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MnSOD Upregulation Induces Autophagic Programmed Cell Death in Senescent Keratinocytes

Senescence is a state of growth arrest resulting mainly from telomere attrition and oxidative stress. It ultimately leads to cell death. We have previously shown that, in keratinocytes, senescence is induced by NF-kappaB activation, MnSOD upregulation and H(2)O(2) overproduction. We have also shown...

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Autores principales: Deruy, Emeric, Gosselin, Karo, Vercamer, Chantal, Martien, Sébastien, Bouali, Fatima, Slomianny, Christian, Bertout, Julie, Bernard, David, Pourtier, Albin, Abbadie, Corinne
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2939051/
https://www.ncbi.nlm.nih.gov/pubmed/20856861
http://dx.doi.org/10.1371/journal.pone.0012712
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author Deruy, Emeric
Gosselin, Karo
Vercamer, Chantal
Martien, Sébastien
Bouali, Fatima
Slomianny, Christian
Bertout, Julie
Bernard, David
Pourtier, Albin
Abbadie, Corinne
author_facet Deruy, Emeric
Gosselin, Karo
Vercamer, Chantal
Martien, Sébastien
Bouali, Fatima
Slomianny, Christian
Bertout, Julie
Bernard, David
Pourtier, Albin
Abbadie, Corinne
author_sort Deruy, Emeric
collection PubMed
description Senescence is a state of growth arrest resulting mainly from telomere attrition and oxidative stress. It ultimately leads to cell death. We have previously shown that, in keratinocytes, senescence is induced by NF-kappaB activation, MnSOD upregulation and H(2)O(2) overproduction. We have also shown that senescent keratinocytes do not die by apoptosis but as a result of high macroautophagic activity that targets the primary vital cell components. Here, we investigated the mechanisms that activate this autophagic cell death program. We show that corpses occurring at the senescence plateau display oxidatively-damaged mitochondria and nucleus that colocalize with autophagic vacuoles. The occurrence of such corpses was decreased by specifically reducing the H(2)O(2) level with catalase, and, conversely, reproduced by overexpressing MnSOD or applying subtoxic doses of H(2)O(2). This H(2)O(2)-induced cell death did occur through autophagy since it was accompanied by an accumulation of autophagic vesicles as evidenced by Lysotracker staining, LC3 vesiculation and transmission electron microscopy. Most importantly, it was partly abolished by 3-methyladenine, the specific inhibitor of autophagosome formation, and by anti-Atg5 siRNAs. Taken together these results suggest that autophagic cell death is activated in senescent keratinocytes because of the upregulation of MnSOD and the resulting accumulation of oxidative damages to nucleus and mitochondria.
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spelling pubmed-29390512010-09-20 MnSOD Upregulation Induces Autophagic Programmed Cell Death in Senescent Keratinocytes Deruy, Emeric Gosselin, Karo Vercamer, Chantal Martien, Sébastien Bouali, Fatima Slomianny, Christian Bertout, Julie Bernard, David Pourtier, Albin Abbadie, Corinne PLoS One Research Article Senescence is a state of growth arrest resulting mainly from telomere attrition and oxidative stress. It ultimately leads to cell death. We have previously shown that, in keratinocytes, senescence is induced by NF-kappaB activation, MnSOD upregulation and H(2)O(2) overproduction. We have also shown that senescent keratinocytes do not die by apoptosis but as a result of high macroautophagic activity that targets the primary vital cell components. Here, we investigated the mechanisms that activate this autophagic cell death program. We show that corpses occurring at the senescence plateau display oxidatively-damaged mitochondria and nucleus that colocalize with autophagic vacuoles. The occurrence of such corpses was decreased by specifically reducing the H(2)O(2) level with catalase, and, conversely, reproduced by overexpressing MnSOD or applying subtoxic doses of H(2)O(2). This H(2)O(2)-induced cell death did occur through autophagy since it was accompanied by an accumulation of autophagic vesicles as evidenced by Lysotracker staining, LC3 vesiculation and transmission electron microscopy. Most importantly, it was partly abolished by 3-methyladenine, the specific inhibitor of autophagosome formation, and by anti-Atg5 siRNAs. Taken together these results suggest that autophagic cell death is activated in senescent keratinocytes because of the upregulation of MnSOD and the resulting accumulation of oxidative damages to nucleus and mitochondria. Public Library of Science 2010-09-14 /pmc/articles/PMC2939051/ /pubmed/20856861 http://dx.doi.org/10.1371/journal.pone.0012712 Text en Deruy et al. http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Deruy, Emeric
Gosselin, Karo
Vercamer, Chantal
Martien, Sébastien
Bouali, Fatima
Slomianny, Christian
Bertout, Julie
Bernard, David
Pourtier, Albin
Abbadie, Corinne
MnSOD Upregulation Induces Autophagic Programmed Cell Death in Senescent Keratinocytes
title MnSOD Upregulation Induces Autophagic Programmed Cell Death in Senescent Keratinocytes
title_full MnSOD Upregulation Induces Autophagic Programmed Cell Death in Senescent Keratinocytes
title_fullStr MnSOD Upregulation Induces Autophagic Programmed Cell Death in Senescent Keratinocytes
title_full_unstemmed MnSOD Upregulation Induces Autophagic Programmed Cell Death in Senescent Keratinocytes
title_short MnSOD Upregulation Induces Autophagic Programmed Cell Death in Senescent Keratinocytes
title_sort mnsod upregulation induces autophagic programmed cell death in senescent keratinocytes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2939051/
https://www.ncbi.nlm.nih.gov/pubmed/20856861
http://dx.doi.org/10.1371/journal.pone.0012712
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