DNA methylation landscapes of 1538 breast cancers reveal a replication-linked clock, epigenomic instability and cis-regulation

Understanding the molecular mechanisms underlying DNA methylation in cancer and its clinical relevance remains crucial. Here, the authors study RRBS-based profiles of 1538 breast tumours and 244 normal breast tissues from the METABRIC cohort and report epigenomic instability and cis-regulatory effec...

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Autores principales: Rajbir Nath Batra, Aviezer Lifshitz, Ana Tufegdzic Vidakovic, Suet-Feung Chin, Ankita Sati-Batra, Stephen-John Sammut, Elena Provenzano, H. Raza Ali, Ali Dariush, Alejandra Bruna, Leigh Murphy, Arnie Purushotham, Ian Ellis, Andrew Green, Francine E. Garrett-Bakelman, Chris Mason, Ari Melnick, Samuel A. J. R. Aparicio, Oscar M. Rueda, Amos Tanay, Carlos Caldas
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/7832b4cd7ff242839e4e5e73265c879e
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spelling oai:doaj.org-article:7832b4cd7ff242839e4e5e73265c879e2021-12-02T18:50:53ZDNA methylation landscapes of 1538 breast cancers reveal a replication-linked clock, epigenomic instability and cis-regulation10.1038/s41467-021-25661-w2041-1723https://doaj.org/article/7832b4cd7ff242839e4e5e73265c879e2021-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-25661-whttps://doaj.org/toc/2041-1723Understanding the molecular mechanisms underlying DNA methylation in cancer and its clinical relevance remains crucial. Here, the authors study RRBS-based profiles of 1538 breast tumours and 244 normal breast tissues from the METABRIC cohort and report epigenomic instability and cis-regulatory effects.Rajbir Nath BatraAviezer LifshitzAna Tufegdzic VidakovicSuet-Feung ChinAnkita Sati-BatraStephen-John SammutElena ProvenzanoH. Raza AliAli DariushAlejandra BrunaLeigh MurphyArnie PurushothamIan EllisAndrew GreenFrancine E. Garrett-BakelmanChris MasonAri MelnickSamuel A. J. R. AparicioOscar M. RuedaAmos TanayCarlos CaldasNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-13 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Rajbir Nath Batra
Aviezer Lifshitz
Ana Tufegdzic Vidakovic
Suet-Feung Chin
Ankita Sati-Batra
Stephen-John Sammut
Elena Provenzano
H. Raza Ali
Ali Dariush
Alejandra Bruna
Leigh Murphy
Arnie Purushotham
Ian Ellis
Andrew Green
Francine E. Garrett-Bakelman
Chris Mason
Ari Melnick
Samuel A. J. R. Aparicio
Oscar M. Rueda
Amos Tanay
Carlos Caldas
DNA methylation landscapes of 1538 breast cancers reveal a replication-linked clock, epigenomic instability and cis-regulation
description Understanding the molecular mechanisms underlying DNA methylation in cancer and its clinical relevance remains crucial. Here, the authors study RRBS-based profiles of 1538 breast tumours and 244 normal breast tissues from the METABRIC cohort and report epigenomic instability and cis-regulatory effects.
format article
author Rajbir Nath Batra
Aviezer Lifshitz
Ana Tufegdzic Vidakovic
Suet-Feung Chin
Ankita Sati-Batra
Stephen-John Sammut
Elena Provenzano
H. Raza Ali
Ali Dariush
Alejandra Bruna
Leigh Murphy
Arnie Purushotham
Ian Ellis
Andrew Green
Francine E. Garrett-Bakelman
Chris Mason
Ari Melnick
Samuel A. J. R. Aparicio
Oscar M. Rueda
Amos Tanay
Carlos Caldas
author_facet Rajbir Nath Batra
Aviezer Lifshitz
Ana Tufegdzic Vidakovic
Suet-Feung Chin
Ankita Sati-Batra
Stephen-John Sammut
Elena Provenzano
H. Raza Ali
Ali Dariush
Alejandra Bruna
Leigh Murphy
Arnie Purushotham
Ian Ellis
Andrew Green
Francine E. Garrett-Bakelman
Chris Mason
Ari Melnick
Samuel A. J. R. Aparicio
Oscar M. Rueda
Amos Tanay
Carlos Caldas
author_sort Rajbir Nath Batra
title DNA methylation landscapes of 1538 breast cancers reveal a replication-linked clock, epigenomic instability and cis-regulation
title_short DNA methylation landscapes of 1538 breast cancers reveal a replication-linked clock, epigenomic instability and cis-regulation
title_full DNA methylation landscapes of 1538 breast cancers reveal a replication-linked clock, epigenomic instability and cis-regulation
title_fullStr DNA methylation landscapes of 1538 breast cancers reveal a replication-linked clock, epigenomic instability and cis-regulation
title_full_unstemmed DNA methylation landscapes of 1538 breast cancers reveal a replication-linked clock, epigenomic instability and cis-regulation
title_sort dna methylation landscapes of 1538 breast cancers reveal a replication-linked clock, epigenomic instability and cis-regulation
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/7832b4cd7ff242839e4e5e73265c879e
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