Genetic regulation of cell-type specific chromatin accessibility shapes the etiology of brain diseases

Author:

Zeng Biao,Bendl JaroslavORCID,Deng ChengyuORCID,Lee DonghoonORCID,Misir Ruth,Reach Sarah M.ORCID,Kleopoulos Steven P.ORCID,Auluck Pavan,Marenco StefanoORCID,Lewis David A.,Haroutunian VahramORCID,Ahituv NadavORCID,Fullard John F.ORCID,Hoffman Gabriel E.ORCID,Roussos PanosORCID

Abstract

AbstractNucleotide variants in cell type-specific gene regulatory elements in the human brain are major risk factors of human disease. We measured chromatin accessibility in sorted neurons and glia from 1,932 samples of human postmortem brain and identified 34,539 open chromatin regions with chromatin accessibility quantitative trait loci (caQTL). Only 10.4% of caQTL are shared between neurons and glia, supporting the cell type specificity of genetic regulation of the brain regulome. Incorporating allele specific chromatin accessibility improves statistical fine-mapping and refines molecular mechanisms underlying disease risk. Using massively parallel reporter assays in induced excitatory neurons, we screened 19,893 brain QTLs, identifying the functional impact of 476 regulatory variants. Combined, this comprehensive resource captures variation in the human brain regulome and provides novel insights into brain disease etiology.One sentence summaryCell-type specific chromatin accessibility QTL reveals regulatory mechanisms underlying brain diseases.

Publisher

Cold Spring Harbor Laboratory

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