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Centrosome aberrations in human mammary epithelial cells driven by cooperative interactions between p16(INK4a) deficiency and telomere-dependent genotoxic stress

Virtually all human cancers display chromosome instability (CIN), a condition in which chromosomes are gained or lost at a high rate. CIN occurs early in cancer development where it may undermine the advance of the neoplastic disease. With the aim of establishing the mechanisms underlying CIN in can...

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Autores principales: Domínguez, Daniel, Feijoo, Purificación, Bernal, Aina, Ercilla, Amaia, Agell, Neus, Genescà, Anna, Tusell, Laura
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4695057/
https://www.ncbi.nlm.nih.gov/pubmed/26318587
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author Domínguez, Daniel
Feijoo, Purificación
Bernal, Aina
Ercilla, Amaia
Agell, Neus
Genescà, Anna
Tusell, Laura
author_facet Domínguez, Daniel
Feijoo, Purificación
Bernal, Aina
Ercilla, Amaia
Agell, Neus
Genescà, Anna
Tusell, Laura
author_sort Domínguez, Daniel
collection PubMed
description Virtually all human cancers display chromosome instability (CIN), a condition in which chromosomes are gained or lost at a high rate. CIN occurs early in cancer development where it may undermine the advance of the neoplastic disease. With the aim of establishing the mechanisms underlying CIN in cancer, we investigated possible links between telomere-dysfunction and centrosome defects, which were seen to coincide in early in breast carcinogenesis using human mammary epithelial cells (HMECs). In this study, we show that TP53 proficient vHMECs cells develop centrosome aberrations when telomere-dysfunction genotoxic stress is produced in the presence of a defective p16(INK4a) setting and in parallel with an activation of the DNA damage checkpoint response. These aberrations consist of the accumulation of centrosomes in polyploid vHMECs, plus centriole overduplication in both diploid and polyploid cells, thus reflecting that distinct mechanisms underlie the generation of centrosome aberrations in vHMECs. Transduction of vHMEC with hTERT, which rescued the telomere dysfunction phenotype and consequently reduced DNA damage checkpoint activation, led to a progressive reduction of centrosome aberrations with cell culture, both in diploid and in polyploid vHMECs. Radiation-induced DNA damage also raised centrosome aberrations in vHMEC-hTERT. Collectively, our results, using vHMECs define a model where p16(INK4a) deficiency along with short dysfunctional telomeres cooperatively engenders centrosome abnormalities before p53 function is compromised.
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spelling pubmed-46950572016-01-20 Centrosome aberrations in human mammary epithelial cells driven by cooperative interactions between p16(INK4a) deficiency and telomere-dependent genotoxic stress Domínguez, Daniel Feijoo, Purificación Bernal, Aina Ercilla, Amaia Agell, Neus Genescà, Anna Tusell, Laura Oncotarget Research Paper Virtually all human cancers display chromosome instability (CIN), a condition in which chromosomes are gained or lost at a high rate. CIN occurs early in cancer development where it may undermine the advance of the neoplastic disease. With the aim of establishing the mechanisms underlying CIN in cancer, we investigated possible links between telomere-dysfunction and centrosome defects, which were seen to coincide in early in breast carcinogenesis using human mammary epithelial cells (HMECs). In this study, we show that TP53 proficient vHMECs cells develop centrosome aberrations when telomere-dysfunction genotoxic stress is produced in the presence of a defective p16(INK4a) setting and in parallel with an activation of the DNA damage checkpoint response. These aberrations consist of the accumulation of centrosomes in polyploid vHMECs, plus centriole overduplication in both diploid and polyploid cells, thus reflecting that distinct mechanisms underlie the generation of centrosome aberrations in vHMECs. Transduction of vHMEC with hTERT, which rescued the telomere dysfunction phenotype and consequently reduced DNA damage checkpoint activation, led to a progressive reduction of centrosome aberrations with cell culture, both in diploid and in polyploid vHMECs. Radiation-induced DNA damage also raised centrosome aberrations in vHMEC-hTERT. Collectively, our results, using vHMECs define a model where p16(INK4a) deficiency along with short dysfunctional telomeres cooperatively engenders centrosome abnormalities before p53 function is compromised. Impact Journals LLC 2015-07-22 /pmc/articles/PMC4695057/ /pubmed/26318587 Text en Copyright: © 2015 Domínguez et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Domínguez, Daniel
Feijoo, Purificación
Bernal, Aina
Ercilla, Amaia
Agell, Neus
Genescà, Anna
Tusell, Laura
Centrosome aberrations in human mammary epithelial cells driven by cooperative interactions between p16(INK4a) deficiency and telomere-dependent genotoxic stress
title Centrosome aberrations in human mammary epithelial cells driven by cooperative interactions between p16(INK4a) deficiency and telomere-dependent genotoxic stress
title_full Centrosome aberrations in human mammary epithelial cells driven by cooperative interactions between p16(INK4a) deficiency and telomere-dependent genotoxic stress
title_fullStr Centrosome aberrations in human mammary epithelial cells driven by cooperative interactions between p16(INK4a) deficiency and telomere-dependent genotoxic stress
title_full_unstemmed Centrosome aberrations in human mammary epithelial cells driven by cooperative interactions between p16(INK4a) deficiency and telomere-dependent genotoxic stress
title_short Centrosome aberrations in human mammary epithelial cells driven by cooperative interactions between p16(INK4a) deficiency and telomere-dependent genotoxic stress
title_sort centrosome aberrations in human mammary epithelial cells driven by cooperative interactions between p16(ink4a) deficiency and telomere-dependent genotoxic stress
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4695057/
https://www.ncbi.nlm.nih.gov/pubmed/26318587
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