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Sustained accumulation of prelamin A and depletion of lamin A/C both cause oxidative stress and mitochondrial dysfunction but induce different cell fates

The cell nucleus is structurally and functionally organized by lamins, intermediate filament proteins that form the nuclear lamina. Point mutations in genes that encode a specific subset of lamins, the A-type lamins, cause a spectrum of diseases termed laminopathies. Recent evidence points to a role...

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Autores principales: Sieprath, Tom, Corne, Tobias DJ, Nooteboom, Marco, Grootaert, Charlotte, Rajkovic, Andreja, Buysschaert, Benjamin, Robijns, Joke, Broers, Jos LV, Ramaekers, Frans CS, Koopman, Werner JH, Willems, Peter HGM, De Vos, Winnok H
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4615646/
https://www.ncbi.nlm.nih.gov/pubmed/25996284
http://dx.doi.org/10.1080/19491034.2015.1050568
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author Sieprath, Tom
Corne, Tobias DJ
Nooteboom, Marco
Grootaert, Charlotte
Rajkovic, Andreja
Buysschaert, Benjamin
Robijns, Joke
Broers, Jos LV
Ramaekers, Frans CS
Koopman, Werner JH
Willems, Peter HGM
De Vos, Winnok H
author_facet Sieprath, Tom
Corne, Tobias DJ
Nooteboom, Marco
Grootaert, Charlotte
Rajkovic, Andreja
Buysschaert, Benjamin
Robijns, Joke
Broers, Jos LV
Ramaekers, Frans CS
Koopman, Werner JH
Willems, Peter HGM
De Vos, Winnok H
author_sort Sieprath, Tom
collection PubMed
description The cell nucleus is structurally and functionally organized by lamins, intermediate filament proteins that form the nuclear lamina. Point mutations in genes that encode a specific subset of lamins, the A-type lamins, cause a spectrum of diseases termed laminopathies. Recent evidence points to a role for A-type lamins in intracellular redox homeostasis. To determine whether lamin A/C depletion and prelamin A accumulation differentially induce oxidative stress, we have performed a quantitative microscopy-based analysis of reactive oxygen species (ROS) levels and mitochondrial membrane potential (Δψ(m)) in human fibroblasts subjected to sustained siRNA-mediated knockdown of LMNA and ZMPSTE24, respectively. We measured a highly significant increase in basal ROS levels and an even more prominent rise of induced ROS levels in lamin A/C depleted cells, eventually resulting in Δψ(m) hyperpolarization and apoptosis. Depletion of ZMPSTE24 on the other hand, triggered a senescence pathway that was associated with moderately increased ROS levels and a transient Δψ(m) depolarization. Both knockdowns were accompanied by an upregulation of several ROS detoxifying enzymes. Taken together, our data suggest that both persistent prelamin A accumulation and lamin A/C depletion elevate ROS levels, but to a different extent and with different effects on cell fate. This may contribute to the variety of disease phenotypes witnessed in laminopathies.
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spelling pubmed-46156462016-02-03 Sustained accumulation of prelamin A and depletion of lamin A/C both cause oxidative stress and mitochondrial dysfunction but induce different cell fates Sieprath, Tom Corne, Tobias DJ Nooteboom, Marco Grootaert, Charlotte Rajkovic, Andreja Buysschaert, Benjamin Robijns, Joke Broers, Jos LV Ramaekers, Frans CS Koopman, Werner JH Willems, Peter HGM De Vos, Winnok H Nucleus Research Paper The cell nucleus is structurally and functionally organized by lamins, intermediate filament proteins that form the nuclear lamina. Point mutations in genes that encode a specific subset of lamins, the A-type lamins, cause a spectrum of diseases termed laminopathies. Recent evidence points to a role for A-type lamins in intracellular redox homeostasis. To determine whether lamin A/C depletion and prelamin A accumulation differentially induce oxidative stress, we have performed a quantitative microscopy-based analysis of reactive oxygen species (ROS) levels and mitochondrial membrane potential (Δψ(m)) in human fibroblasts subjected to sustained siRNA-mediated knockdown of LMNA and ZMPSTE24, respectively. We measured a highly significant increase in basal ROS levels and an even more prominent rise of induced ROS levels in lamin A/C depleted cells, eventually resulting in Δψ(m) hyperpolarization and apoptosis. Depletion of ZMPSTE24 on the other hand, triggered a senescence pathway that was associated with moderately increased ROS levels and a transient Δψ(m) depolarization. Both knockdowns were accompanied by an upregulation of several ROS detoxifying enzymes. Taken together, our data suggest that both persistent prelamin A accumulation and lamin A/C depletion elevate ROS levels, but to a different extent and with different effects on cell fate. This may contribute to the variety of disease phenotypes witnessed in laminopathies. Taylor & Francis 2015-05-21 /pmc/articles/PMC4615646/ /pubmed/25996284 http://dx.doi.org/10.1080/19491034.2015.1050568 Text en © 2015 The Author(s). Published with license by Taylor & Francis Group, LLC http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution-Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited. The moral rights of the named author(s) have been asserted.
spellingShingle Research Paper
Sieprath, Tom
Corne, Tobias DJ
Nooteboom, Marco
Grootaert, Charlotte
Rajkovic, Andreja
Buysschaert, Benjamin
Robijns, Joke
Broers, Jos LV
Ramaekers, Frans CS
Koopman, Werner JH
Willems, Peter HGM
De Vos, Winnok H
Sustained accumulation of prelamin A and depletion of lamin A/C both cause oxidative stress and mitochondrial dysfunction but induce different cell fates
title Sustained accumulation of prelamin A and depletion of lamin A/C both cause oxidative stress and mitochondrial dysfunction but induce different cell fates
title_full Sustained accumulation of prelamin A and depletion of lamin A/C both cause oxidative stress and mitochondrial dysfunction but induce different cell fates
title_fullStr Sustained accumulation of prelamin A and depletion of lamin A/C both cause oxidative stress and mitochondrial dysfunction but induce different cell fates
title_full_unstemmed Sustained accumulation of prelamin A and depletion of lamin A/C both cause oxidative stress and mitochondrial dysfunction but induce different cell fates
title_short Sustained accumulation of prelamin A and depletion of lamin A/C both cause oxidative stress and mitochondrial dysfunction but induce different cell fates
title_sort sustained accumulation of prelamin a and depletion of lamin a/c both cause oxidative stress and mitochondrial dysfunction but induce different cell fates
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4615646/
https://www.ncbi.nlm.nih.gov/pubmed/25996284
http://dx.doi.org/10.1080/19491034.2015.1050568
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