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Alteration of Mitochondrial Integrity as Upstream Event in the Pathophysiology of SOD1-ALS

Little is known about the early pathogenic events by which mutant superoxide dismutase 1 (SOD1) causes amyotrophic lateral sclerosis (ALS). This lack of mechanistic understanding is a major barrier to the development and evaluation of efficient therapies. Although protein aggregation is known to be...

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Autores principales: Günther, René, Pal, Arun, Williams, Chloe, Zimyanin, Vitaly L., Liehr, Maria, von Neubeck, Cläre, Krause, Mechthild, Parab, Mrudula G., Petri, Susanne, Kalmbach, Norman, Marklund, Stefan L., Sterneckert, Jared, Munch Andersen, Peter, Wegner, Florian, Gilthorpe, Jonathan D., Hermann, Andreas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8997900/
https://www.ncbi.nlm.nih.gov/pubmed/35406813
http://dx.doi.org/10.3390/cells11071246
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author Günther, René
Pal, Arun
Williams, Chloe
Zimyanin, Vitaly L.
Liehr, Maria
von Neubeck, Cläre
Krause, Mechthild
Parab, Mrudula G.
Petri, Susanne
Kalmbach, Norman
Marklund, Stefan L.
Sterneckert, Jared
Munch Andersen, Peter
Wegner, Florian
Gilthorpe, Jonathan D.
Hermann, Andreas
author_facet Günther, René
Pal, Arun
Williams, Chloe
Zimyanin, Vitaly L.
Liehr, Maria
von Neubeck, Cläre
Krause, Mechthild
Parab, Mrudula G.
Petri, Susanne
Kalmbach, Norman
Marklund, Stefan L.
Sterneckert, Jared
Munch Andersen, Peter
Wegner, Florian
Gilthorpe, Jonathan D.
Hermann, Andreas
author_sort Günther, René
collection PubMed
description Little is known about the early pathogenic events by which mutant superoxide dismutase 1 (SOD1) causes amyotrophic lateral sclerosis (ALS). This lack of mechanistic understanding is a major barrier to the development and evaluation of efficient therapies. Although protein aggregation is known to be involved, it is not understood how mutant SOD1 causes degeneration of motoneurons (MNs). Previous research has relied heavily on the overexpression of mutant SOD1, but the clinical relevance of SOD1 overexpression models remains questionable. We used a human induced pluripotent stem cell (iPSC) model of spinal MNs and three different endogenous ALS-associated SOD1 mutations (D90A(hom), R115G(het) or A4V(het)) to investigate early cellular disturbances in MNs. Although enhanced misfolding and aggregation of SOD1 was induced by proteasome inhibition, it was not affected by activation of the stress granule pathway. Interestingly, we identified loss of mitochondrial, but not lysosomal, integrity as the earliest common pathological phenotype, which preceded elevated levels of insoluble, aggregated SOD1. A super-elongated mitochondrial morphology with impaired inner mitochondrial membrane potential was a unifying feature in mutant SOD1 iPSC-derived MNs. Impaired mitochondrial integrity was most prominent in mutant D90A(hom) MNs, whereas both soluble disordered and detergent-resistant misfolded SOD1 was more prominent in R115G(het) and A4V(het) mutant lines. Taking advantage of patient-specific models of SOD1-ALS in vitro, our data suggest that mitochondrial dysfunction is one of the first crucial steps in the pathogenic cascade that leads to SOD1-ALS and also highlights the need for individualized medical approaches for SOD1-ALS.
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spelling pubmed-89979002022-04-12 Alteration of Mitochondrial Integrity as Upstream Event in the Pathophysiology of SOD1-ALS Günther, René Pal, Arun Williams, Chloe Zimyanin, Vitaly L. Liehr, Maria von Neubeck, Cläre Krause, Mechthild Parab, Mrudula G. Petri, Susanne Kalmbach, Norman Marklund, Stefan L. Sterneckert, Jared Munch Andersen, Peter Wegner, Florian Gilthorpe, Jonathan D. Hermann, Andreas Cells Article Little is known about the early pathogenic events by which mutant superoxide dismutase 1 (SOD1) causes amyotrophic lateral sclerosis (ALS). This lack of mechanistic understanding is a major barrier to the development and evaluation of efficient therapies. Although protein aggregation is known to be involved, it is not understood how mutant SOD1 causes degeneration of motoneurons (MNs). Previous research has relied heavily on the overexpression of mutant SOD1, but the clinical relevance of SOD1 overexpression models remains questionable. We used a human induced pluripotent stem cell (iPSC) model of spinal MNs and three different endogenous ALS-associated SOD1 mutations (D90A(hom), R115G(het) or A4V(het)) to investigate early cellular disturbances in MNs. Although enhanced misfolding and aggregation of SOD1 was induced by proteasome inhibition, it was not affected by activation of the stress granule pathway. Interestingly, we identified loss of mitochondrial, but not lysosomal, integrity as the earliest common pathological phenotype, which preceded elevated levels of insoluble, aggregated SOD1. A super-elongated mitochondrial morphology with impaired inner mitochondrial membrane potential was a unifying feature in mutant SOD1 iPSC-derived MNs. Impaired mitochondrial integrity was most prominent in mutant D90A(hom) MNs, whereas both soluble disordered and detergent-resistant misfolded SOD1 was more prominent in R115G(het) and A4V(het) mutant lines. Taking advantage of patient-specific models of SOD1-ALS in vitro, our data suggest that mitochondrial dysfunction is one of the first crucial steps in the pathogenic cascade that leads to SOD1-ALS and also highlights the need for individualized medical approaches for SOD1-ALS. MDPI 2022-04-06 /pmc/articles/PMC8997900/ /pubmed/35406813 http://dx.doi.org/10.3390/cells11071246 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Günther, René
Pal, Arun
Williams, Chloe
Zimyanin, Vitaly L.
Liehr, Maria
von Neubeck, Cläre
Krause, Mechthild
Parab, Mrudula G.
Petri, Susanne
Kalmbach, Norman
Marklund, Stefan L.
Sterneckert, Jared
Munch Andersen, Peter
Wegner, Florian
Gilthorpe, Jonathan D.
Hermann, Andreas
Alteration of Mitochondrial Integrity as Upstream Event in the Pathophysiology of SOD1-ALS
title Alteration of Mitochondrial Integrity as Upstream Event in the Pathophysiology of SOD1-ALS
title_full Alteration of Mitochondrial Integrity as Upstream Event in the Pathophysiology of SOD1-ALS
title_fullStr Alteration of Mitochondrial Integrity as Upstream Event in the Pathophysiology of SOD1-ALS
title_full_unstemmed Alteration of Mitochondrial Integrity as Upstream Event in the Pathophysiology of SOD1-ALS
title_short Alteration of Mitochondrial Integrity as Upstream Event in the Pathophysiology of SOD1-ALS
title_sort alteration of mitochondrial integrity as upstream event in the pathophysiology of sod1-als
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8997900/
https://www.ncbi.nlm.nih.gov/pubmed/35406813
http://dx.doi.org/10.3390/cells11071246
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