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A Membrane-Bound Diacylglycerol Species Induces PKCϵ-Mediated Hepatic Insulin Resistance.

Citation
Lyu, K., et al. “A Membrane-Bound Diacylglycerol Species Induces Pkcϵ-Mediated Hepatic Insulin Resistance.”. Cell Metabolism, pp. 654-664.e5.
Center Yale University
Author Kun Lyu, Ye Zhang, Dongyan Zhang, Mario Kahn, Kasper W Ter Horst, Marcos R S Rodrigues, Rafael C Gaspar, Sandro M Hirabara, Panu K Luukkonen, Seohyuk Lee, Sanjay Bhanot, Jesse Rinehart, Niels Blume, Morten Grønbech Rasch, Mireille J Serlie, Jonathan S Bogan, Gary W Cline, Varman T Samuel, Gerald I Shulman
Keywords ceramides, dicylglycerols, Hepatic Glucose Production, hepatic glycogen synthesis, Hepatic Insulin Resistance, insulin receptor phosphorylation, liquid chromatography-tandem mass spectrometry, nonalcoholic fatty liver disease, protein kinase C-epsilon, type 2 diabetes
Abstract

Nonalcoholic fatty liver disease is strongly associated with hepatic insulin resistance (HIR); however, the key lipid species and molecular mechanisms linking these conditions are widely debated. We developed a subcellular fractionation method to quantify diacylglycerol (DAG) stereoisomers and ceramides in the endoplasmic reticulum (ER), mitochondria, plasma membrane (PM), lipid droplets, and cytosol. Acute knockdown (KD) of diacylglycerol acyltransferase-2 in liver induced HIR in rats. This was due to PM sn-1,2-DAG accumulation, which promoted PKCϵ activation and insulin receptor kinase (IRK)-T1160 phosphorylation, resulting in decreased IRK-Y1162 phosphorylation. Liver PM sn-1,2-DAG content and IRK-T1160 phosphorylation were also higher in humans with HIR. In rats, liver-specific PKCϵ KD ameliorated high-fat diet-induced HIR by lowering IRK-T1160 phosphorylation, while liver-specific overexpression of constitutively active PKCϵ-induced HIR by promoting IRK-T1160 phosphorylation. These data identify PM sn-1,2-DAGs as the key pool of lipids that activate PKCϵ and that hepatic PKCϵ is both necessary and sufficient in mediating HIR.

Year of Publication
2020
Journal
Cell metabolism
Volume
32
Issue
4
Number of Pages
654-664.e5
Date Published
10/2020
ISSN Number
1932-7420
DOI
10.1016/j.cmet.2020.08.001
Alternate Journal
Cell Metab
PMID
32882164
PMCID
PMC7544641
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