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Replication landscape of the human genome
by
Shen, Yimin
, Thermes, Claude
, Petryk, Nataliya
, Chen, Chun-Long
, d'Aubenton-Carafa, Yves
, Jaszczyszyn, Yan
, Kahli, Malik
, Silvain, Maud
, Hyrien, Olivier
in
631/337/641/151
/ Binding Sites
/ Chromatin
/ Chromatin - metabolism
/ DNA
/ DNA biosynthesis
/ DNA Replication
/ Exonuclease
/ Genes
/ Genome, Human
/ Genomes
/ Histones - metabolism
/ Humanities and Social Sciences
/ Humans
/ Life Sciences
/ multidisciplinary
/ Okazaki fragments
/ Origin recognition complex
/ Origin Recognition Complex - metabolism
/ Origins
/ Replication
/ Replication initiation
/ Replication Origin
/ Replication origins
/ Science
/ Science (multidisciplinary)
/ Sequence Analysis, DNA
/ Transcription initiation
/ Transcription termination
/ Transcription, Genetic
2016
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Replication landscape of the human genome
by
Shen, Yimin
, Thermes, Claude
, Petryk, Nataliya
, Chen, Chun-Long
, d'Aubenton-Carafa, Yves
, Jaszczyszyn, Yan
, Kahli, Malik
, Silvain, Maud
, Hyrien, Olivier
in
631/337/641/151
/ Binding Sites
/ Chromatin
/ Chromatin - metabolism
/ DNA
/ DNA biosynthesis
/ DNA Replication
/ Exonuclease
/ Genes
/ Genome, Human
/ Genomes
/ Histones - metabolism
/ Humanities and Social Sciences
/ Humans
/ Life Sciences
/ multidisciplinary
/ Okazaki fragments
/ Origin recognition complex
/ Origin Recognition Complex - metabolism
/ Origins
/ Replication
/ Replication initiation
/ Replication Origin
/ Replication origins
/ Science
/ Science (multidisciplinary)
/ Sequence Analysis, DNA
/ Transcription initiation
/ Transcription termination
/ Transcription, Genetic
2016
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Replication landscape of the human genome
by
Shen, Yimin
, Thermes, Claude
, Petryk, Nataliya
, Chen, Chun-Long
, d'Aubenton-Carafa, Yves
, Jaszczyszyn, Yan
, Kahli, Malik
, Silvain, Maud
, Hyrien, Olivier
in
631/337/641/151
/ Binding Sites
/ Chromatin
/ Chromatin - metabolism
/ DNA
/ DNA biosynthesis
/ DNA Replication
/ Exonuclease
/ Genes
/ Genome, Human
/ Genomes
/ Histones - metabolism
/ Humanities and Social Sciences
/ Humans
/ Life Sciences
/ multidisciplinary
/ Okazaki fragments
/ Origin recognition complex
/ Origin Recognition Complex - metabolism
/ Origins
/ Replication
/ Replication initiation
/ Replication Origin
/ Replication origins
/ Science
/ Science (multidisciplinary)
/ Sequence Analysis, DNA
/ Transcription initiation
/ Transcription termination
/ Transcription, Genetic
2016
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Journal Article
Replication landscape of the human genome
2016
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Overview
Despite intense investigation, human replication origins and termini remain elusive. Existing data have shown strong discrepancies. Here we sequenced highly purified Okazaki fragments from two cell types and, for the first time, quantitated replication fork directionality and delineated initiation and termination zones genome-wide. Replication initiates stochastically, primarily within non-transcribed, broad (up to 150 kb) zones that often abut transcribed genes, and terminates dispersively between them. Replication fork progression is significantly co-oriented with the transcription. Initiation and termination zones are frequently contiguous, sometimes separated by regions of unidirectional replication. Initiation zones are enriched in open chromatin and enhancer marks, even when not flanked by genes, and often border ‘topologically associating domains’ (TADs). Initiation zones are enriched in origin recognition complex (ORC)-binding sites and better align to origins previously mapped using bubble-trap than λ-exonuclease. This novel panorama of replication reveals how chromatin and transcription modulate the initiation process to create cell-type-specific replication programs.
The physical origin and termination sites of DNA replication in human cells have remained elusive. Here the authors use Okazaki fragment sequencing to reveal global replication patterns and show how chromatin and transcription modulate the process.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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