PI3Kγ activity in leukocytes promotes adipose tissue inflammation and early-onset insulin resistance during obesity.
Ludovic BreassonBarbara BecattiniClaudia SardiAngela MolinaroFabio ZaniRomina MaroneFabrizio BotindariMélanie BousquenaudCurzio RueggMatthias P WymannGiovanni SolinasPublished in: Science signaling (2017)
The phosphoinositide 3-kinase γ (PI3Kγ) plays a major role in leukocyte recruitment during acute inflammation and has been proposed to inhibit classical macrophage activation by driving immunosuppressive gene expression. PI3Kγ plays an important role in diet-induced obesity and insulin resistance. In seeking to determine the underlying molecular mechanisms, we showed that PI3Kγ action in high-fat diet-induced inflammation and insulin resistance depended largely on its role in the control of adiposity, which was due to PI3Kγ activity in a nonhematopoietic cell type. However, PI3Kγ activity in leukocytes was required for efficient neutrophil recruitment to adipose tissue. Neutrophil recruitment was correlated with proinflammatory gene expression in macrophages in adipose tissue, which triggered insulin resistance early during the development of obesity. Our data challenge the concept that PI3Kγ is a general suppressor of classical macrophage activation and indicate that PI3Kγ controls macrophage gene expression by non-cell-autonomous mechanisms, the outcome of which is context-dependent.
Keyphrases
- insulin resistance
- adipose tissue
- high fat diet induced
- gene expression
- early onset
- high fat diet
- oxidative stress
- polycystic ovary syndrome
- dna methylation
- metabolic syndrome
- peripheral blood
- late onset
- skeletal muscle
- glycemic control
- type diabetes
- liver failure
- mental health
- cell therapy
- body mass index
- bone marrow
- protein kinase
- artificial intelligence
- mesenchymal stem cells
- respiratory failure
- drug induced
- machine learning
- stem cells
- big data
- deep learning
- acute respiratory distress syndrome
- weight gain
- extracorporeal membrane oxygenation