Catestatin Inhibits Obesity-Induced Macrophage Infiltration and Inflammation in the Liver and Suppresses Hepatic Glucose Production, Leading to Improved Insulin Sensitivity

Author:

Ying Wei1,Mahata Sumana2,Bandyopadhyay Gautam K.1,Zhou Zhenqi3,Wollam Joshua1,Vu Jessica1,Mayoral Rafael1,Chi Nai-Wen14,Webster Nicholas J.G.14,Corti Angelo5,Mahata Sushil K.14ORCID

Affiliation:

1. Department of Medicine, University of California, San Diego, La Jolla, CA

2. California Institute of Technology, Pasadena, CA

3. Department of Medicine, David Geffen School of Medicine, University of California, Los Angeles, Los Angeles, CA

4. VA San Diego Healthcare System, San Diego, CA

5. Istituto di Ricovero e Cura a Carattere Scientifico San Raffaele Scientific Institute, San Raffaele Vita-Salute University, Milan, Italy

Abstract

The activation of Kupffer cells (KCs) and monocyte-derived recruited macrophages (McMΦs) in the liver contributes to obesity-induced insulin resistance and type 2 diabetes. Mice with diet-induced obesity (DIO mice) treated with chromogranin A peptide catestatin (CST) showed several positive results. These included decreased hepatic/plasma lipids and plasma insulin, diminished expression of gluconeogenic genes, attenuated expression of proinflammatory genes, increased expression of anti-inflammatory genes in McMΦs, and inhibition of the infiltration of McMΦs resulting in improvement of insulin sensitivity. Systemic CST knockout (CST-KO) mice on normal chow diet (NCD) ate more food, gained weight, and displayed elevated blood glucose and insulin levels. Supplementation of CST normalized glucose and insulin levels. To verify that the CST deficiency caused macrophages to be very proinflammatory in CST-KO NCD mice and produced glucose intolerance, we tested the effects of (sorted with FACS) F4/80+Ly6C− cells (representing KCs) and F4/80−Ly6C+ cells (representing McMΦs) on hepatic glucose production (HGP). Both basal HGP and glucagon-induced HGP were markedly increased in hepatocytes cocultured with KCs and McMΦs from NCD-fed CST-KO mice, and the effect was abrogated upon pretreatment of CST-KO macrophages with CST. Thus, we provide a novel mechanism of HGP suppression through CST-mediated inhibition of macrophage infiltration and function.

Funder

VA Merit Review

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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