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Paper Details

Integrative QTL analysis of gene expression and chromatin accessibility identifies multi-tissue patterns of genetic regulation.
PLoS Genet
27
2020
Akr1e1, CC, Pik3c2g, QTL, Regulatory element, Zfp985, accessible chromatin, cQTL, cells, chromatin, chromatin QTL, chromatin regions, eQTL, expression quantitative trait loci, genes, local-eQTL, mice, mouse, regulatory elements, zinc, zinc finger transcription factor Zfp985
Author NameAffiliation
Bryan C QuachUniversity of North Carolina at Chapel Hill
Bryan C QuachCenter for Omics Discovery and Epidemiology, Research Triangle Institute (RTI) International
Bryan C QuachUniversity of North Carolina at Chapel Hill
Alexias SafiDuke University
Alexias SafiCenter for Genomic and Computational Biology, Duke University
Jeremy M SimonUniversity of North Carolina at Chapel Hill
Gregory E CrawfordDuke University
Gregory E CrawfordCenter for Genomic and Computational Biology, Duke University
Gregory E CrawfordDuke University
Gregory E CrawfordCenter for Genomic and Computational Biology, Duke University
William ValdarUniversity of North Carolina at Chapel Hill
William ValdarLineberger Comprehensive Cancer Center, University of North Carolina at Chapel Hill
William ValdarUniversity of North Carolina at Chapel Hill
William ValdarLineberger Comprehensive Cancer Center, University of North Carolina at Chapel Hill
Ivan RusynTexas A&M University, College Station
Terrence S FureyUniversity of North Carolina at Chapel Hill
Terrence S FureyLineberger Comprehensive Cancer Center, University of North Carolina at Chapel Hill
Terrence S FureyUniversity of North Carolina at Chapel Hill
Terrence S FureyUniversity of North Carolina at Chapel Hill
Terrence S FureyUniversity of North Carolina at Chapel Hill
Terrence S FureyLineberger Comprehensive Cancer Center, University of North Carolina at Chapel Hill
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