhang
机构
[1] University of Science and Technology of China,Division of Life Sciences and Medicine
[2] University of Pittsburgh School of Medicine,Department of Pharmacology and Chemical Biology
[3] University of Pittsburgh,Bioinformatics Institute (BII), Agency for Science
[4] Technology and Research (A*STAR),Department of Immuno
[5] City of Hope Comprehensive Cancer Center,Oncology, Beckman Research Institute
[6] University of Glasgow,Centre for Translational Pharmacology, School of Molecular Biosciences, College of Medical, Veterinary and Life Sciences
[7] National University of Singapore,Synthetic Biology Translational Research Program and Department of Biochemistry, School of Medicine
[8] Duke-NUS Medical School,Cancer and Stem Cell Biology Program
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摘要
GPR84 is a unique orphan G protein-coupled receptor (GPCR) that can be activated by endogenous medium-chain fatty acids (MCFAs). The signaling of GPR84 is largely pro-inflammatory, which can augment inflammatory response, and GPR84 also functions as a pro-phagocytic receptor to enhance phagocytic activities of macrophages. In this study, we show that the activation of GPR84 by the synthetic agonist 6-OAU can synergize with the blockade of CD47 on cancer cells to induce phagocytosis of cancer cells by macrophages. We also determine a high-resolution structure of the GPR84-Gi signaling complex with 6-OAU. This structure reveals an occluded binding pocket for 6-OAU, the molecular basis of receptor activation involving non-conserved structural motifs of GPR84, and an unusual Gi-coupling interface. Together with computational docking and simulations studies, this structure also suggests a mechanism for the high selectivity of GPR84 for MCFAs and a potential routes of ligand binding and dissociation. These results provide a framework for understanding GPR84 signaling and developing new drugs targeting GPR84.
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