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Inhibition of Mitochondrial Complex III Blocks Neuronal Differentiation and Maintains Embryonic Stem Cell Pluripotency

The mitochondrion is emerging as a key organelle in stem cell biology, acting as a regulator of stem cell pluripotency and differentiation. In this study we sought to understand the effect of mitochondrial complex III inhibition during neuronal differentiation of mouse embryonic stem cells. When exp...

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Autores principales: Pereira, Sandro L., Grãos, Mário, Rodrigues, Ana Sofia, Anjo, Sandra I., Carvalho, Rui A., Oliveira, Paulo J., Arenas, Ernest, Ramalho-Santos, João
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3847032/
https://www.ncbi.nlm.nih.gov/pubmed/24312632
http://dx.doi.org/10.1371/journal.pone.0082095
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author Pereira, Sandro L.
Grãos, Mário
Rodrigues, Ana Sofia
Anjo, Sandra I.
Carvalho, Rui A.
Oliveira, Paulo J.
Arenas, Ernest
Ramalho-Santos, João
author_facet Pereira, Sandro L.
Grãos, Mário
Rodrigues, Ana Sofia
Anjo, Sandra I.
Carvalho, Rui A.
Oliveira, Paulo J.
Arenas, Ernest
Ramalho-Santos, João
author_sort Pereira, Sandro L.
collection PubMed
description The mitochondrion is emerging as a key organelle in stem cell biology, acting as a regulator of stem cell pluripotency and differentiation. In this study we sought to understand the effect of mitochondrial complex III inhibition during neuronal differentiation of mouse embryonic stem cells. When exposed to antimycin A, a specific complex III inhibitor, embryonic stem cells failed to differentiate into dopaminergic neurons, maintaining high Oct4 levels even when subjected to a specific differentiation protocol. Mitochondrial inhibition affected distinct populations of cells present in culture, inducing cell loss in differentiated cells, but not inducing apoptosis in mouse embryonic stem cells. A reduction in overall proliferation rate was observed, corresponding to a slight arrest in S phase. Moreover, antimycin A treatment induced a consistent increase in HIF-1α protein levels. The present work demonstrates that mitochondrial metabolism is critical for neuronal differentiation and emphasizes that modulation of mitochondrial functions through pharmacological approaches can be useful in the context of controlling stem cell maintenance/differentiation.
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spelling pubmed-38470322013-12-05 Inhibition of Mitochondrial Complex III Blocks Neuronal Differentiation and Maintains Embryonic Stem Cell Pluripotency Pereira, Sandro L. Grãos, Mário Rodrigues, Ana Sofia Anjo, Sandra I. Carvalho, Rui A. Oliveira, Paulo J. Arenas, Ernest Ramalho-Santos, João PLoS One Research Article The mitochondrion is emerging as a key organelle in stem cell biology, acting as a regulator of stem cell pluripotency and differentiation. In this study we sought to understand the effect of mitochondrial complex III inhibition during neuronal differentiation of mouse embryonic stem cells. When exposed to antimycin A, a specific complex III inhibitor, embryonic stem cells failed to differentiate into dopaminergic neurons, maintaining high Oct4 levels even when subjected to a specific differentiation protocol. Mitochondrial inhibition affected distinct populations of cells present in culture, inducing cell loss in differentiated cells, but not inducing apoptosis in mouse embryonic stem cells. A reduction in overall proliferation rate was observed, corresponding to a slight arrest in S phase. Moreover, antimycin A treatment induced a consistent increase in HIF-1α protein levels. The present work demonstrates that mitochondrial metabolism is critical for neuronal differentiation and emphasizes that modulation of mitochondrial functions through pharmacological approaches can be useful in the context of controlling stem cell maintenance/differentiation. Public Library of Science 2013-12-02 /pmc/articles/PMC3847032/ /pubmed/24312632 http://dx.doi.org/10.1371/journal.pone.0082095 Text en © 2013 Pereira 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
Pereira, Sandro L.
Grãos, Mário
Rodrigues, Ana Sofia
Anjo, Sandra I.
Carvalho, Rui A.
Oliveira, Paulo J.
Arenas, Ernest
Ramalho-Santos, João
Inhibition of Mitochondrial Complex III Blocks Neuronal Differentiation and Maintains Embryonic Stem Cell Pluripotency
title Inhibition of Mitochondrial Complex III Blocks Neuronal Differentiation and Maintains Embryonic Stem Cell Pluripotency
title_full Inhibition of Mitochondrial Complex III Blocks Neuronal Differentiation and Maintains Embryonic Stem Cell Pluripotency
title_fullStr Inhibition of Mitochondrial Complex III Blocks Neuronal Differentiation and Maintains Embryonic Stem Cell Pluripotency
title_full_unstemmed Inhibition of Mitochondrial Complex III Blocks Neuronal Differentiation and Maintains Embryonic Stem Cell Pluripotency
title_short Inhibition of Mitochondrial Complex III Blocks Neuronal Differentiation and Maintains Embryonic Stem Cell Pluripotency
title_sort inhibition of mitochondrial complex iii blocks neuronal differentiation and maintains embryonic stem cell pluripotency
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3847032/
https://www.ncbi.nlm.nih.gov/pubmed/24312632
http://dx.doi.org/10.1371/journal.pone.0082095
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