Oxidized Low-Density Lipoprotein Accumulation in Macrophages Impairs Lipopolysaccharide-Induced Activation of AKT2, ATP Citrate Lyase, Acetyl–Coenzyme A Production, and Inflammatory Gene H3K27 Acetylation

Author:

Ting Kenneth K. Y.12ORCID,Yu Pei1,Iyayi Mudia1,Dow Riley12ORCID,Hyduk Sharon J.1,Floro Eric13,Ibrahim Hisham14ORCID,Karim Saraf12,Polenz Chanele K.14ORCID,Winer Daniel A.1245ORCID,Woo Minna1256ORCID,Rocheleau Jonathan1367ORCID,Jongstra-Bilen Jenny124,Cybulsky Myron I.1241ORCID

Affiliation:

1. *Toronto General Hospital Research Institute, University Health Network, Toronto, Ontario, Canada

2. †Department of Immunology, University of Toronto, Toronto, Ontario, Canada

3. ‡Institute of Biomedical Engineering, University of Toronto, Toronto, Ontario, Canada

4. §Department of Laboratory Medicine and Pathobiology, University of Toronto, Toronto, Ontario, Canada

5. ¶Division of Endocrinology and Metabolism, Department of Medicine, University Health Network, University of Toronto, Toronto, Ontario, Canada

6. ‖Banting and Best Diabetes Centre, University of Toronto, Toronto, Ontario, Canada

7. #Department of Physiology, University of Toronto, Toronto, Ontario, Canada

Abstract

Abstract The accumulation of lipid and the formation of macrophage foam cells is a hallmark of atherosclerosis, a chronic inflammatory disease. To better understand the role of macrophage lipid accumulation in inflammation during atherogenesis, we studied early molecular events that follow the accumulation of oxidized low-density lipoprotein (oxLDL) in cultured mouse macrophages. We previously showed that oxLDL accumulation downregulates the inflammatory response in conjunction with downregulation of late-phase glycolysis. In this study, we show that within hours after LPS stimulation, macrophages with accumulated oxLDL maintain early-phase glycolysis but selectively downregulate activation of AKT2, one of three AKT isoforms. The inhibition of AKT2 activation reduced LPS-induced ATP citrate lyase activation, acetyl-CoA production, and acetylation of histone 3 lysine 27 (H3K27ac) in certain inflammatory gene promoters. In contrast to oxLDL, multiple early LPS-induced signaling pathways were inhibited in macrophages with accumulated cholesterol, including TBK1, AKT1, AKT2, MAPK, and NF-κB, and early-phase glycolysis. The selective inhibition of LPS-induced AKT2 activation was dependent on the generation of mitochondrial oxygen radicals during the accumulation of oxLDL in macrophages prior to LPS stimulation. This is consistent with increased oxidative phosphorylation, fatty acid synthesis, and oxidation pathways found by comparative transcriptomic analyses of oxLDL-loaded versus control macrophages. Our study shows a functional connection between oxLDL accumulation, inactivation of AKT2, and the inhibition of certain inflammatory genes through epigenetic changes that occur soon after LPS stimulation, independent of early-phase glycolysis.

Publisher

The American Association of Immunologists

Subject

Immunology and Allergy,General Medicine,Immunology

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