Oxidized Low-Density Lipoprotein Loading of Macrophages Downregulates TLR-Induced Proinflammatory Responses in a Gene-Specific and Temporal Manner through Transcriptional Control.
Jenny Jongstra-BilenCindy X ZhangTimothy WisnickiMengyi K LiSamantha White-AlfredRagave IlaalaganDario M FerriAshley DeonarainMark H WanSharon J HydukCarolyn L CumminsMyron I CybulskyPublished in: Journal of immunology (Baltimore, Md. : 1950) (2017)
Hypercholesterolemia is a key risk factor for atherosclerosis and leads to the uptake of native and oxidized low-density lipoprotein (oxLDL) by macrophages (Mϕs) and foam cell formation. Inflammatory processes accompany Mϕ foam cell formation in the artery wall, yet the relationship between Mϕ lipid loading and their response to inflammatory stimuli remains elusive. We investigated proinflammatory gene expression in thioglycollate-elicited peritoneal Mϕs, bone marrow-derived Mϕs and dendritic cells, and RAW264.7 cells. Loading with oxLDL did not induce peritoneal Mϕ apoptosis or modulate basal-level expression of proinflammatory genes. Upon stimulation of TLR4, the rapid induction of IFN-β was inhibited in cells loaded with oxLDL, whereas the induction of other proinflammatory genes by TLR4 (LPS), TLR3 (polyriboinosinic-polyribocytidylic acid), TLR2 (Pam3CSK4), and TLR9 (CpG) remained comparable within the first 2 h. Subsequently, the expression of a subset of proinflammatory genes (e.g., IL-1β, IL-6, CCL5) was reduced in oxLDL-loaded cells at the level of transcription. This phenomenon was partially dependent on NF erythroid 2-related factor 2 (NRF2) but not on nuclear liver X receptors α and β (LXRα,β), peroxisome proliferator-activated receptor-γ (PPARγ), and activating transcription factor 3 (ATF3). LPS-induced NF-κB reporter activity and intracellular signaling by NF-κB and MAPK pathways were comparable in oxLDL-loaded Mϕs, yet the binding of p65/RelA (the prototypic NF-κB family member) was reduced at IL-6 and CCL5 promoters. This study revealed that oxLDL loading of Mϕs negatively regulates transcription at late stages of TLR-induced proinflammatory gene expression and implicates epigenetic mechanisms such as histone deacetylase activity.
Keyphrases
- inflammatory response
- lps induced
- low density lipoprotein
- toll like receptor
- gene expression
- induced apoptosis
- cell cycle arrest
- signaling pathway
- oxidative stress
- transcription factor
- immune response
- pi k akt
- nuclear factor
- dna methylation
- dendritic cells
- genome wide
- diabetic rats
- genome wide identification
- single cell
- poor prognosis
- histone deacetylase
- drug induced
- drug delivery
- liver injury
- binding protein
- dna binding
- metabolic syndrome
- stem cells
- reactive oxygen species
- high glucose
- skeletal muscle
- adipose tissue
- mesenchymal stem cells
- bioinformatics analysis
- genome wide analysis
- coronary artery disease
- endothelial cells
- quantum dots
- heat shock
- loop mediated isothermal amplification