Acute activation of Gq-signaling in pancreatic islet macrophages inhibits insulin secretion through AMPK-sphingolipid axis

Obesity-associated inflammation impairs pancreatic β-cell function, yet the mechanisms by which immune cells acutely regulate insulin secretion remain poorly defined. Here, we identify myeloid Gq signaling as an immunometabolic node linking macrophage lipid sensing to impaired insulin secretion. Using chemogenetic DREADD-mediated activation of myeloid Gq, we show that acute macrophage Gq activation impairs glucose-stimulated insulin secretion (GSIS) in vivo, whereas myeloid Gαq ablation enhances GSIS. Mechanistically, Gq activation rapidly induced AMPK phosphorylation and sphingolipid remodeling independently of canonical inflammatory cytokines. Macrophage-derived sphingolipids impaired β-cell insulin signaling and GSIS through CD36-PKCζ, while inhibition of CD36, AMPK, or sphingolipid metabolism restored β-cell function. We further identified GPR18, a Gq-coupled endocannabinoid-responsive GPCR, as an upstream regulator. GPR18 activation with N-arachidonoyl glycine (NAGly) recapitulated this phenotype, whereas myeloid Gαq deletion or Gpr18/AMPK silencing abolished it. GPR18 signaling predominantly engaged Gq rather than Gi pathways. In human tissues, GPR18 was enriched in islet macrophages, and NAGly suppressed GSIS in primary human islets. Thus, a conserved macrophage GPR18-Gαq-AMPK-sphingolipid axis dynamically regulates β-cell function and represents a potential therapeutic target in obesity and type 2 diabetes.

Authors

Institutions

Publication Details

Journal
Journal of Clinical Investigation
Published
2026-09-15
DOI
https://doi.org/10.1172/jci202344
Primary Topic
Pancreatic function and diabetes
Type
article
Field-Weighted Citation Impact
0.00
Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
article

Acute activation of Gq-signaling in pancreatic islet macrophages inhibits insulin secretion through AMPK-sphingolipid axis

Hamim Zafar, Sai P. Pydi, Mriganka De Sarkar, H.N. Yadav et al.
Journal of Clinical Investigation
Pancreatic function and diabetes
article

Acute activation of Gq-signaling in pancreatic islet macrophages inhibits insulin secretion through AMPK-sphingolipid axis

Hamim Zafar, Sai P. Pydi, Mriganka De Sarkar, H.N. Yadav, Seema Kuldeep, Kunj Kumar Prajapati, Dharmaraja Allimuthu, Ashish Kumar, Sudipta Paul, Rashmi Parihar, Santhosh Duraisamy, Saahiba Thaleshwari, LUIZ F. BARELLA, Sonal Amit, Tamojit Santra, Santosh K. Misra, Ganesh Timalsina, Soumita Bhaumik, Raashidha Farhath, Michael A. Kalwat, Anuj Gargya, Simran Singh
article en

Abstract

Obesity-associated inflammation impairs pancreatic β-cell function, yet the mechanisms by which immune cells acutely regulate insulin secretion remain poorly defined. Here, we identify myeloid Gq signaling as an immunometabolic node linking macrophage lipid sensing to impaired insulin secretion. Using chemogenetic DREADD-mediated activation of myeloid Gq, we show that acute macrophage Gq activation impairs glucose-stimulated insulin secretion (GSIS) in vivo, whereas myeloid Gαq ablation enhances GSIS. Mechanistically, Gq activation rapidly induced AMPK phosphorylation and sphingolipid remodeling independently of canonical inflammatory cytokines. Macrophage-derived sphingolipids impaired β-cell insulin signaling and GSIS through CD36-PKCζ, while inhibition of CD36, AMPK, or sphingolipid metabolism restored β-cell function. We further identified GPR18, a Gq-coupled endocannabinoid-responsive GPCR, as an upstream regulator. GPR18 activation with N-arachidonoyl glycine (NAGly) recapitulated this phenotype, whereas myeloid Gαq deletion or Gpr18/AMPK silencing abolished it. GPR18 signaling predominantly engaged Gq rather than Gi pathways. In human tissues, GPR18 was enriched in islet macrophages, and NAGly suppressed GSIS in primary human islets. Thus, a conserved macrophage GPR18-Gαq-AMPK-sphingolipid axis dynamically regulates β-cell function and represents a potential therapeutic target in obesity and type 2 diabetes.

Journal of Clinical Investigation
Ganesh Shankar Vidyarthi Memorial Medical College (IN), Indiana Biosciences Research Institute (US), PEN American Center (US), Penguin Random House (United States) (US), Indian Institute of Technology Kanpur (IN)
Good health and well-being
Openalex Percentile: Top 8%
Pancreatic function and diabetes
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.