Hotspots of aberrant enhancer activity punctuate the colorectal cancer epigenome
Active enhancers are defined by the presence of post-translational modifications of histones. Here, the authors use these marks to identify enhancers recurrently activated in colorectal cancer and find that these enhancers turn on oncogenes and are associated with known risk loci for developing the...
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Nature Portfolio
2017
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oai:doaj.org-article:5528fdc3208d403fa301effc0fea14f82021-12-02T16:51:52ZHotspots of aberrant enhancer activity punctuate the colorectal cancer epigenome10.1038/ncomms144002041-1723https://doaj.org/article/5528fdc3208d403fa301effc0fea14f82017-02-01T00:00:00Zhttps://doi.org/10.1038/ncomms14400https://doaj.org/toc/2041-1723Active enhancers are defined by the presence of post-translational modifications of histones. Here, the authors use these marks to identify enhancers recurrently activated in colorectal cancer and find that these enhancers turn on oncogenes and are associated with known risk loci for developing the disease.Andrea J. CohenAlina SaiakhovaOlivia CorradinJennifer M. LuppinoKatreya LovrenertCynthia F. BartelsJames J. MorrowStephen C. MackGursimran DhillonLydia BeardLois MyeroffMatthew F. KaladyJoseph WillisJames E. BradnerRuth A. KeriNathan A. BergerShondra M. Pruett-MillerSanford D. MarkowitzPeter C. ScacheriNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-13 (2017) |
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Science Q |
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Science Q Andrea J. Cohen Alina Saiakhova Olivia Corradin Jennifer M. Luppino Katreya Lovrenert Cynthia F. Bartels James J. Morrow Stephen C. Mack Gursimran Dhillon Lydia Beard Lois Myeroff Matthew F. Kalady Joseph Willis James E. Bradner Ruth A. Keri Nathan A. Berger Shondra M. Pruett-Miller Sanford D. Markowitz Peter C. Scacheri Hotspots of aberrant enhancer activity punctuate the colorectal cancer epigenome |
description |
Active enhancers are defined by the presence of post-translational modifications of histones. Here, the authors use these marks to identify enhancers recurrently activated in colorectal cancer and find that these enhancers turn on oncogenes and are associated with known risk loci for developing the disease. |
format |
article |
author |
Andrea J. Cohen Alina Saiakhova Olivia Corradin Jennifer M. Luppino Katreya Lovrenert Cynthia F. Bartels James J. Morrow Stephen C. Mack Gursimran Dhillon Lydia Beard Lois Myeroff Matthew F. Kalady Joseph Willis James E. Bradner Ruth A. Keri Nathan A. Berger Shondra M. Pruett-Miller Sanford D. Markowitz Peter C. Scacheri |
author_facet |
Andrea J. Cohen Alina Saiakhova Olivia Corradin Jennifer M. Luppino Katreya Lovrenert Cynthia F. Bartels James J. Morrow Stephen C. Mack Gursimran Dhillon Lydia Beard Lois Myeroff Matthew F. Kalady Joseph Willis James E. Bradner Ruth A. Keri Nathan A. Berger Shondra M. Pruett-Miller Sanford D. Markowitz Peter C. Scacheri |
author_sort |
Andrea J. Cohen |
title |
Hotspots of aberrant enhancer activity punctuate the colorectal cancer epigenome |
title_short |
Hotspots of aberrant enhancer activity punctuate the colorectal cancer epigenome |
title_full |
Hotspots of aberrant enhancer activity punctuate the colorectal cancer epigenome |
title_fullStr |
Hotspots of aberrant enhancer activity punctuate the colorectal cancer epigenome |
title_full_unstemmed |
Hotspots of aberrant enhancer activity punctuate the colorectal cancer epigenome |
title_sort |
hotspots of aberrant enhancer activity punctuate the colorectal cancer epigenome |
publisher |
Nature Portfolio |
publishDate |
2017 |
url |
https://doaj.org/article/5528fdc3208d403fa301effc0fea14f8 |
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