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Alpha-synuclein prevents the formation of spherical mitochondria and apoptosis under oxidative stress

Oxidative stress (OS), mitochondrial dysfunction, and dysregulation of alpha-synuclein (aSyn) homeostasis are key pathogenic factors in Parkinson’s disease. Nevertheless, the role of aSyn in mitochondrial physiology remains elusive. Thus, we addressed the impact of aSyn specifically on mitochondrial...

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Autores principales: Menges, Stefanie, Minakaki, Georgia, Schaefer, Patrick M., Meixner, Holger, Prots, Iryna, Schlötzer-Schrehardt, Ursula, Friedland, Kristina, Winner, Beate, Outeiro, Tiago F., Winklhofer, Konstanze F., von Arnim, Christine A. F., Xiang, Wei, Winkler, Jürgen, Klucken, Jochen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5320486/
https://www.ncbi.nlm.nih.gov/pubmed/28224980
http://dx.doi.org/10.1038/srep42942
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author Menges, Stefanie
Minakaki, Georgia
Schaefer, Patrick M.
Meixner, Holger
Prots, Iryna
Schlötzer-Schrehardt, Ursula
Friedland, Kristina
Winner, Beate
Outeiro, Tiago F.
Winklhofer, Konstanze F.
von Arnim, Christine A. F.
Xiang, Wei
Winkler, Jürgen
Klucken, Jochen
author_facet Menges, Stefanie
Minakaki, Georgia
Schaefer, Patrick M.
Meixner, Holger
Prots, Iryna
Schlötzer-Schrehardt, Ursula
Friedland, Kristina
Winner, Beate
Outeiro, Tiago F.
Winklhofer, Konstanze F.
von Arnim, Christine A. F.
Xiang, Wei
Winkler, Jürgen
Klucken, Jochen
author_sort Menges, Stefanie
collection PubMed
description Oxidative stress (OS), mitochondrial dysfunction, and dysregulation of alpha-synuclein (aSyn) homeostasis are key pathogenic factors in Parkinson’s disease. Nevertheless, the role of aSyn in mitochondrial physiology remains elusive. Thus, we addressed the impact of aSyn specifically on mitochondrial response to OS in neural cells. We characterize a distinct type of mitochondrial fragmentation, following H(2)O(2) or 6-OHDA-induced OS, defined by spherically-shaped and hyperpolarized mitochondria, termed “mitospheres”. Mitosphere formation mechanistically depended on the fission factor Drp1, and was paralleled by reduced mitochondrial fusion. Furthermore, mitospheres were linked to a decrease in mitochondrial activity, and preceded Caspase3 activation. Even though fragmentation of dysfunctional mitochondria is considered to be a prerequisite for mitochondrial degradation, mitospheres were not degraded via Parkin-mediated mitophagy. Importantly, we provide compelling evidence that aSyn prevents mitosphere formation and reduces apoptosis under OS. In contrast, aSyn did not protect against Rotenone, which led to a different, previously described donut-shaped mitochondrial morphology. Our findings reveal a dichotomic role of aSyn in mitochondrial biology, which is linked to distinct types of stress-induced mitochondrial fragmentation. Specifically, aSyn may be part of a cellular defense mechanism preserving neural mitochondrial homeostasis in the presence of increased OS levels, while not protecting against stressors directly affecting mitochondrial function.
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spelling pubmed-53204862017-03-01 Alpha-synuclein prevents the formation of spherical mitochondria and apoptosis under oxidative stress Menges, Stefanie Minakaki, Georgia Schaefer, Patrick M. Meixner, Holger Prots, Iryna Schlötzer-Schrehardt, Ursula Friedland, Kristina Winner, Beate Outeiro, Tiago F. Winklhofer, Konstanze F. von Arnim, Christine A. F. Xiang, Wei Winkler, Jürgen Klucken, Jochen Sci Rep Article Oxidative stress (OS), mitochondrial dysfunction, and dysregulation of alpha-synuclein (aSyn) homeostasis are key pathogenic factors in Parkinson’s disease. Nevertheless, the role of aSyn in mitochondrial physiology remains elusive. Thus, we addressed the impact of aSyn specifically on mitochondrial response to OS in neural cells. We characterize a distinct type of mitochondrial fragmentation, following H(2)O(2) or 6-OHDA-induced OS, defined by spherically-shaped and hyperpolarized mitochondria, termed “mitospheres”. Mitosphere formation mechanistically depended on the fission factor Drp1, and was paralleled by reduced mitochondrial fusion. Furthermore, mitospheres were linked to a decrease in mitochondrial activity, and preceded Caspase3 activation. Even though fragmentation of dysfunctional mitochondria is considered to be a prerequisite for mitochondrial degradation, mitospheres were not degraded via Parkin-mediated mitophagy. Importantly, we provide compelling evidence that aSyn prevents mitosphere formation and reduces apoptosis under OS. In contrast, aSyn did not protect against Rotenone, which led to a different, previously described donut-shaped mitochondrial morphology. Our findings reveal a dichotomic role of aSyn in mitochondrial biology, which is linked to distinct types of stress-induced mitochondrial fragmentation. Specifically, aSyn may be part of a cellular defense mechanism preserving neural mitochondrial homeostasis in the presence of increased OS levels, while not protecting against stressors directly affecting mitochondrial function. Nature Publishing Group 2017-02-22 /pmc/articles/PMC5320486/ /pubmed/28224980 http://dx.doi.org/10.1038/srep42942 Text en Copyright © 2017, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Menges, Stefanie
Minakaki, Georgia
Schaefer, Patrick M.
Meixner, Holger
Prots, Iryna
Schlötzer-Schrehardt, Ursula
Friedland, Kristina
Winner, Beate
Outeiro, Tiago F.
Winklhofer, Konstanze F.
von Arnim, Christine A. F.
Xiang, Wei
Winkler, Jürgen
Klucken, Jochen
Alpha-synuclein prevents the formation of spherical mitochondria and apoptosis under oxidative stress
title Alpha-synuclein prevents the formation of spherical mitochondria and apoptosis under oxidative stress
title_full Alpha-synuclein prevents the formation of spherical mitochondria and apoptosis under oxidative stress
title_fullStr Alpha-synuclein prevents the formation of spherical mitochondria and apoptosis under oxidative stress
title_full_unstemmed Alpha-synuclein prevents the formation of spherical mitochondria and apoptosis under oxidative stress
title_short Alpha-synuclein prevents the formation of spherical mitochondria and apoptosis under oxidative stress
title_sort alpha-synuclein prevents the formation of spherical mitochondria and apoptosis under oxidative stress
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5320486/
https://www.ncbi.nlm.nih.gov/pubmed/28224980
http://dx.doi.org/10.1038/srep42942
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