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Overexpression of parkin rescues the defective mitochondrial phenotype and the increased apoptosis of Cockayne Syndrome A cells

The ERCC8/CSA gene encodes a WD-40 repeat protein (CSA) that is part of a E3-ubiquitin ligase/COP9 signalosome complex. When mutated, CSA causes the Cockayne Syndrome group A (CS-A), a rare recessive progeroid disorder characterized by sun sensitivity and neurodevelopmental abnormalities. CS-A cells...

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Autores principales: Pascucci, Barbara, D’Errico, Mariarosaria, Romagnoli, Alessandra, De Nuccio, Chiara, Savino, Miriam, Pietraforte, Donatella, Lanzafame, Manuela, Calcagnile, Angelo Salvatore, Fortini, Paola, Baccarini, Sara, Orioli, Donata, Degan, Paolo, Visentin, Sergio, Stefanini, Miria, Isidoro, Ciro, Fimia, Gian Maria, Dogliotti, Eugenia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5732694/
https://www.ncbi.nlm.nih.gov/pubmed/29262528
http://dx.doi.org/10.18632/oncotarget.9913
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author Pascucci, Barbara
D’Errico, Mariarosaria
Romagnoli, Alessandra
De Nuccio, Chiara
Savino, Miriam
Pietraforte, Donatella
Lanzafame, Manuela
Calcagnile, Angelo Salvatore
Fortini, Paola
Baccarini, Sara
Orioli, Donata
Degan, Paolo
Visentin, Sergio
Stefanini, Miria
Isidoro, Ciro
Fimia, Gian Maria
Dogliotti, Eugenia
author_facet Pascucci, Barbara
D’Errico, Mariarosaria
Romagnoli, Alessandra
De Nuccio, Chiara
Savino, Miriam
Pietraforte, Donatella
Lanzafame, Manuela
Calcagnile, Angelo Salvatore
Fortini, Paola
Baccarini, Sara
Orioli, Donata
Degan, Paolo
Visentin, Sergio
Stefanini, Miria
Isidoro, Ciro
Fimia, Gian Maria
Dogliotti, Eugenia
author_sort Pascucci, Barbara
collection PubMed
description The ERCC8/CSA gene encodes a WD-40 repeat protein (CSA) that is part of a E3-ubiquitin ligase/COP9 signalosome complex. When mutated, CSA causes the Cockayne Syndrome group A (CS-A), a rare recessive progeroid disorder characterized by sun sensitivity and neurodevelopmental abnormalities. CS-A cells features include ROS hyperproduction, accumulation of oxidative genome damage, mitochondrial dysfunction and increased apoptosis that may contribute to the neurodegenerative process. In this study, we show that CSA localizes to mitochondria and specifically interacts with the mitochondrial fission protein dynamin-related protein (DRP1) that is hyperactivated when CSA is defective. Increased fission is not counterbalanced by increased mitophagy in CS-A cells thus leading to accumulation of fragmented mitochondria. However, when mitochondria are challenged with the mitochondrial toxin carbonyl cyanide m-chloro phenyl hydrazine, CS-A fibroblasts undergo mitophagy as efficiently as normal fibroblasts, suggesting that this process remains targetable to get rid of damaged mitochondria. Indeed, when basal mitophagy was potentiated by overexpressing Parkin in CSA deficient cells, a significant rescue of the dysfunctional mitochondrial phenotype was observed. Importantly, Parkin overexpression not only reactivates basal mitophagy, but plays also an anti-apoptotic role by significantly reducing the translocation of Bax at mitochondria in CS-A cells. These findings provide new mechanistic insights into the role of CSA in mitochondrial maintenance and might open new perspectives for therapeutic approaches.
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spelling pubmed-57326942017-12-19 Overexpression of parkin rescues the defective mitochondrial phenotype and the increased apoptosis of Cockayne Syndrome A cells Pascucci, Barbara D’Errico, Mariarosaria Romagnoli, Alessandra De Nuccio, Chiara Savino, Miriam Pietraforte, Donatella Lanzafame, Manuela Calcagnile, Angelo Salvatore Fortini, Paola Baccarini, Sara Orioli, Donata Degan, Paolo Visentin, Sergio Stefanini, Miria Isidoro, Ciro Fimia, Gian Maria Dogliotti, Eugenia Oncotarget Research Paper The ERCC8/CSA gene encodes a WD-40 repeat protein (CSA) that is part of a E3-ubiquitin ligase/COP9 signalosome complex. When mutated, CSA causes the Cockayne Syndrome group A (CS-A), a rare recessive progeroid disorder characterized by sun sensitivity and neurodevelopmental abnormalities. CS-A cells features include ROS hyperproduction, accumulation of oxidative genome damage, mitochondrial dysfunction and increased apoptosis that may contribute to the neurodegenerative process. In this study, we show that CSA localizes to mitochondria and specifically interacts with the mitochondrial fission protein dynamin-related protein (DRP1) that is hyperactivated when CSA is defective. Increased fission is not counterbalanced by increased mitophagy in CS-A cells thus leading to accumulation of fragmented mitochondria. However, when mitochondria are challenged with the mitochondrial toxin carbonyl cyanide m-chloro phenyl hydrazine, CS-A fibroblasts undergo mitophagy as efficiently as normal fibroblasts, suggesting that this process remains targetable to get rid of damaged mitochondria. Indeed, when basal mitophagy was potentiated by overexpressing Parkin in CSA deficient cells, a significant rescue of the dysfunctional mitochondrial phenotype was observed. Importantly, Parkin overexpression not only reactivates basal mitophagy, but plays also an anti-apoptotic role by significantly reducing the translocation of Bax at mitochondria in CS-A cells. These findings provide new mechanistic insights into the role of CSA in mitochondrial maintenance and might open new perspectives for therapeutic approaches. Impact Journals LLC 2016-06-07 /pmc/articles/PMC5732694/ /pubmed/29262528 http://dx.doi.org/10.18632/oncotarget.9913 Text en Copyright: © 2017 Pascucci et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) 3.0 (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Pascucci, Barbara
D’Errico, Mariarosaria
Romagnoli, Alessandra
De Nuccio, Chiara
Savino, Miriam
Pietraforte, Donatella
Lanzafame, Manuela
Calcagnile, Angelo Salvatore
Fortini, Paola
Baccarini, Sara
Orioli, Donata
Degan, Paolo
Visentin, Sergio
Stefanini, Miria
Isidoro, Ciro
Fimia, Gian Maria
Dogliotti, Eugenia
Overexpression of parkin rescues the defective mitochondrial phenotype and the increased apoptosis of Cockayne Syndrome A cells
title Overexpression of parkin rescues the defective mitochondrial phenotype and the increased apoptosis of Cockayne Syndrome A cells
title_full Overexpression of parkin rescues the defective mitochondrial phenotype and the increased apoptosis of Cockayne Syndrome A cells
title_fullStr Overexpression of parkin rescues the defective mitochondrial phenotype and the increased apoptosis of Cockayne Syndrome A cells
title_full_unstemmed Overexpression of parkin rescues the defective mitochondrial phenotype and the increased apoptosis of Cockayne Syndrome A cells
title_short Overexpression of parkin rescues the defective mitochondrial phenotype and the increased apoptosis of Cockayne Syndrome A cells
title_sort overexpression of parkin rescues the defective mitochondrial phenotype and the increased apoptosis of cockayne syndrome a cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5732694/
https://www.ncbi.nlm.nih.gov/pubmed/29262528
http://dx.doi.org/10.18632/oncotarget.9913
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