A predictable conserved DNA base composition signature defines human core DNA replication origins

In metazoan the DNA sequence elements characterizing origin specification are unknown. By generating and analysing 19 SNS-seq datasets from different human cell types, the authors reveal a class and features of Core origins of replication which can be predicted by an algorithm.

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Autores principales: Ildem Akerman, Bahar Kasaai, Alina Bazarova, Pau Biak Sang, Isabelle Peiffer, Marie Artufel, Romain Derelle, Gabrielle Smith, Marta Rodriguez-Martinez, Manuela Romano, Sandrina Kinet, Peter Tino, Charles Theillet, Naomi Taylor, Benoit Ballester, Marcel Méchali
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/9fd4abfa0458400da994ba8ead8f7cae
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spelling oai:doaj.org-article:9fd4abfa0458400da994ba8ead8f7cae2021-12-02T18:14:41ZA predictable conserved DNA base composition signature defines human core DNA replication origins10.1038/s41467-020-18527-02041-1723https://doaj.org/article/9fd4abfa0458400da994ba8ead8f7cae2020-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-18527-0https://doaj.org/toc/2041-1723In metazoan the DNA sequence elements characterizing origin specification are unknown. By generating and analysing 19 SNS-seq datasets from different human cell types, the authors reveal a class and features of Core origins of replication which can be predicted by an algorithm.Ildem AkermanBahar KasaaiAlina BazarovaPau Biak SangIsabelle PeifferMarie ArtufelRomain DerelleGabrielle SmithMarta Rodriguez-MartinezManuela RomanoSandrina KinetPeter TinoCharles TheilletNaomi TaylorBenoit BallesterMarcel MéchaliNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-15 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Ildem Akerman
Bahar Kasaai
Alina Bazarova
Pau Biak Sang
Isabelle Peiffer
Marie Artufel
Romain Derelle
Gabrielle Smith
Marta Rodriguez-Martinez
Manuela Romano
Sandrina Kinet
Peter Tino
Charles Theillet
Naomi Taylor
Benoit Ballester
Marcel Méchali
A predictable conserved DNA base composition signature defines human core DNA replication origins
description In metazoan the DNA sequence elements characterizing origin specification are unknown. By generating and analysing 19 SNS-seq datasets from different human cell types, the authors reveal a class and features of Core origins of replication which can be predicted by an algorithm.
format article
author Ildem Akerman
Bahar Kasaai
Alina Bazarova
Pau Biak Sang
Isabelle Peiffer
Marie Artufel
Romain Derelle
Gabrielle Smith
Marta Rodriguez-Martinez
Manuela Romano
Sandrina Kinet
Peter Tino
Charles Theillet
Naomi Taylor
Benoit Ballester
Marcel Méchali
author_facet Ildem Akerman
Bahar Kasaai
Alina Bazarova
Pau Biak Sang
Isabelle Peiffer
Marie Artufel
Romain Derelle
Gabrielle Smith
Marta Rodriguez-Martinez
Manuela Romano
Sandrina Kinet
Peter Tino
Charles Theillet
Naomi Taylor
Benoit Ballester
Marcel Méchali
author_sort Ildem Akerman
title A predictable conserved DNA base composition signature defines human core DNA replication origins
title_short A predictable conserved DNA base composition signature defines human core DNA replication origins
title_full A predictable conserved DNA base composition signature defines human core DNA replication origins
title_fullStr A predictable conserved DNA base composition signature defines human core DNA replication origins
title_full_unstemmed A predictable conserved DNA base composition signature defines human core DNA replication origins
title_sort predictable conserved dna base composition signature defines human core dna replication origins
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/9fd4abfa0458400da994ba8ead8f7cae
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