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Published on: January 4, 2019
Activation of the Immune-Metabolic Receptor GPR84 Enhances Inflammation and Phagocytosis in Macrophages
Carlota Recio1, Daniel Lucy1,2, Gareth S D Purvis1
1Sir William Dunn School of Pathology, University of Oxford, Oxford, United Kingdom.
Abstract:
GPR84 is a member of the metabolic G protein-coupled receptor family, and its expression has been described predominantly in immune cells. GPR84 activation is involved in the inflammatory response, but the mechanisms by which it modulates inflammation have been incompletely described. In this study, we investigated GPR84 expression, activation, and function in macrophages to establish the role of the receptor during the inflammatory response. We observed that GPR84 expression in murine tissues is increased by endotoxemia, hyperglycemia, and hypercholesterolemia. Ex vivo studies revealed that GPR84 mRNA expression is increased by LPS and other pro-inflammatory molecules in different murine and human macrophage populations. Likewise, high glucose concentrations and the presence of oxidized LDL increased GPR84 expression in macrophages. Activation of the GPR84 receptor with a selective agonist, 6-(octylamino) pyrimidine-2,4(1H,3H)-dione (6-n-octylaminouracil, 6-OAU), enhanced the expression of phosphorylated Akt, p-ERK, and p65 nuclear translocation under inflammatory conditions and elevated the expression levels of the inflammatory mediators TNFα, IL-6, IL-12B, CCL2, CCL5, and CXCL1. In addition, GPR84 activation triggered increased bacterial adhesion and phagocytosis in macrophages. The enhanced inflammatory response mediated by 6-OAU was not observed in GPR84-/- cells nor in macrophages treated with a selective GPR84 antagonist. Collectively, our results reveal that GPR84 functions as an enhancer of inflammatory signaling in macrophages once inflammation is established. Therefore, molecules that antagonize the GPR84 receptor may be potential therapeutic tools in inflammatory and metabolic diseases.
Insights
GPR84 receptor activation enhances macrophage inflammatory responses and bacterial phagocytosis. Antagonizing GPR84 may offer therapeutic strategies for inflammatory and metabolic diseases.
Area of Science:
- Immunology
- Cell Biology
- Metabolic Diseases
Background:
- G protein-coupled receptor 84 (GPR84) is expressed in immune cells and modulates inflammation, but its precise mechanisms are unclear.
- GPR84's role in macrophages during inflammation requires further investigation.
Purpose of the Study:
- To investigate GPR84 expression, activation, and function in macrophages.
- To elucidate the receptor's role in the inflammatory response.
Main Methods:
- Assessed GPR84 mRNA expression in murine tissues and macrophages under various conditions (endotoxemia, hyperglycemia, hypercholesterolemia, LPS, high glucose, oxidized LDL).
- Utilized a selective GPR84 agonist (6-OAU) to study its effects on inflammatory signaling pathways (p-Akt, p-ERK, p65 translocation) and mediator expression (TNFα, IL-6, IL-12B, CCL2, CCL5, CXCL1).
- Evaluated GPR84's impact on bacterial adhesion and phagocytosis, and confirmed findings using GPR84 knockout cells and a GPR84 antagonist.
Main Results:
- GPR84 expression increased in murine tissues and macrophages under inflammatory and metabolic stress.
- GPR84 activation by 6-OAU enhanced pro-inflammatory signaling and mediator release in macrophages.
- GPR84 activation promoted bacterial adhesion and phagocytosis, effects abolished in GPR84-deficient cells or with antagonist treatment.
Conclusions:
- GPR84 acts as an enhancer of inflammatory signaling in macrophages once inflammation is established.
- GPR84 antagonism presents a potential therapeutic avenue for inflammatory and metabolic diseases.
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