IL-10 Targets IRFs to Suppress IFN and Inflammatory Response Genes by Epigenetic Mechanisms
Mishra, B.; Bachu, M.; Wingert, C.; Yuan, R.; Chaudhary, V.; Braunner, C.; Bell, R.; Ivashkiv, L.
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Interleukin-10 (IL-10) is pivotal in suppressing inflammation and innate immune activation, in large part by suppressing induction of genes by potent inflammatory factors such as TLR ligands. Despite decades of research, molecular mechanisms underlying this inhibition have not been resolved. This study utilized an integrated epigenomic analysis of gene transcription, chromatin accessibility, histone modifications and transcription factor binding to investigate IL-10-mediated suppression of LPS and TNF responses in primary human monocytes. Instead of inhibiting core TLR4-activated pathways such as NF-{kappa}B, MAPK-AP-1 and TBK1-IRF3 signaling, IL-10 targeted IRF transcription factor activity and DNA binding, particularly IRF5 and an IRF1-mediated amplification loop that is operative in monocytes. This resulted in suppression of inflammatory NF-{kappa}B target genes, in whose activation IRFs play an amplifying role, and near-complete suppression of interferon-stimulated genes. Mechanisms of TLR4 and TNFR target gene inhibition included downregulation of chromatin accessibility, de novo enhancer formation, and IRF1-associated H3K27ac activating histone marks. These results provide a mechanism by which IL-10 suppresses inflammatory NF-{kappa}B target genes, highlight the role of IRF1 in inflammatory gene expression, and describe an underappreciated suppression of IFN responses by epigenetic mechanisms.
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