American Journal of Physiology-Heart and Circulatory Physiology · 2011 · 48 citations · 16 references
Endothelial CellsLipid PeroxidationApoptosisImmunologyDna MethylationCell DeathEpigeneticsExaggerated MethylationOxidative StressSubsequent GenerationsAtherosclerosisOxysterolVascular BiologyCell BiologyLox-1 AntibodyCardiovascular DiseaseEndothelial DysfunctionPromoter MethylationLipoprotein MetabolismSystems BiologyMedicine
Oxidized LDL (ox-LDL) plays a critical role in atherogenesis, including apoptosis. As hypercholesterolemia causes epigenetic changes resulting in long-term phenotypic consequences, we hypothesized that repeated and continuous exposure to ox-LDL may alter the pattern of apoptosis in human umbilical vein endothelial cells (HUVECs). We also analyzed global and promoter-specific methylation of apoptosis-related genes. As expected, ox-LDL evoked a dose-dependent increase in apoptosis in the first passage HUVECs that was completely abrogated by lectin-like ox-LDL receptor (LOX-1)-neutralizing antibody. Ox-LDL-induced apoptosis was associated with upregulation of proapoptotic LOX-1, ANXA5, BAX, and CASP3 and inhibition of antiapoptotic BCL2 and cIAP-1 genes accompanied with reciprocal changes in the methylation of promoter regions of these genes. Subsequent passages of cells displayed attenuated apoptotic response to repeat ox-LDL challenge with blunted gene expression and exaggerated methylation of LOX-1, BAX, ANXA5, and CASP3 genes (all P < 0.05 vs. first exposure to ox-LDL). Treatment of cells with LOX-1 antibody before initial ox-LDL treatment prevented both gene-specific promoter methylation and expression changes and reduction of apoptotic response to repeat ox-LDL challenge. Based on these data, we conclude that exposure of HUVECs to ox-LDL induces epigenetic changes leading to resistance to apoptosis in subsequent generations and that this effect may be related to the LOX-1-mediated increase in DNA methylation.
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Luciano Cominacini, Anna Fratta Pasini, Ulisse Garbin et al. · Journal of Biological Chemistry · 2000 · 497 citations · Full text
Deletion of LOX-1 Reduces Atherogenesis in LDLR Knockout Mice Fed High Cholesterol Diet
Jawahar L. Mehta, Nobuhito Sanada, Chang Ping Hu et al. · Circulation Research · 2007 · 438 citations · Full text