Cargando…

Developmental and cancer-associated plasticity of DNA replication preferentially targets GC-poor, lowly expressed and late-replicating regions

The spatiotemporal program of metazoan DNA replication is regulated during development and altered in cancers. We have generated novel OK-seq, Repli-seq and RNA-seq data to compare the DNA replication and gene expression programs of twelve cancer and non-cancer human cell types. Changes in replicati...

Descripción completa

Detalles Bibliográficos
Autores principales: Wu, Xia, Kabalane, Hadi, Kahli, Malik, Petryk, Nataliya, Laperrousaz, Bastien, Jaszczyszyn, Yan, Drillon, Guenola, Nicolini, Frank-Emmanuel, Perot, Gaëlle, Robert, Aude, Fund, Cédric, Chibon, Frédéric, Xia, Ruohong, Wiels, Joëlle, Argoul, Françoise, Maguer-Satta, Véronique, Arneodo, Alain, Audit, Benjamin, Hyrien, Olivier
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6212843/
https://www.ncbi.nlm.nih.gov/pubmed/30189101
http://dx.doi.org/10.1093/nar/gky797
_version_ 1783367632481681408
author Wu, Xia
Kabalane, Hadi
Kahli, Malik
Petryk, Nataliya
Laperrousaz, Bastien
Jaszczyszyn, Yan
Drillon, Guenola
Nicolini, Frank-Emmanuel
Perot, Gaëlle
Robert, Aude
Fund, Cédric
Chibon, Frédéric
Xia, Ruohong
Wiels, Joëlle
Argoul, Françoise
Maguer-Satta, Véronique
Arneodo, Alain
Audit, Benjamin
Hyrien, Olivier
author_facet Wu, Xia
Kabalane, Hadi
Kahli, Malik
Petryk, Nataliya
Laperrousaz, Bastien
Jaszczyszyn, Yan
Drillon, Guenola
Nicolini, Frank-Emmanuel
Perot, Gaëlle
Robert, Aude
Fund, Cédric
Chibon, Frédéric
Xia, Ruohong
Wiels, Joëlle
Argoul, Françoise
Maguer-Satta, Véronique
Arneodo, Alain
Audit, Benjamin
Hyrien, Olivier
author_sort Wu, Xia
collection PubMed
description The spatiotemporal program of metazoan DNA replication is regulated during development and altered in cancers. We have generated novel OK-seq, Repli-seq and RNA-seq data to compare the DNA replication and gene expression programs of twelve cancer and non-cancer human cell types. Changes in replication fork directionality (RFD) determined by OK-seq are widespread but more frequent within GC-poor isochores and largely disconnected from transcription changes. Cancer cell RFD profiles cluster with non-cancer cells of similar developmental origin but not with different cancer types. Importantly, recurrent RFD changes are detected in specific tumour progression pathways. Using a model for establishment and early progression of chronic myeloid leukemia (CML), we identify 1027 replication initiation zones (IZs) that progressively change efficiency during long-term expression of the BCR-ABL1 oncogene, being twice more often downregulated than upregulated. Prolonged expression of BCR-ABL1 results in targeting of new IZs and accentuation of previous efficiency changes. Targeted IZs are predominantly located in GC-poor, late replicating gene deserts and frequently silenced in late CML. Prolonged expression of BCR-ABL1 results in massive deletion of GC-poor, late replicating DNA sequences enriched in origin silencing events. We conclude that BCR-ABL1 expression progressively affects replication and stability of GC-poor, late-replicating regions during CML progression.
format Online
Article
Text
id pubmed-6212843
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-62128432018-11-06 Developmental and cancer-associated plasticity of DNA replication preferentially targets GC-poor, lowly expressed and late-replicating regions Wu, Xia Kabalane, Hadi Kahli, Malik Petryk, Nataliya Laperrousaz, Bastien Jaszczyszyn, Yan Drillon, Guenola Nicolini, Frank-Emmanuel Perot, Gaëlle Robert, Aude Fund, Cédric Chibon, Frédéric Xia, Ruohong Wiels, Joëlle Argoul, Françoise Maguer-Satta, Véronique Arneodo, Alain Audit, Benjamin Hyrien, Olivier Nucleic Acids Res Genome Integrity, Repair and Replication The spatiotemporal program of metazoan DNA replication is regulated during development and altered in cancers. We have generated novel OK-seq, Repli-seq and RNA-seq data to compare the DNA replication and gene expression programs of twelve cancer and non-cancer human cell types. Changes in replication fork directionality (RFD) determined by OK-seq are widespread but more frequent within GC-poor isochores and largely disconnected from transcription changes. Cancer cell RFD profiles cluster with non-cancer cells of similar developmental origin but not with different cancer types. Importantly, recurrent RFD changes are detected in specific tumour progression pathways. Using a model for establishment and early progression of chronic myeloid leukemia (CML), we identify 1027 replication initiation zones (IZs) that progressively change efficiency during long-term expression of the BCR-ABL1 oncogene, being twice more often downregulated than upregulated. Prolonged expression of BCR-ABL1 results in targeting of new IZs and accentuation of previous efficiency changes. Targeted IZs are predominantly located in GC-poor, late replicating gene deserts and frequently silenced in late CML. Prolonged expression of BCR-ABL1 results in massive deletion of GC-poor, late replicating DNA sequences enriched in origin silencing events. We conclude that BCR-ABL1 expression progressively affects replication and stability of GC-poor, late-replicating regions during CML progression. Oxford University Press 2018-11-02 2018-09-05 /pmc/articles/PMC6212843/ /pubmed/30189101 http://dx.doi.org/10.1093/nar/gky797 Text en © The Author(s) 2018. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Genome Integrity, Repair and Replication
Wu, Xia
Kabalane, Hadi
Kahli, Malik
Petryk, Nataliya
Laperrousaz, Bastien
Jaszczyszyn, Yan
Drillon, Guenola
Nicolini, Frank-Emmanuel
Perot, Gaëlle
Robert, Aude
Fund, Cédric
Chibon, Frédéric
Xia, Ruohong
Wiels, Joëlle
Argoul, Françoise
Maguer-Satta, Véronique
Arneodo, Alain
Audit, Benjamin
Hyrien, Olivier
Developmental and cancer-associated plasticity of DNA replication preferentially targets GC-poor, lowly expressed and late-replicating regions
title Developmental and cancer-associated plasticity of DNA replication preferentially targets GC-poor, lowly expressed and late-replicating regions
title_full Developmental and cancer-associated plasticity of DNA replication preferentially targets GC-poor, lowly expressed and late-replicating regions
title_fullStr Developmental and cancer-associated plasticity of DNA replication preferentially targets GC-poor, lowly expressed and late-replicating regions
title_full_unstemmed Developmental and cancer-associated plasticity of DNA replication preferentially targets GC-poor, lowly expressed and late-replicating regions
title_short Developmental and cancer-associated plasticity of DNA replication preferentially targets GC-poor, lowly expressed and late-replicating regions
title_sort developmental and cancer-associated plasticity of dna replication preferentially targets gc-poor, lowly expressed and late-replicating regions
topic Genome Integrity, Repair and Replication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6212843/
https://www.ncbi.nlm.nih.gov/pubmed/30189101
http://dx.doi.org/10.1093/nar/gky797
work_keys_str_mv AT wuxia developmentalandcancerassociatedplasticityofdnareplicationpreferentiallytargetsgcpoorlowlyexpressedandlatereplicatingregions
AT kabalanehadi developmentalandcancerassociatedplasticityofdnareplicationpreferentiallytargetsgcpoorlowlyexpressedandlatereplicatingregions
AT kahlimalik developmentalandcancerassociatedplasticityofdnareplicationpreferentiallytargetsgcpoorlowlyexpressedandlatereplicatingregions
AT petryknataliya developmentalandcancerassociatedplasticityofdnareplicationpreferentiallytargetsgcpoorlowlyexpressedandlatereplicatingregions
AT laperrousazbastien developmentalandcancerassociatedplasticityofdnareplicationpreferentiallytargetsgcpoorlowlyexpressedandlatereplicatingregions
AT jaszczyszynyan developmentalandcancerassociatedplasticityofdnareplicationpreferentiallytargetsgcpoorlowlyexpressedandlatereplicatingregions
AT drillonguenola developmentalandcancerassociatedplasticityofdnareplicationpreferentiallytargetsgcpoorlowlyexpressedandlatereplicatingregions
AT nicolinifrankemmanuel developmentalandcancerassociatedplasticityofdnareplicationpreferentiallytargetsgcpoorlowlyexpressedandlatereplicatingregions
AT perotgaelle developmentalandcancerassociatedplasticityofdnareplicationpreferentiallytargetsgcpoorlowlyexpressedandlatereplicatingregions
AT robertaude developmentalandcancerassociatedplasticityofdnareplicationpreferentiallytargetsgcpoorlowlyexpressedandlatereplicatingregions
AT fundcedric developmentalandcancerassociatedplasticityofdnareplicationpreferentiallytargetsgcpoorlowlyexpressedandlatereplicatingregions
AT chibonfrederic developmentalandcancerassociatedplasticityofdnareplicationpreferentiallytargetsgcpoorlowlyexpressedandlatereplicatingregions
AT xiaruohong developmentalandcancerassociatedplasticityofdnareplicationpreferentiallytargetsgcpoorlowlyexpressedandlatereplicatingregions
AT wielsjoelle developmentalandcancerassociatedplasticityofdnareplicationpreferentiallytargetsgcpoorlowlyexpressedandlatereplicatingregions
AT argoulfrancoise developmentalandcancerassociatedplasticityofdnareplicationpreferentiallytargetsgcpoorlowlyexpressedandlatereplicatingregions
AT maguersattaveronique developmentalandcancerassociatedplasticityofdnareplicationpreferentiallytargetsgcpoorlowlyexpressedandlatereplicatingregions
AT arneodoalain developmentalandcancerassociatedplasticityofdnareplicationpreferentiallytargetsgcpoorlowlyexpressedandlatereplicatingregions
AT auditbenjamin developmentalandcancerassociatedplasticityofdnareplicationpreferentiallytargetsgcpoorlowlyexpressedandlatereplicatingregions
AT hyrienolivier developmentalandcancerassociatedplasticityofdnareplicationpreferentiallytargetsgcpoorlowlyexpressedandlatereplicatingregions