4.7 Article

A histone acetylome-wide association study of Alzheimer's disease identifies disease-associated H3K27ac differences in the entorhinal cortex

Journal

NATURE NEUROSCIENCE
Volume 21, Issue 11, Pages 1618-+

Publisher

NATURE RESEARCH
DOI: 10.1038/s41593-018-0253-7

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Funding

  1. US National Institutes of Health [R01 AG036039]
  2. EU-FP7 Marie Curie ITN EpiTrain (REA) [316758]
  3. Medical Research Council (MRC) CASE PhD studentship
  4. Wellcome Trust Multi User Equipment Award [WT101650MA]
  5. Medical Research Council (MRC) Clinical Infrastructure Funding [MR/M008924/1]
  6. Alzheimer's Association US New Investigator Research Grant [NIRG-14-320878]
  7. BRACE (Bristol Research into Alzheimer's and Care of the Elderly)
  8. MRC [MR/L016397/1, 1930096, MR/M008924/1] Funding Source: UKRI

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We quantified genome-wide patterns of lysine H3K27 acetylation (H3K27ac) in entorhinal cortex samples from Alzheimer's disease (AD) cases and matched controls using chromatin immunoprecipitation and highly parallel sequencing. We observed widespread acetylomic variation associated with AD neuropathology, identifying 4,162 differential peaks (false discovery rate < 0.05) between AD cases and controls. Differentially acetylated peaks were enriched in disease-related biological pathways and included regions annotated to genes involved in the progression of amyloid-beta and tau pathology (for example, APP, PSEN1, PSEN2, and MAPT), as well as regions containing variants associated with sporadic late-onset AD. Partitioned heritability analysis highlighted a highly significant enrichment of AD risk variants in entorhinal cortex H3K27ac peak regions. AD-associated variable H3K27ac was associated with transcriptional variation at proximal genes including CR1, GPR22, KMO, PIM3, PSEN1, and RGCC. In addition to identifying molecular pathways associated with AD neuropathology, we present a framework for genome-wide studies of histone modifications in complex disease.

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