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Inhibition of chymotrypsin-like activity of the proteasome by ixazomib prevents mitochondrial dysfunction during myocardial ischemia

The heart is critically dependent on mitochondrial respiration for energy supply. Ischemia decreases oxygen availability, with catastrophic consequences for cellular energy systems. After a few minutes of ischemia, the mitochondrial respiratory chain halts, ATP levels drop and ion gradients across c...

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Autores principales: Sánchez, Gina, Chalmers, Stefanie, Ahumada, Xavier, Montecinos, Luis, Olmedo, Ivonne, Eisner, Veronica, Riveros, Ana, Kogan, Marcelo J., Lavandero, Sergio, Pedrozo, Zully, Donoso, Paulina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7250417/
https://www.ncbi.nlm.nih.gov/pubmed/32453773
http://dx.doi.org/10.1371/journal.pone.0233591
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author Sánchez, Gina
Chalmers, Stefanie
Ahumada, Xavier
Montecinos, Luis
Olmedo, Ivonne
Eisner, Veronica
Riveros, Ana
Kogan, Marcelo J.
Lavandero, Sergio
Pedrozo, Zully
Donoso, Paulina
author_facet Sánchez, Gina
Chalmers, Stefanie
Ahumada, Xavier
Montecinos, Luis
Olmedo, Ivonne
Eisner, Veronica
Riveros, Ana
Kogan, Marcelo J.
Lavandero, Sergio
Pedrozo, Zully
Donoso, Paulina
author_sort Sánchez, Gina
collection PubMed
description The heart is critically dependent on mitochondrial respiration for energy supply. Ischemia decreases oxygen availability, with catastrophic consequences for cellular energy systems. After a few minutes of ischemia, the mitochondrial respiratory chain halts, ATP levels drop and ion gradients across cell membranes collapse. Activation of cellular proteases and generation of reactive oxygen species by mitochondria during ischemia alter mitochondrial membrane permeability, causing mitochondrial swelling and fragmentation and eventually cell death. The mitochondria, therefore, are important targets of cardioprotection against ischemic injury. We have previously shown that ixazomib (IXA), a proteasome inhibitor used for treating multiple myeloma, effectively reduced the size of the infarct produced by global ischemia in isolated rat hearts and prevented degradation of the sarcoplasmic reticulum calcium release channel RyR2. The aim of this work was to further characterize the protective effect of IXA by determining its effect on mitochondrial morphology and function after ischemia. We also quantified the effect of IXA on levels of mitofusin-2, a protein involved in maintaining mitochondrial morphology and mitochondria-SR communication. We found that mitochondria were significantly preserved and functional parameters such as oxygen consumption, the ability to generate a membrane potential, and glutathione content were improved in mitochondria isolated from hearts perfused with IXA prior to ischemia. IXA also blocked the release of cytochrome c observed in ischemia and significantly preserved mitofusin-2 integrity. These beneficial effects resulted in a significant decrease in the left ventricular end diastolic pressure upon reperfusion and a smaller infarct in isolated hearts.
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spelling pubmed-72504172020-06-08 Inhibition of chymotrypsin-like activity of the proteasome by ixazomib prevents mitochondrial dysfunction during myocardial ischemia Sánchez, Gina Chalmers, Stefanie Ahumada, Xavier Montecinos, Luis Olmedo, Ivonne Eisner, Veronica Riveros, Ana Kogan, Marcelo J. Lavandero, Sergio Pedrozo, Zully Donoso, Paulina PLoS One Research Article The heart is critically dependent on mitochondrial respiration for energy supply. Ischemia decreases oxygen availability, with catastrophic consequences for cellular energy systems. After a few minutes of ischemia, the mitochondrial respiratory chain halts, ATP levels drop and ion gradients across cell membranes collapse. Activation of cellular proteases and generation of reactive oxygen species by mitochondria during ischemia alter mitochondrial membrane permeability, causing mitochondrial swelling and fragmentation and eventually cell death. The mitochondria, therefore, are important targets of cardioprotection against ischemic injury. We have previously shown that ixazomib (IXA), a proteasome inhibitor used for treating multiple myeloma, effectively reduced the size of the infarct produced by global ischemia in isolated rat hearts and prevented degradation of the sarcoplasmic reticulum calcium release channel RyR2. The aim of this work was to further characterize the protective effect of IXA by determining its effect on mitochondrial morphology and function after ischemia. We also quantified the effect of IXA on levels of mitofusin-2, a protein involved in maintaining mitochondrial morphology and mitochondria-SR communication. We found that mitochondria were significantly preserved and functional parameters such as oxygen consumption, the ability to generate a membrane potential, and glutathione content were improved in mitochondria isolated from hearts perfused with IXA prior to ischemia. IXA also blocked the release of cytochrome c observed in ischemia and significantly preserved mitofusin-2 integrity. These beneficial effects resulted in a significant decrease in the left ventricular end diastolic pressure upon reperfusion and a smaller infarct in isolated hearts. Public Library of Science 2020-05-26 /pmc/articles/PMC7250417/ /pubmed/32453773 http://dx.doi.org/10.1371/journal.pone.0233591 Text en © 2020 Sánchez 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Sánchez, Gina
Chalmers, Stefanie
Ahumada, Xavier
Montecinos, Luis
Olmedo, Ivonne
Eisner, Veronica
Riveros, Ana
Kogan, Marcelo J.
Lavandero, Sergio
Pedrozo, Zully
Donoso, Paulina
Inhibition of chymotrypsin-like activity of the proteasome by ixazomib prevents mitochondrial dysfunction during myocardial ischemia
title Inhibition of chymotrypsin-like activity of the proteasome by ixazomib prevents mitochondrial dysfunction during myocardial ischemia
title_full Inhibition of chymotrypsin-like activity of the proteasome by ixazomib prevents mitochondrial dysfunction during myocardial ischemia
title_fullStr Inhibition of chymotrypsin-like activity of the proteasome by ixazomib prevents mitochondrial dysfunction during myocardial ischemia
title_full_unstemmed Inhibition of chymotrypsin-like activity of the proteasome by ixazomib prevents mitochondrial dysfunction during myocardial ischemia
title_short Inhibition of chymotrypsin-like activity of the proteasome by ixazomib prevents mitochondrial dysfunction during myocardial ischemia
title_sort inhibition of chymotrypsin-like activity of the proteasome by ixazomib prevents mitochondrial dysfunction during myocardial ischemia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7250417/
https://www.ncbi.nlm.nih.gov/pubmed/32453773
http://dx.doi.org/10.1371/journal.pone.0233591
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