Repression of human and mouse brain inflammaging transcriptome by broad gene-body histone hyperacetylation.

Cheng, Hao; Xuan, Hongwen; Green, Christopher D; Han, Yixing; Sun, Na; Shen, Hongjie; McDermott, Joseph; Bennett, David A et al. · Proc Natl Acad Sci U S A · 2018

basic_science · Level V

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Abstract

Brain "inflammaging," a low-grade and chronic inflammation, is a major hallmark for aging-related neurodegenerative diseases. Here, by profiling H3K27ac and gene expression patterns in human and mouse brains, we found that age-related up-regulated (Age-Up) and down-regulated (Age-Down) genes have distinct H3K27ac patterns. Although both groups show promoter H3K27ac, the Age-Up genes, enriched for inflammation-related functions, are additionally marked by broad H3K27ac distribution over their gene bodies, which is progressively reduced during aging. Age-related gene expression changes can be predicted by gene-body H3K27ac level. Contrary to the presumed transcription activation function of promoter H3K27ac, we found that broad gene-body hyper H3K27ac suppresses overexpression of inflammaging genes. Altogether, our findings revealed opposite regulations by H3K27ac of Age-Up and Age-Down genes and a mode of broad gene-body H3K27ac in repressing transcription.

Medical subject headings