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A Complex Relationship between Immunity and Metabolism in Drosophila Diet-Induced Insulin Resistance.

Citation
Musselman, L. P., et al. “A Complex Relationship Between Immunity And Metabolism In Drosophila Diet-Induced Insulin Resistance.”. Molecular And Cellular Biology.
Center Washington University in St Louis
Author Laura Palanker Musselman, Jill L Fink, Ana R Grant, Jared A Gatto, Bryon F Tuthill, Thomas J Baranski
Keywords Drosophila, diabetes, Innate immunity, Insulin receptor, Metabolism
Abstract

Both systemic insulin resistance and tissue-specific insulin resistance have been described in and are accompanied by many indicators of metabolic disease. The downstream mediators of insulin-resistant pathophysiology remain unclear. We analyzed insulin signaling in the fat body studying loss and gain of function. When expression of the sole insulin receptor (InR) was reduced in larval fat bodies, animals exhibited developmental delay and reduced size in a diet-dependent manner. Fat body InR knockdown also led to reduced survival on high-sugar diets. To look downstream of InR at potential mediators of insulin resistance, transcriptome sequencing (RNA-seq) studies in insulin-resistant fat bodies revealed differential expression of genes, including those involved in innate immunity. Obesity-associated insulin resistance led to increased susceptibility of flies to infection, as in humans. Reduced innate immunity was dependent on fat body InR expression. The peptidoglycan recognition proteins (PGRPs) PGRP-SB2 and PGRP-SC2 were selected for further study based on differential expression studies. Downregulating PGRP-SB2 selectively in the fat body protected animals from the deleterious effects of overnutrition, whereas downregulating PGRP-SC2 produced InR-like phenotypes. These studies extend earlier work linking the immune and insulin signaling pathways and identify new targets of insulin signaling that could serve as potential drug targets to treat type 2 diabetes.

Year of Publication
2018
Journal
Molecular and cellular biology
Volume
38
Issue
2
Date Published
12/2018
ISSN Number
1098-5549
DOI
10.1128/MCB.00259-17
Alternate Journal
Mol. Cell. Biol.
PMID
29084810
PMCID
PMC5748464
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