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The Non-Canonical Wnt/PKC Pathway Regulates Mitochondrial Dynamics through Degradation of the Arm-Like Domain-Containing Protein Alex3

The regulation of mitochondrial dynamics is vital in complex cell types, such as neurons, that transport and localize mitochondria in high energy-demanding cell domains. The Armcx3 gene encodes a mitochondrial-targeted protein (Alex3) that contains several arm-like domains. In a previous study we sh...

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Autores principales: Serrat, Román, López-Doménech, Guillermo, Mirra, Serena, Quevedo, Martí, Garcia-Fernàndez, Jordi, Ulloa, Fausto, Burgaya, Ferrán, Soriano, Eduardo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3699457/
https://www.ncbi.nlm.nih.gov/pubmed/23844091
http://dx.doi.org/10.1371/journal.pone.0067773
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author Serrat, Román
López-Doménech, Guillermo
Mirra, Serena
Quevedo, Martí
Garcia-Fernàndez, Jordi
Ulloa, Fausto
Burgaya, Ferrán
Soriano, Eduardo
author_facet Serrat, Román
López-Doménech, Guillermo
Mirra, Serena
Quevedo, Martí
Garcia-Fernàndez, Jordi
Ulloa, Fausto
Burgaya, Ferrán
Soriano, Eduardo
author_sort Serrat, Román
collection PubMed
description The regulation of mitochondrial dynamics is vital in complex cell types, such as neurons, that transport and localize mitochondria in high energy-demanding cell domains. The Armcx3 gene encodes a mitochondrial-targeted protein (Alex3) that contains several arm-like domains. In a previous study we showed that Alex3 protein regulates mitochondrial aggregation and trafficking. Here we studied the contribution of Wnt proteins to the mitochondrial aggregation and dynamics regulated by Alex3. Overexpression of Alex3 in HEK293 cells caused a marked aggregation of mitochondria, which was attenuated by treatment with several Wnts. We also found that this decrease was caused by Alex3 degradation induced by Wnts. While the Wnt canonical pathway did not alter the pattern of mitochondrial aggregation induced by Alex3, we observed that the Wnt/PKC non-canonical pathway regulated both mitochondrial aggregation and Alex3 protein levels, thereby rendering a mitochondrial phenotype and distribution similar to control patterns. Our data suggest that the Wnt pathway regulates mitochondrial distribution and dynamics through Alex3 protein degradation.
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spelling pubmed-36994572013-07-10 The Non-Canonical Wnt/PKC Pathway Regulates Mitochondrial Dynamics through Degradation of the Arm-Like Domain-Containing Protein Alex3 Serrat, Román López-Doménech, Guillermo Mirra, Serena Quevedo, Martí Garcia-Fernàndez, Jordi Ulloa, Fausto Burgaya, Ferrán Soriano, Eduardo PLoS One Research Article The regulation of mitochondrial dynamics is vital in complex cell types, such as neurons, that transport and localize mitochondria in high energy-demanding cell domains. The Armcx3 gene encodes a mitochondrial-targeted protein (Alex3) that contains several arm-like domains. In a previous study we showed that Alex3 protein regulates mitochondrial aggregation and trafficking. Here we studied the contribution of Wnt proteins to the mitochondrial aggregation and dynamics regulated by Alex3. Overexpression of Alex3 in HEK293 cells caused a marked aggregation of mitochondria, which was attenuated by treatment with several Wnts. We also found that this decrease was caused by Alex3 degradation induced by Wnts. While the Wnt canonical pathway did not alter the pattern of mitochondrial aggregation induced by Alex3, we observed that the Wnt/PKC non-canonical pathway regulated both mitochondrial aggregation and Alex3 protein levels, thereby rendering a mitochondrial phenotype and distribution similar to control patterns. Our data suggest that the Wnt pathway regulates mitochondrial distribution and dynamics through Alex3 protein degradation. Public Library of Science 2013-07-02 /pmc/articles/PMC3699457/ /pubmed/23844091 http://dx.doi.org/10.1371/journal.pone.0067773 Text en © 2013 Serrat 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
Serrat, Román
López-Doménech, Guillermo
Mirra, Serena
Quevedo, Martí
Garcia-Fernàndez, Jordi
Ulloa, Fausto
Burgaya, Ferrán
Soriano, Eduardo
The Non-Canonical Wnt/PKC Pathway Regulates Mitochondrial Dynamics through Degradation of the Arm-Like Domain-Containing Protein Alex3
title The Non-Canonical Wnt/PKC Pathway Regulates Mitochondrial Dynamics through Degradation of the Arm-Like Domain-Containing Protein Alex3
title_full The Non-Canonical Wnt/PKC Pathway Regulates Mitochondrial Dynamics through Degradation of the Arm-Like Domain-Containing Protein Alex3
title_fullStr The Non-Canonical Wnt/PKC Pathway Regulates Mitochondrial Dynamics through Degradation of the Arm-Like Domain-Containing Protein Alex3
title_full_unstemmed The Non-Canonical Wnt/PKC Pathway Regulates Mitochondrial Dynamics through Degradation of the Arm-Like Domain-Containing Protein Alex3
title_short The Non-Canonical Wnt/PKC Pathway Regulates Mitochondrial Dynamics through Degradation of the Arm-Like Domain-Containing Protein Alex3
title_sort non-canonical wnt/pkc pathway regulates mitochondrial dynamics through degradation of the arm-like domain-containing protein alex3
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3699457/
https://www.ncbi.nlm.nih.gov/pubmed/23844091
http://dx.doi.org/10.1371/journal.pone.0067773
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