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L-Arginine Reduces Nitro-Oxidative Stress in Cultured Cells with Mitochondrial Deficiency

L-Arginine (L-ARG) supplementation has been suggested as a therapeutic option in several diseases, including Mitochondrial Encephalomyopathy, Lactic Acidosis, and Stroke-like syndrome (MELAS), arguably the most common mitochondrial disease. It is suggested that L-ARG, a nitric oxide (NO) precursor,...

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Autores principales: Barros, Camila D. S., Livramento, Jomênica B., Mouro, Margaret G., Higa, Elisa Mieko Suemitsu, Moraes, Carlos T., Tengan, Celia Harumi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7914615/
https://www.ncbi.nlm.nih.gov/pubmed/33562042
http://dx.doi.org/10.3390/nu13020534
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author Barros, Camila D. S.
Livramento, Jomênica B.
Mouro, Margaret G.
Higa, Elisa Mieko Suemitsu
Moraes, Carlos T.
Tengan, Celia Harumi
author_facet Barros, Camila D. S.
Livramento, Jomênica B.
Mouro, Margaret G.
Higa, Elisa Mieko Suemitsu
Moraes, Carlos T.
Tengan, Celia Harumi
author_sort Barros, Camila D. S.
collection PubMed
description L-Arginine (L-ARG) supplementation has been suggested as a therapeutic option in several diseases, including Mitochondrial Encephalomyopathy, Lactic Acidosis, and Stroke-like syndrome (MELAS), arguably the most common mitochondrial disease. It is suggested that L-ARG, a nitric oxide (NO) precursor, can restore NO levels in blood vessels, improving cerebral blood flow. However, NO also participates in mitochondrial processes, such as mitochondrial biogenesis, the regulation of the respiratory chain, and oxidative stress. This study investigated the effects of L-ARG on mitochondrial function, nitric oxide synthesis, and nitro-oxidative stress in cell lines harboring the MELAS mitochondrial DNA (mtDNA) mutation (m.3243A>G). We evaluated mitochondrial enzyme activity, mitochondrial mass, NO concentration, and nitro-oxidative stress. Our results showed that m.3243A>G cells had increased NO levels and protein nitration at basal conditions. Treatment with L-ARG did not affect the mitochondrial function and mass but reduced the intracellular NO concentration and nitrated proteins in m.3243A>G cells. The same treatment led to opposite effects in control cells. In conclusion, we showed that the main effect of L-ARG was on protein nitration. Lowering protein nitration is probably involved in the mechanism related to L-ARG supplementation benefits in MELAS patients.
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spelling pubmed-79146152021-03-01 L-Arginine Reduces Nitro-Oxidative Stress in Cultured Cells with Mitochondrial Deficiency Barros, Camila D. S. Livramento, Jomênica B. Mouro, Margaret G. Higa, Elisa Mieko Suemitsu Moraes, Carlos T. Tengan, Celia Harumi Nutrients Article L-Arginine (L-ARG) supplementation has been suggested as a therapeutic option in several diseases, including Mitochondrial Encephalomyopathy, Lactic Acidosis, and Stroke-like syndrome (MELAS), arguably the most common mitochondrial disease. It is suggested that L-ARG, a nitric oxide (NO) precursor, can restore NO levels in blood vessels, improving cerebral blood flow. However, NO also participates in mitochondrial processes, such as mitochondrial biogenesis, the regulation of the respiratory chain, and oxidative stress. This study investigated the effects of L-ARG on mitochondrial function, nitric oxide synthesis, and nitro-oxidative stress in cell lines harboring the MELAS mitochondrial DNA (mtDNA) mutation (m.3243A>G). We evaluated mitochondrial enzyme activity, mitochondrial mass, NO concentration, and nitro-oxidative stress. Our results showed that m.3243A>G cells had increased NO levels and protein nitration at basal conditions. Treatment with L-ARG did not affect the mitochondrial function and mass but reduced the intracellular NO concentration and nitrated proteins in m.3243A>G cells. The same treatment led to opposite effects in control cells. In conclusion, we showed that the main effect of L-ARG was on protein nitration. Lowering protein nitration is probably involved in the mechanism related to L-ARG supplementation benefits in MELAS patients. MDPI 2021-02-06 /pmc/articles/PMC7914615/ /pubmed/33562042 http://dx.doi.org/10.3390/nu13020534 Text en © 2021 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Barros, Camila D. S.
Livramento, Jomênica B.
Mouro, Margaret G.
Higa, Elisa Mieko Suemitsu
Moraes, Carlos T.
Tengan, Celia Harumi
L-Arginine Reduces Nitro-Oxidative Stress in Cultured Cells with Mitochondrial Deficiency
title L-Arginine Reduces Nitro-Oxidative Stress in Cultured Cells with Mitochondrial Deficiency
title_full L-Arginine Reduces Nitro-Oxidative Stress in Cultured Cells with Mitochondrial Deficiency
title_fullStr L-Arginine Reduces Nitro-Oxidative Stress in Cultured Cells with Mitochondrial Deficiency
title_full_unstemmed L-Arginine Reduces Nitro-Oxidative Stress in Cultured Cells with Mitochondrial Deficiency
title_short L-Arginine Reduces Nitro-Oxidative Stress in Cultured Cells with Mitochondrial Deficiency
title_sort l-arginine reduces nitro-oxidative stress in cultured cells with mitochondrial deficiency
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7914615/
https://www.ncbi.nlm.nih.gov/pubmed/33562042
http://dx.doi.org/10.3390/nu13020534
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