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Telomerase abrogates aneuploidy-induced telomere replication stress, senescence and cell depletion

The causal role of aneuploidy in cancer initiation remains under debate since mutations of euploidy-controlling genes reduce cell fitness but aneuploidy strongly associates with human cancers. Telomerase activation allows immortal growth by stabilizing telomere length, but its role in aneuploidy sur...

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Autores principales: Meena, Jitendra K, Cerutti, Aurora, Beichler, Christine, Morita, Yohei, Bruhn, Christopher, Kumar, Mukesh, Kraus, Johann M, Speicher, Michael R, Wang, Zhao-Qi, Kestler, Hans A, d’Adda di Fagagna, Fabrizio, Günes, Cagatay, Rudolph, Karl Lenhard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Ltd 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4491997/
https://www.ncbi.nlm.nih.gov/pubmed/25820263
http://dx.doi.org/10.15252/embj.201490070
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author Meena, Jitendra K
Cerutti, Aurora
Beichler, Christine
Morita, Yohei
Bruhn, Christopher
Kumar, Mukesh
Kraus, Johann M
Speicher, Michael R
Wang, Zhao-Qi
Kestler, Hans A
d’Adda di Fagagna, Fabrizio
Günes, Cagatay
Rudolph, Karl Lenhard
author_facet Meena, Jitendra K
Cerutti, Aurora
Beichler, Christine
Morita, Yohei
Bruhn, Christopher
Kumar, Mukesh
Kraus, Johann M
Speicher, Michael R
Wang, Zhao-Qi
Kestler, Hans A
d’Adda di Fagagna, Fabrizio
Günes, Cagatay
Rudolph, Karl Lenhard
author_sort Meena, Jitendra K
collection PubMed
description The causal role of aneuploidy in cancer initiation remains under debate since mutations of euploidy-controlling genes reduce cell fitness but aneuploidy strongly associates with human cancers. Telomerase activation allows immortal growth by stabilizing telomere length, but its role in aneuploidy survival has not been characterized. Here, we analyze the response of primary human cells and murine hematopoietic stem cells (HSCs) to aneuploidy induction and the role of telomeres and the telomerase in this process. The study shows that aneuploidy induces replication stress at telomeres leading to telomeric DNA damage and p53 activation. This results in p53/Rb-dependent, premature senescence of human fibroblast, and in the depletion of hematopoietic cells in telomerase-deficient mice. Endogenous telomerase expression in HSCs and enforced expression of telomerase in human fibroblasts are sufficient to abrogate aneuploidy-induced replication stress at telomeres and the consequent induction of premature senescence and hematopoietic cell depletion. Together, these results identify telomerase as an aneuploidy survival factor in mammalian cells based on its capacity to alleviate telomere replication stress in response to aneuploidy induction.
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spelling pubmed-44919972015-11-27 Telomerase abrogates aneuploidy-induced telomere replication stress, senescence and cell depletion Meena, Jitendra K Cerutti, Aurora Beichler, Christine Morita, Yohei Bruhn, Christopher Kumar, Mukesh Kraus, Johann M Speicher, Michael R Wang, Zhao-Qi Kestler, Hans A d’Adda di Fagagna, Fabrizio Günes, Cagatay Rudolph, Karl Lenhard EMBO J Articles The causal role of aneuploidy in cancer initiation remains under debate since mutations of euploidy-controlling genes reduce cell fitness but aneuploidy strongly associates with human cancers. Telomerase activation allows immortal growth by stabilizing telomere length, but its role in aneuploidy survival has not been characterized. Here, we analyze the response of primary human cells and murine hematopoietic stem cells (HSCs) to aneuploidy induction and the role of telomeres and the telomerase in this process. The study shows that aneuploidy induces replication stress at telomeres leading to telomeric DNA damage and p53 activation. This results in p53/Rb-dependent, premature senescence of human fibroblast, and in the depletion of hematopoietic cells in telomerase-deficient mice. Endogenous telomerase expression in HSCs and enforced expression of telomerase in human fibroblasts are sufficient to abrogate aneuploidy-induced replication stress at telomeres and the consequent induction of premature senescence and hematopoietic cell depletion. Together, these results identify telomerase as an aneuploidy survival factor in mammalian cells based on its capacity to alleviate telomere replication stress in response to aneuploidy induction. John Wiley & Sons, Ltd 2015-05-12 2015-03-27 /pmc/articles/PMC4491997/ /pubmed/25820263 http://dx.doi.org/10.15252/embj.201490070 Text en © 2015 The Authors
spellingShingle Articles
Meena, Jitendra K
Cerutti, Aurora
Beichler, Christine
Morita, Yohei
Bruhn, Christopher
Kumar, Mukesh
Kraus, Johann M
Speicher, Michael R
Wang, Zhao-Qi
Kestler, Hans A
d’Adda di Fagagna, Fabrizio
Günes, Cagatay
Rudolph, Karl Lenhard
Telomerase abrogates aneuploidy-induced telomere replication stress, senescence and cell depletion
title Telomerase abrogates aneuploidy-induced telomere replication stress, senescence and cell depletion
title_full Telomerase abrogates aneuploidy-induced telomere replication stress, senescence and cell depletion
title_fullStr Telomerase abrogates aneuploidy-induced telomere replication stress, senescence and cell depletion
title_full_unstemmed Telomerase abrogates aneuploidy-induced telomere replication stress, senescence and cell depletion
title_short Telomerase abrogates aneuploidy-induced telomere replication stress, senescence and cell depletion
title_sort telomerase abrogates aneuploidy-induced telomere replication stress, senescence and cell depletion
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4491997/
https://www.ncbi.nlm.nih.gov/pubmed/25820263
http://dx.doi.org/10.15252/embj.201490070
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