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CD36 mediates lipid accumulation in pancreatic beta cells under the duress of glucolipotoxic conditions: Novel roles of lysine deacetylases.

Citation
Khan, S., and A. Kowluru. “Cd36 Mediates Lipid Accumulation In Pancreatic Beta Cells Under The Duress Of Glucolipotoxic Conditions: Novel Roles Of Lysine Deacetylases.”. Biochemical And Biophysical Research Communications, pp. 2221-2226.
Center University of Michigan
Author Sabbir Khan, Anjaneyulu Kowluru
Keywords CD36, Caspase 3, glucolipotoxicity, Histone deacetylases, pancreatic beta cells
Abstract

The cluster of differentiation 36 (CD36) is implicated in the intake of long-chain fatty acids and fat storage in various cell types including the pancreatic beta cell, thus contributing to the pathogenesis of metabolic stress and diabetes. Recent evidence indicates that CD36 undergoes post-translational modifications such as acetylation-deacetylation. However, putative roles of such modifications in its functional activation and onset of beta cell dysregulation under the duress of glucolipotoxicity (GLT) remain largely unknown. Using pharmacological approaches, we validated, herein, the hypothesis that acetylation-deacetylation signaling steps are involved in CD36-mediated lipid accumulation and downstream apoptotic signaling in pancreatic beta (INS-1832/13) cells under GLT. Exposure of these cells to GLT resulted in significant lipid accumulation without affecting the CD36 expression. Sulfo-n-succinimidyl oleate (SSO), an irreversible inhibitor of CD36, significantly attenuated lipid accumulation under GLT conditions, thus implicating CD36 in this metabolic step. Furthermore, trichostatin A (TSA) or valproic acid (VPA), known inhibitors of lysine deacetylases, markedly suppressed GLT-associated lipid accumulation with no discernible effects on CD36 expression. Lastly, SSO or TSA prevented caspase 3 activation in INS-1832/13 cells exposed to GLT conditions. Based on these findings, we conclude that an acetylation-deacetylation signaling step might regulate CD36 functional activity and subsequent lipid accumulation and caspase 3 activation in pancreatic beta cells exposed to GLT conditions. Identification of specific lysine deacetylases that control CD36 function should provide novel clues for the prevention of beta-cell dysfunction under GLT.

Year of Publication
2018
Journal
Biochemical and biophysical research communications
Volume
495
Issue
3
Number of Pages
2221-2226
Date Published
12/2018
ISSN Number
1090-2104
DOI
10.1016/j.bbrc.2017.12.111
Alternate Journal
Biochem. Biophys. Res. Commun.
PMID
29274335
PMCID
PMC5756509
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