An integrated multi-omics approach identifies epigenetic alterations associated with Alzheimer's disease

被引:209
|
作者
Nativio, Raffaella [1 ,2 ]
Lan, Yemin [2 ]
Donahue, Greg [1 ,2 ]
Sidoli, Simone [2 ,3 ,9 ]
Berson, Amit [4 ]
Srinivasan, Ananth R. [4 ]
Shcherbakova, Oksana [4 ]
Amlie-Wolf, Alexandre [5 ]
Nie, Ji [6 ,7 ]
Cui, Xiaolong [6 ,7 ]
He, Chuan [6 ,7 ]
Wang, Li-San [5 ]
Garcia, Benjamin A. [2 ,3 ]
Trojanowski, John Q. [5 ]
Bonini, Nancy M. [4 ]
Berger, Shelley L. [1 ,2 ,4 ,8 ]
机构
[1] Univ Penn, Dept Cell & Dev Biol, Perelman Sch Med, Philadelphia, PA 19104 USA
[2] Univ Penn, Epigenet Inst, Perelman Sch Med, Philadelphia, PA 19104 USA
[3] Univ Penn, Dept Biochem & Biophys, Perelman Sch Med, Philadelphia, PA 19104 USA
[4] Univ Penn, Dept Biol, Philadelphia, PA 19104 USA
[5] Univ Penn, Dept Pathol & Lab Med, Philadelphia, PA USA
[6] Univ Chicago, Dept Chem, Dept Biochem & Mol Biol, 5735 S Ellis Ave, Chicago, IL 60637 USA
[7] Univ Chicago, Howard Hughes Med Inst, Inst Biophys Dynam, 5841 S Maryland Ave, Chicago, IL 60637 USA
[8] Univ Penn, Dept Genet, Perelman Sch Med, Philadelphia, PA 19104 USA
[9] Albert Einstein Coll Med, Dept Biochem, Bronx, NY 10467 USA
基金
美国国家卫生研究院;
关键词
RUBINSTEIN-TAYBI-SYNDROME; S-PHASE ENTRY; HISTONE H3; TRANSCRIPTION FACTOR; BINDING PROTEIN; ACETYLATION; TAU; CBP; METHYLATION; EXPRESSION;
D O I
10.1038/s41588-020-0696-0
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Protein aggregation is the hallmark of neurodegeneration, but the molecular mechanisms underlying late-onset Alzheimer's disease (AD) are unclear. Here we integrated transcriptomic, proteomic and epigenomic analyses of postmortem human brains to identify molecular pathways involved in AD. RNA sequencing analysis revealed upregulation of transcription- and chromatin-related genes, including the histone acetyltransferases for H3K27ac and H3K9ac. An unbiased proteomic screening singled out H3K27ac and H3K9ac as the main enrichments specific to AD. In turn, epigenomic profiling revealed gains in the histone H3 modifications H3K27ac and H3K9ac linked to transcription, chromatin and disease pathways in AD. Increasing genome-wide H3K27ac and H3K9ac in a fly model of AD exacerbated amyloid-beta 42-driven neurodegeneration. Together, these findings suggest that AD involves a reconfiguration of the epigenome, wherein H3K27ac and H3K9ac affect disease pathways by dysregulating transcription- and chromatin-gene feedback loops. The identification of this process highlights potential epigenetic strategies for early-stage disease treatment. Multi-omic profiling of brain tissue from patients with Alzheimer's disease (AD) identifies gains in H3K27ac and H3K9ac linked to transcription and disease pathways. Increasing H3K27ac and H3K9ac in a fly model of AD exacerbates neurodegeneration.
引用
收藏
页码:1024 / +
页数:31
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