Epigenome signatures landscaped by histone H3K9me3 are associated with the synaptic dysfunction in Alzheimer's disease
- Authors
- Lee, Min Young; Lee, Junghee; Hyeon, Seung Jae; Cho, Hyesun; Hwang, Yu Jin; Shin, Jong-Yeon; McKee, Ann C.; Kowall, Neil W.; Kim, Jong-Il; Stein, Thor D.; Hwang, Daehee; Ryu, Hoon
- Issue Date
- 2020-06
- Publisher
- WILEY
- Citation
- AGING CELL, v.19, no.6
- Abstract
- The pathogenesis of Alzheimer's disease (AD) and the commonest cause of dementia in the elderly remain incompletely understood. Recently, epigenetic modifications have been shown to play a potential role in neurodegeneration, but the specific involvement of epigenetic signatures landscaped by heterochromatin has not been studied in AD. Herein, we discovered that H3K9me3-mediated heterochromatin condensation is elevated in the cortex of sporadic AD postmortem brains. In order to identify which epigenomes are modulated by heterochromatin, we performed H3K9me3-chromatin immunoprecipitation (ChIP)-sequencing and mRNA-sequencing on postmortem brains from normal subjects and AD patients. The integrated analyses of genome-wide ChIP- and mRNA-sequencing data identified epigenomes that were highly occupied by H3K9me3 and inversely correlated with their mRNA expression levels in AD. Biological network analysis further revealed H3K9me3-landscaped epigenomes to be mainly involved in synaptic transmission, neuronal differentiation, and cell motility. Together, our data show that the abnormal heterochromatin remodeling by H3K9me3 leads to down-regulation of synaptic function-related genes, suggesting that the epigenetic alteration by H3K9me3 is associated with the synaptic pathology of sporadic AD.
- Keywords
- EPIGENETIC MECHANISMS; EXPRESSION ANALYSIS; BETA DEPOSITION; GENE-EXPRESSION; MOUSE MODEL; BRAIN; PROTEIN; NEURODEGENERATION; HETEROCHROMATIN; DEMENTIA; EPIGENETIC MECHANISMS; EXPRESSION ANALYSIS; BETA DEPOSITION; GENE-EXPRESSION; MOUSE MODEL; BRAIN; PROTEIN; NEURODEGENERATION; HETEROCHROMATIN; DEMENTIA; Alzheimer' s disease; epigenetic modifications; genome-wide sequencing; synaptic transmission
- ISSN
- 1474-9718
- URI
- https://pubs.kist.re.kr/handle/201004/118569
- DOI
- 10.1111/acel.13153
- Appears in Collections:
- KIST Article > 2020
- Files in This Item:
There are no files associated with this item.
- Export
- RIS (EndNote)
- XLS (Excel)
- XML
Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.