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The three-dimensional organization of telomeres in the nucleus of mammalian cells

BACKGROUND: The observation of multiple genetic markers in situ by optical microscopy and their relevance to the study of three-dimensional (3D) chromosomal organization in the nucleus have been greatly developed in the last decade. These methods are important in cancer research because cancer is ch...

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Autores principales: Chuang, Tony Chih Yuan, Moshir, Sharareh, Garini, Yuval, Chuang, Alice Ya-Chun, Young, Ian T, Vermolen, Bart, Doel, Richard van den, Mougey, Virginie, Perrin, Mathilde, Braun, Martina, Kerr, Paul Donald, Fest, Thierry, Boukamp, Petra, Mai, Sabine
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2004
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC425602/
https://www.ncbi.nlm.nih.gov/pubmed/15176976
http://dx.doi.org/10.1186/1741-7007-2-12
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author Chuang, Tony Chih Yuan
Moshir, Sharareh
Garini, Yuval
Chuang, Alice Ya-Chun
Young, Ian T
Vermolen, Bart
Doel, Richard van den
Mougey, Virginie
Perrin, Mathilde
Braun, Martina
Kerr, Paul Donald
Fest, Thierry
Boukamp, Petra
Mai, Sabine
author_facet Chuang, Tony Chih Yuan
Moshir, Sharareh
Garini, Yuval
Chuang, Alice Ya-Chun
Young, Ian T
Vermolen, Bart
Doel, Richard van den
Mougey, Virginie
Perrin, Mathilde
Braun, Martina
Kerr, Paul Donald
Fest, Thierry
Boukamp, Petra
Mai, Sabine
author_sort Chuang, Tony Chih Yuan
collection PubMed
description BACKGROUND: The observation of multiple genetic markers in situ by optical microscopy and their relevance to the study of three-dimensional (3D) chromosomal organization in the nucleus have been greatly developed in the last decade. These methods are important in cancer research because cancer is characterized by multiple alterations that affect the modulation of gene expression and the stability of the genome. It is, therefore, essential to analyze the 3D genome organization of the interphase nucleus in both normal and cancer cells. RESULTS: We describe a novel approach to study the distribution of all telomeres inside the nucleus of mammalian cells throughout the cell cycle. It is based on 3D telomere fluorescence in situ hybridization followed by quantitative analysis that determines the telomeres' distribution in the nucleus throughout the cell cycle. This method enables us to determine, for the first time, that telomere organization is cell-cycle dependent, with assembly of telomeres into a telomeric disk in the G2 phase. In tumor cells, the 3D telomere organization is distorted and aggregates are formed. CONCLUSIONS: The results emphasize a non-random and dynamic 3D nuclear telomeric organization and its importance to genomic stability. Based on our findings, it appears possible to examine telomeric aggregates suggestive of genomic instability in individual interphase nuclei and tissues without the need to examine metaphases. Such new avenues of monitoring genomic instability could potentially impact on cancer biology, genetics, diagnostic innovations and surveillance of treatment response in medicine.
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spelling pubmed-4256022004-06-18 The three-dimensional organization of telomeres in the nucleus of mammalian cells Chuang, Tony Chih Yuan Moshir, Sharareh Garini, Yuval Chuang, Alice Ya-Chun Young, Ian T Vermolen, Bart Doel, Richard van den Mougey, Virginie Perrin, Mathilde Braun, Martina Kerr, Paul Donald Fest, Thierry Boukamp, Petra Mai, Sabine BMC Biol Research Article BACKGROUND: The observation of multiple genetic markers in situ by optical microscopy and their relevance to the study of three-dimensional (3D) chromosomal organization in the nucleus have been greatly developed in the last decade. These methods are important in cancer research because cancer is characterized by multiple alterations that affect the modulation of gene expression and the stability of the genome. It is, therefore, essential to analyze the 3D genome organization of the interphase nucleus in both normal and cancer cells. RESULTS: We describe a novel approach to study the distribution of all telomeres inside the nucleus of mammalian cells throughout the cell cycle. It is based on 3D telomere fluorescence in situ hybridization followed by quantitative analysis that determines the telomeres' distribution in the nucleus throughout the cell cycle. This method enables us to determine, for the first time, that telomere organization is cell-cycle dependent, with assembly of telomeres into a telomeric disk in the G2 phase. In tumor cells, the 3D telomere organization is distorted and aggregates are formed. CONCLUSIONS: The results emphasize a non-random and dynamic 3D nuclear telomeric organization and its importance to genomic stability. Based on our findings, it appears possible to examine telomeric aggregates suggestive of genomic instability in individual interphase nuclei and tissues without the need to examine metaphases. Such new avenues of monitoring genomic instability could potentially impact on cancer biology, genetics, diagnostic innovations and surveillance of treatment response in medicine. BioMed Central 2004-06-03 /pmc/articles/PMC425602/ /pubmed/15176976 http://dx.doi.org/10.1186/1741-7007-2-12 Text en Copyright © 2004 Chuang et al; licensee BioMed Central Ltd. This is an Open Access article: verbatim copying and redistribution of this article are permitted in all media for any purpose, provided this notice is preserved along with the article's original URL.
spellingShingle Research Article
Chuang, Tony Chih Yuan
Moshir, Sharareh
Garini, Yuval
Chuang, Alice Ya-Chun
Young, Ian T
Vermolen, Bart
Doel, Richard van den
Mougey, Virginie
Perrin, Mathilde
Braun, Martina
Kerr, Paul Donald
Fest, Thierry
Boukamp, Petra
Mai, Sabine
The three-dimensional organization of telomeres in the nucleus of mammalian cells
title The three-dimensional organization of telomeres in the nucleus of mammalian cells
title_full The three-dimensional organization of telomeres in the nucleus of mammalian cells
title_fullStr The three-dimensional organization of telomeres in the nucleus of mammalian cells
title_full_unstemmed The three-dimensional organization of telomeres in the nucleus of mammalian cells
title_short The three-dimensional organization of telomeres in the nucleus of mammalian cells
title_sort three-dimensional organization of telomeres in the nucleus of mammalian cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC425602/
https://www.ncbi.nlm.nih.gov/pubmed/15176976
http://dx.doi.org/10.1186/1741-7007-2-12
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