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Replication stress links structural and numerical cancer chromosomal instability

Cancer chromosomal instability (CIN) results in an elevated rate of change of chromosome number and structure and generates intratumour heterogeneity(1,2). CIN is observed in the majority of solid tumours and is associated with both poor prognosis and drug resistance(3,4). Therefore, understanding a...

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Autores principales: Burrell, Rebecca A., McClelland, Sarah E., Endesfelder, David, Groth, Petra, Weller, Marie-Christine, Shaikh, Nadeem, Domingo, Enric, Kanu, Nnennaya, Dewhurst, Sally M., Gronroos, Eva, Chew, Su Kit, Rowan, Andrew J., Schenk, Arne, Sheffer, Michal, Howell, Michael, Kschischo, Maik, Behrens, Axel, Helleday, Thomas, Bartek, Jiri, Tomlinson, Ian P., Swanton, Charles
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4636055/
https://www.ncbi.nlm.nih.gov/pubmed/23446422
http://dx.doi.org/10.1038/nature11935
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author Burrell, Rebecca A.
McClelland, Sarah E.
Endesfelder, David
Groth, Petra
Weller, Marie-Christine
Shaikh, Nadeem
Domingo, Enric
Kanu, Nnennaya
Dewhurst, Sally M.
Gronroos, Eva
Chew, Su Kit
Rowan, Andrew J.
Schenk, Arne
Sheffer, Michal
Howell, Michael
Kschischo, Maik
Behrens, Axel
Helleday, Thomas
Bartek, Jiri
Tomlinson, Ian P.
Swanton, Charles
author_facet Burrell, Rebecca A.
McClelland, Sarah E.
Endesfelder, David
Groth, Petra
Weller, Marie-Christine
Shaikh, Nadeem
Domingo, Enric
Kanu, Nnennaya
Dewhurst, Sally M.
Gronroos, Eva
Chew, Su Kit
Rowan, Andrew J.
Schenk, Arne
Sheffer, Michal
Howell, Michael
Kschischo, Maik
Behrens, Axel
Helleday, Thomas
Bartek, Jiri
Tomlinson, Ian P.
Swanton, Charles
author_sort Burrell, Rebecca A.
collection PubMed
description Cancer chromosomal instability (CIN) results in an elevated rate of change of chromosome number and structure and generates intratumour heterogeneity(1,2). CIN is observed in the majority of solid tumours and is associated with both poor prognosis and drug resistance(3,4). Therefore, understanding a mechanistic basis for CIN is paramount. Here we find evidence for impaired replication fork progression and elevated DNA replication stress in CIN+ colorectal cancer (CRC) cells relative to CIN− CRC cells, with structural chromosome abnormalities precipitating chromosome missegregation in mitosis. We identify three novel CIN-suppressor genes (PIGN (MCD4), RKHD2 (MEX3C) and ZNF516 (KIAA0222)) encoded on chromosome 18q, which is subject to frequent copy number loss in CIN+ CRC. 18q loss was temporally associated with aneuploidy onset at the adenoma-carcinoma transition. CIN-suppressor gene silencing leads to DNA replication stress, structural chromosome abnormalities and chromosome missegregation. Supplementing cells with nucleosides, to alleviate replication-associated damage(5), reduces the frequency of chromosome segregation errors following CIN-suppressor gene silencing and attenuates segregation errors and DNA damage in CIN+ cells. These data implicate a central role for replication stress in the generation of structural and numerical CIN, which may inform new therapeutic approaches to limit intratumour heterogeneity.
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spelling pubmed-46360552015-11-06 Replication stress links structural and numerical cancer chromosomal instability Burrell, Rebecca A. McClelland, Sarah E. Endesfelder, David Groth, Petra Weller, Marie-Christine Shaikh, Nadeem Domingo, Enric Kanu, Nnennaya Dewhurst, Sally M. Gronroos, Eva Chew, Su Kit Rowan, Andrew J. Schenk, Arne Sheffer, Michal Howell, Michael Kschischo, Maik Behrens, Axel Helleday, Thomas Bartek, Jiri Tomlinson, Ian P. Swanton, Charles Nature Article Cancer chromosomal instability (CIN) results in an elevated rate of change of chromosome number and structure and generates intratumour heterogeneity(1,2). CIN is observed in the majority of solid tumours and is associated with both poor prognosis and drug resistance(3,4). Therefore, understanding a mechanistic basis for CIN is paramount. Here we find evidence for impaired replication fork progression and elevated DNA replication stress in CIN+ colorectal cancer (CRC) cells relative to CIN− CRC cells, with structural chromosome abnormalities precipitating chromosome missegregation in mitosis. We identify three novel CIN-suppressor genes (PIGN (MCD4), RKHD2 (MEX3C) and ZNF516 (KIAA0222)) encoded on chromosome 18q, which is subject to frequent copy number loss in CIN+ CRC. 18q loss was temporally associated with aneuploidy onset at the adenoma-carcinoma transition. CIN-suppressor gene silencing leads to DNA replication stress, structural chromosome abnormalities and chromosome missegregation. Supplementing cells with nucleosides, to alleviate replication-associated damage(5), reduces the frequency of chromosome segregation errors following CIN-suppressor gene silencing and attenuates segregation errors and DNA damage in CIN+ cells. These data implicate a central role for replication stress in the generation of structural and numerical CIN, which may inform new therapeutic approaches to limit intratumour heterogeneity. 2013-02-28 /pmc/articles/PMC4636055/ /pubmed/23446422 http://dx.doi.org/10.1038/nature11935 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Burrell, Rebecca A.
McClelland, Sarah E.
Endesfelder, David
Groth, Petra
Weller, Marie-Christine
Shaikh, Nadeem
Domingo, Enric
Kanu, Nnennaya
Dewhurst, Sally M.
Gronroos, Eva
Chew, Su Kit
Rowan, Andrew J.
Schenk, Arne
Sheffer, Michal
Howell, Michael
Kschischo, Maik
Behrens, Axel
Helleday, Thomas
Bartek, Jiri
Tomlinson, Ian P.
Swanton, Charles
Replication stress links structural and numerical cancer chromosomal instability
title Replication stress links structural and numerical cancer chromosomal instability
title_full Replication stress links structural and numerical cancer chromosomal instability
title_fullStr Replication stress links structural and numerical cancer chromosomal instability
title_full_unstemmed Replication stress links structural and numerical cancer chromosomal instability
title_short Replication stress links structural and numerical cancer chromosomal instability
title_sort replication stress links structural and numerical cancer chromosomal instability
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4636055/
https://www.ncbi.nlm.nih.gov/pubmed/23446422
http://dx.doi.org/10.1038/nature11935
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