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Impact of the Mitochondrial Genetic Background in Complex III Deficiency

BACKGROUND: In recent years clinical evidence has emphasized the importance of the mtDNA genetic background that hosts a primary pathogenic mutation in the clinical expression of mitochondrial disorders, but little experimental confirmation has been provided. We have analyzed the pathogenic role of...

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Autores principales: Gil Borlado, Mari Carmen, Moreno Lastres, David, Gonzalez Hoyuela, Maritza, Moran, Maria, Blazquez, Alberto, Pello, Rosa, Marin Buera, Lorena, Gabaldon, Toni, Garcia Peñas, Juan Jose, Martín, Miguel A., Arenas, Joaquin, Ugalde, Cristina
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2941448/
https://www.ncbi.nlm.nih.gov/pubmed/20862300
http://dx.doi.org/10.1371/journal.pone.0012801
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author Gil Borlado, Mari Carmen
Moreno Lastres, David
Gonzalez Hoyuela, Maritza
Moran, Maria
Blazquez, Alberto
Pello, Rosa
Marin Buera, Lorena
Gabaldon, Toni
Garcia Peñas, Juan Jose
Martín, Miguel A.
Arenas, Joaquin
Ugalde, Cristina
author_facet Gil Borlado, Mari Carmen
Moreno Lastres, David
Gonzalez Hoyuela, Maritza
Moran, Maria
Blazquez, Alberto
Pello, Rosa
Marin Buera, Lorena
Gabaldon, Toni
Garcia Peñas, Juan Jose
Martín, Miguel A.
Arenas, Joaquin
Ugalde, Cristina
author_sort Gil Borlado, Mari Carmen
collection PubMed
description BACKGROUND: In recent years clinical evidence has emphasized the importance of the mtDNA genetic background that hosts a primary pathogenic mutation in the clinical expression of mitochondrial disorders, but little experimental confirmation has been provided. We have analyzed the pathogenic role of a novel homoplasmic mutation (m.15533 A>G) in the cytochrome b (MT-CYB) gene in a patient presenting with lactic acidosis, seizures, mild mental delay, and behaviour abnormalities. METHODOLOGY: Spectrophotometric analyses of the respiratory chain enzyme activities were performed in different tissues, the whole muscle mitochondrial DNA of the patient was sequenced, and the novel mutation was confirmed by PCR-RFLP. Transmitochondrial cybrids were constructed to confirm the pathogenicity of the mutation, and assembly/stability studies were carried out in fibroblasts and cybrids by means of mitochondrial translation inhibition in combination with blue native gel electrophoresis. PRINCIPAL FINDINGS: Biochemical analyses revealed a decrease in respiratory chain complex III activity in patient's skeletal muscle, and a combined enzyme defect of complexes III and IV in fibroblasts. Mutant transmitochondrial cybrids restored normal enzyme activities and steady-state protein levels, the mutation was mildly conserved along evolution, and the proband's mother and maternal aunt, both clinically unaffected, also harboured the homoplasmic mutation. These data suggested a nuclear genetic origin of the disease. However, by forcing the de novo functioning of the OXPHOS system, a severe delay in the biogenesis of the respiratory chain complexes was observed in the mutants, which demonstrated a direct functional effect of the mitochondrial genetic background. CONCLUSIONS: Our results point to possible pitfalls in the detection of pathogenic mitochondrial mutations, and highlight the role of the genetic mtDNA background in the development of mitochondrial disorders.
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spelling pubmed-29414482010-09-22 Impact of the Mitochondrial Genetic Background in Complex III Deficiency Gil Borlado, Mari Carmen Moreno Lastres, David Gonzalez Hoyuela, Maritza Moran, Maria Blazquez, Alberto Pello, Rosa Marin Buera, Lorena Gabaldon, Toni Garcia Peñas, Juan Jose Martín, Miguel A. Arenas, Joaquin Ugalde, Cristina PLoS One Research Article BACKGROUND: In recent years clinical evidence has emphasized the importance of the mtDNA genetic background that hosts a primary pathogenic mutation in the clinical expression of mitochondrial disorders, but little experimental confirmation has been provided. We have analyzed the pathogenic role of a novel homoplasmic mutation (m.15533 A>G) in the cytochrome b (MT-CYB) gene in a patient presenting with lactic acidosis, seizures, mild mental delay, and behaviour abnormalities. METHODOLOGY: Spectrophotometric analyses of the respiratory chain enzyme activities were performed in different tissues, the whole muscle mitochondrial DNA of the patient was sequenced, and the novel mutation was confirmed by PCR-RFLP. Transmitochondrial cybrids were constructed to confirm the pathogenicity of the mutation, and assembly/stability studies were carried out in fibroblasts and cybrids by means of mitochondrial translation inhibition in combination with blue native gel electrophoresis. PRINCIPAL FINDINGS: Biochemical analyses revealed a decrease in respiratory chain complex III activity in patient's skeletal muscle, and a combined enzyme defect of complexes III and IV in fibroblasts. Mutant transmitochondrial cybrids restored normal enzyme activities and steady-state protein levels, the mutation was mildly conserved along evolution, and the proband's mother and maternal aunt, both clinically unaffected, also harboured the homoplasmic mutation. These data suggested a nuclear genetic origin of the disease. However, by forcing the de novo functioning of the OXPHOS system, a severe delay in the biogenesis of the respiratory chain complexes was observed in the mutants, which demonstrated a direct functional effect of the mitochondrial genetic background. CONCLUSIONS: Our results point to possible pitfalls in the detection of pathogenic mitochondrial mutations, and highlight the role of the genetic mtDNA background in the development of mitochondrial disorders. Public Library of Science 2010-09-17 /pmc/articles/PMC2941448/ /pubmed/20862300 http://dx.doi.org/10.1371/journal.pone.0012801 Text en Gil Borlado 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
Gil Borlado, Mari Carmen
Moreno Lastres, David
Gonzalez Hoyuela, Maritza
Moran, Maria
Blazquez, Alberto
Pello, Rosa
Marin Buera, Lorena
Gabaldon, Toni
Garcia Peñas, Juan Jose
Martín, Miguel A.
Arenas, Joaquin
Ugalde, Cristina
Impact of the Mitochondrial Genetic Background in Complex III Deficiency
title Impact of the Mitochondrial Genetic Background in Complex III Deficiency
title_full Impact of the Mitochondrial Genetic Background in Complex III Deficiency
title_fullStr Impact of the Mitochondrial Genetic Background in Complex III Deficiency
title_full_unstemmed Impact of the Mitochondrial Genetic Background in Complex III Deficiency
title_short Impact of the Mitochondrial Genetic Background in Complex III Deficiency
title_sort impact of the mitochondrial genetic background in complex iii deficiency
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2941448/
https://www.ncbi.nlm.nih.gov/pubmed/20862300
http://dx.doi.org/10.1371/journal.pone.0012801
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