Adipocyte G<sub>q</sub> signaling is a regulator of glucose and lipid homeostasis in mice.

Kimura, Takefumi; Pydi, Sai P; Wang, Lei; Haspula, Dhanush; Cui, Yinghong; Lu, Huiyan; König, Gabriele M; Kostenis, Evi et al. · Nat Commun · 2022

basic_science · Level V

Where this comes from

Abstract

Obesity is the major driver of the global epidemic in type 2 diabetes (T2D). In individuals with obesity, impaired insulin action leads to increased lipolysis in adipocytes, resulting in elevated plasma free fatty acid (FFA) levels that promote peripheral insulin resistance, a hallmark of T2D. Here we show, by using a combined genetic/biochemical/pharmacologic approach, that increased adipocyte lipolysis can be prevented by selective activation of adipocyte G<sub>q</sub> signaling in vitro and in vivo (in mice). Activation of this pathway by a G<sub>q</sub>-coupled designer receptor or by an agonist acting on an endogenous adipocyte G<sub>q</sub>-coupled receptor (CysLT<sub>2</sub> receptor) greatly improved glucose and lipid homeostasis in obese mice or in mice with adipocyte insulin receptor deficiency. Our findings identify adipocyte G<sub>q</sub> signaling as an essential regulator of whole-body glucose and lipid homeostasis and should inform the development of novel classes of GPCR-based antidiabetic drugs.

Medical subject headings