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Orphan GPR26 Counteracts Early Phases of Hyperglycemia-Mediated Monocyte Activation and Is Suppressed in Diabetic
Zahra Abedi Kichi1,2, Lucia Natarelli2, Saeed Sadeghian3
1Department of Genetics, Faculty of Biological Sciences, Tarbiat Modares University, Tehran P.O. Box 14115-111, Iran.
Abstract:
Diabetes is the ninth leading cause of death, with an estimated 1.5 million deaths worldwide. Type 2 diabetes (T2D) results from the body's ineffective use of insulin and is largely the result of excess body weight and physical inactivity. T2D increases the risk of cardiovascular diseases, retinopathy, and kidney failure by two-to three-fold. Hyperglycemia, as a hallmark of diabetes, acts as a potent stimulator of inflammatory condition by activating endothelial cells and by dysregulating monocyte activation. G-protein couple receptors (GPCRs) can both exacerbate and promote inflammatory resolution. Genome-wide association studies (GWAS) indicate that GPCRs are differentially regulated in inflammatory and vessel cells from diabetic patients. However, most of these GPCRs are orphan receptors, for which the mechanism of action in diabetes is unknown. Our data indicated that orphan GPCR26 is downregulated in the PBMC isolated from T2D patients. In contrast, GPR26 was initially upregulated in human monocytes and PBMC treated with high glucose (HG) levels and then decreased upon chronic and prolonged HG exposure. GPR26 levels were decreased in T2D patients treated with insulin compared to non-insulin treated patients. Moreover, GPR26 inversely correlated with the BMI and the HbA1c of diabetic compared to non-diabetic patients. Knockdown of GPR26 enhanced monocyte ROS production, MAPK signaling, pro-inflammatory activation, monocyte adhesion to ECs, and enhanced the activity of Caspase 3, a pro-apoptotic molecule. The same mechanisms were activated by HG and exacerbated when GPR26 was knocked down. Hence, our data indicated that GPR26 is initially activated to protect monocytes from HG and is inhibited under chronic hyperglycemic conditions.
Insights
This study reveals that G-protein coupled receptor 26 (GPCR26) initially protects against high glucose effects in type 2 diabetes (T2D) but is later inhibited. Lower GPCR26 levels correlate with poorer diabetes control and increased inflammation.
Area of Science:
- Endocrinology
- Immunology
- Molecular Biology
Background:
- Type 2 diabetes (T2D) is a major global health issue linked to hyperglycemia and inflammation.
- G-protein coupled receptors (GPCRs) play a role in inflammation, but their function in T2D is largely unknown, especially for orphan receptors.
- GPCR26 is an orphan receptor implicated in inflammatory processes.
Purpose of the Study:
- To investigate the role of orphan G-protein coupled receptor 26 (GPCR26) in the context of type 2 diabetes (T2D).
- To explore the relationship between GPCR26 expression, hyperglycemia, and inflammatory responses in diabetic patients.
Main Methods:
- Analysis of GPCR26 expression in peripheral blood mononuclear cells (PBMCs) from T2D patients and healthy controls.
- In vitro studies using human monocytes and PBMCs exposed to high glucose (HG) conditions.
- GPCR26 knockdown experiments to assess its impact on monocyte activation, reactive oxygen species (ROS) production, and apoptosis.
Main Results:
- GPCR26 was downregulated in PBMCs from T2D patients and inversely correlated with BMI and HbA1c.
- Initial exposure to HG upregulated GPCR26 in monocytes, but chronic exposure led to its decrease.
- GPCR26 knockdown exacerbated HG-induced monocyte ROS production, MAPK signaling, pro-inflammatory activation, adhesion, and apoptosis.
Conclusions:
- GPCR26 acts as an initial protective mechanism against hyperglycemia in monocytes.
- Chronic hyperglycemia leads to the inhibition of GPCR26, contributing to T2D-associated inflammation and complications.
- GPCR26 represents a potential therapeutic target for managing T2D-related inflammation.
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