The EN-TEx resource of multi-tissue personal epigenomes & variant-impact models
Rozowsky J, Gao J, Borsari B, Yang Y, Galeev T, Gürsoy G, Epstein C, Xiong K, Xu J, Li T, Liu J, Yu K, Berthel A, Chen Z, Navarro F, Sun M, Wright J, Chang J, Cameron C, Shoresh N, Gaskell E, Drenkow J, Adrian J, Aganezov S, Aguet F, Balderrama-Gutierrez G, Banskota S, Corona G, Chee S, Chhetri S, Cortez Martins G, Danyko C, Davis C, Farid D, Farrell N, Gabdank I, Gofin Y, Gorkin D, Gu M, Hecht V, Hitz B, Issner R, Jiang Y, Kirsche M, Kong X, Lam B, Li S, Li B, Li X, Lin K, Luo R, Mackiewicz M, Meng R, Moore J, Mudge J, Nelson N, Nusbaum C, Popov I, Pratt H, Qiu Y, Ramakrishnan S, Raymond J, Salichos L, Scavelli A, Schreiber J, Sedlazeck F, See L, Sherman R, Shi X, Shi M, Sloan C, Strattan J, Tan Z, Tanaka F, Vlasova A, Wang J, Werner J, Williams B, Xu M, Yan C, Yu L, Zaleski C, Zhang J, Ardlie K, Cherry J, Mendenhall E, Noble W, Weng Z, Levine M, Dobin A, Wold B, Mortazavi A, Ren B, Gillis J, Myers R, Snyder M, Choudhary J, Milosavljevic A, Schatz M, Bernstein B, Guigó R, Gingeras T, Gerstein M. The EN-TEx resource of multi-tissue personal epigenomes & variant-impact models. Cell 2023, 186: 1493-1511.e40. PMID: 37001506, PMCID: PMC10074325, DOI: 10.1016/j.cell.2023.02.018.Peer-Reviewed Original ResearchMeSH KeywordsEpigenomeGenome-Wide Association StudyGenomicsPhenotypePolymorphism, Single NucleotideQuantitative Trait Loci
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