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Integrative analysis of 111 reference human epigenomes

Authors :
Roadmap Epigenomics Consortium
Kundaje, Anshul
Meuleman, Wouter
Ernst, Jason
Bilenky, Misha
Yen, Angela
Heravi-Moussavi, Alireza
Kheradpour, Pouya
Zhang, Zhizhuo
Wang, Jianrong
Ziller, Michael J.
Amin, Viren
Whitaker, John W.
Schultz, Matthew D.
Ward, Lucas D.
Sarkar, Abhishek
Quon, Gerald
Sandstrom, Richard S.
Eaton, Matthew L.
Wu, Yi-Chieh
Pfenning, Andreas R.
Wang, Xinchen
Claussnitzer, Melina
Liu, Yaping
Coarfa, Cristian
Harris, R. Alan
Shoresh, Noam
Epstein, Charles B.
Gjoneska, Elizabeta
Leung, Danny
Xie, Wei
Hawkins, R. David
Lister, Ryan
Hong, Chibo
Gascard, Philippe
Mungall, Andrew J.
Moore, Richard
Chuah, Eric
Tam, Angela
Canfield, Theresa K.
Hansen, R. Scott
Kaul, Rajinder
Sabo, Peter J.
Bansal, Mukul S.
Carles, Annaick
Dixon, Jesse R.
Farh, Kai-How
Feizi, Soheil
Karlic, Rosa
Kim, Ah-Ram
Kulkarni, Ashwinikumar
Li, Daofeng
Lowdon, Rebecca
Elliott, GiNell
Mercer, Tim R.
Neph, Shane J.
Onuchic, Vitor
Polak, Paz
Rajagopal, Nisha
Ray, Pradipta
Sallari, Richard C.
Siebenthall, Kyle T.
Sinnott-Armstrong, Nicholas A.
Stevens, Michael
Thurman, Robert E.
Wu, Jie
Zhang, Bo
Zhou, Xin
Beaudet, Arthur E.
Boyer, Laurie A.
De Jager, Philip L.
Farnham, Peggy J.
Fisher, Susan J.
Haussler, David
Jones, Steven J.M.
Li, Wei
Marra, Marco A.
McManus, Michael T.
Sunyaev, Shamil
Thomson, James A.
Tlsty, Thea D.
Tsai, Li-Huei
Wang, Wei
Waterland, Robert A.
Zhang, Michael Q.
Chadwick, Lisa H.
Bernstein, Bradley E.
Costello, Joseph F.
Ecker, Joseph R.
Hirst, Martin
Meissner, Alexander
Milosavljevic, Aleksandar
Ren, Bing
Stamatoyannopoulos, John A.
Wang, Ting
Kellis, Manolis
Roadmap Epigenomics Consortium
Kundaje, Anshul
Meuleman, Wouter
Ernst, Jason
Bilenky, Misha
Yen, Angela
Heravi-Moussavi, Alireza
Kheradpour, Pouya
Zhang, Zhizhuo
Wang, Jianrong
Ziller, Michael J.
Amin, Viren
Whitaker, John W.
Schultz, Matthew D.
Ward, Lucas D.
Sarkar, Abhishek
Quon, Gerald
Sandstrom, Richard S.
Eaton, Matthew L.
Wu, Yi-Chieh
Pfenning, Andreas R.
Wang, Xinchen
Claussnitzer, Melina
Liu, Yaping
Coarfa, Cristian
Harris, R. Alan
Shoresh, Noam
Epstein, Charles B.
Gjoneska, Elizabeta
Leung, Danny
Xie, Wei
Hawkins, R. David
Lister, Ryan
Hong, Chibo
Gascard, Philippe
Mungall, Andrew J.
Moore, Richard
Chuah, Eric
Tam, Angela
Canfield, Theresa K.
Hansen, R. Scott
Kaul, Rajinder
Sabo, Peter J.
Bansal, Mukul S.
Carles, Annaick
Dixon, Jesse R.
Farh, Kai-How
Feizi, Soheil
Karlic, Rosa
Kim, Ah-Ram
Kulkarni, Ashwinikumar
Li, Daofeng
Lowdon, Rebecca
Elliott, GiNell
Mercer, Tim R.
Neph, Shane J.
Onuchic, Vitor
Polak, Paz
Rajagopal, Nisha
Ray, Pradipta
Sallari, Richard C.
Siebenthall, Kyle T.
Sinnott-Armstrong, Nicholas A.
Stevens, Michael
Thurman, Robert E.
Wu, Jie
Zhang, Bo
Zhou, Xin
Beaudet, Arthur E.
Boyer, Laurie A.
De Jager, Philip L.
Farnham, Peggy J.
Fisher, Susan J.
Haussler, David
Jones, Steven J.M.
Li, Wei
Marra, Marco A.
McManus, Michael T.
Sunyaev, Shamil
Thomson, James A.
Tlsty, Thea D.
Tsai, Li-Huei
Wang, Wei
Waterland, Robert A.
Zhang, Michael Q.
Chadwick, Lisa H.
Bernstein, Bradley E.
Costello, Joseph F.
Ecker, Joseph R.
Hirst, Martin
Meissner, Alexander
Milosavljevic, Aleksandar
Ren, Bing
Stamatoyannopoulos, John A.
Wang, Ting
Kellis, Manolis
Publication Year :
2015

Abstract

The reference human genome sequence set the stage for studies of genetic variation and its association with human disease, but epigenomic studies lack a similar reference. To address this need, the NIH Roadmap Epigenomics Consortium generated the largest collection so far of human epigenomes for primary cells and tissues. Here we describe the integrative analysis of 111 reference human epigenomes generated as part of the programme, profiled for histone modification patterns, DNA accessibility, DNA methylation and RNA expression. We establish global maps of regulatory elements, define regulatory modules of coordinated activity, and their likely activators and repressors. We show that disease-and trait-associated genetic variants are enriched in tissue-specific epigenomic marks, revealing biologically relevant cell types for diverse human traits, and providing a resource for interpreting the molecular basis of human disease. Our results demonstrate the central role of epigenomic information for understanding gene regulation, cellular differentiation and human disease. © 2015 Macmillan Publishers Limited.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1363038069
Document Type :
Electronic Resource