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COQ4 Mutations Cause a Broad Spectrum of Mitochondrial Disorders Associated with CoQ(10) Deficiency

Primary coenzyme Q10 (CoQ(10)) deficiencies are rare, clinically heterogeneous disorders caused by mutations in several genes encoding proteins involved in CoQ(10) biosynthesis. CoQ(10) is an essential component of the electron transport chain (ETC), where it shuttles electrons from complex I or II...

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Autores principales: Brea-Calvo, Gloria, Haack, Tobias B., Karall, Daniela, Ohtake, Akira, Invernizzi, Federica, Carrozzo, Rosalba, Kremer, Laura, Dusi, Sabrina, Fauth, Christine, Scholl-Bürgi, Sabine, Graf, Elisabeth, Ahting, Uwe, Resta, Nicoletta, Laforgia, Nicola, Verrigni, Daniela, Okazaki, Yasushi, Kohda, Masakazu, Martinelli, Diego, Freisinger, Peter, Strom, Tim M., Meitinger, Thomas, Lamperti, Costanza, Lacson, Atilano, Navas, Placido, Mayr, Johannes A., Bertini, Enrico, Murayama, Kei, Zeviani, Massimo, Prokisch, Holger, Ghezzi, Daniele
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4320255/
https://www.ncbi.nlm.nih.gov/pubmed/25658047
http://dx.doi.org/10.1016/j.ajhg.2014.12.023
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author Brea-Calvo, Gloria
Haack, Tobias B.
Karall, Daniela
Ohtake, Akira
Invernizzi, Federica
Carrozzo, Rosalba
Kremer, Laura
Dusi, Sabrina
Fauth, Christine
Scholl-Bürgi, Sabine
Graf, Elisabeth
Ahting, Uwe
Resta, Nicoletta
Laforgia, Nicola
Verrigni, Daniela
Okazaki, Yasushi
Kohda, Masakazu
Martinelli, Diego
Freisinger, Peter
Strom, Tim M.
Meitinger, Thomas
Lamperti, Costanza
Lacson, Atilano
Navas, Placido
Mayr, Johannes A.
Bertini, Enrico
Murayama, Kei
Zeviani, Massimo
Prokisch, Holger
Ghezzi, Daniele
author_facet Brea-Calvo, Gloria
Haack, Tobias B.
Karall, Daniela
Ohtake, Akira
Invernizzi, Federica
Carrozzo, Rosalba
Kremer, Laura
Dusi, Sabrina
Fauth, Christine
Scholl-Bürgi, Sabine
Graf, Elisabeth
Ahting, Uwe
Resta, Nicoletta
Laforgia, Nicola
Verrigni, Daniela
Okazaki, Yasushi
Kohda, Masakazu
Martinelli, Diego
Freisinger, Peter
Strom, Tim M.
Meitinger, Thomas
Lamperti, Costanza
Lacson, Atilano
Navas, Placido
Mayr, Johannes A.
Bertini, Enrico
Murayama, Kei
Zeviani, Massimo
Prokisch, Holger
Ghezzi, Daniele
author_sort Brea-Calvo, Gloria
collection PubMed
description Primary coenzyme Q10 (CoQ(10)) deficiencies are rare, clinically heterogeneous disorders caused by mutations in several genes encoding proteins involved in CoQ(10) biosynthesis. CoQ(10) is an essential component of the electron transport chain (ETC), where it shuttles electrons from complex I or II to complex III. By whole-exome sequencing, we identified five individuals carrying biallelic mutations in COQ4. The precise function of human COQ4 is not known, but it seems to play a structural role in stabilizing a multiheteromeric complex that contains most of the CoQ(10) biosynthetic enzymes. The clinical phenotypes of the five subjects varied widely, but four had a prenatal or perinatal onset with early fatal outcome. Two unrelated individuals presented with severe hypotonia, bradycardia, respiratory insufficiency, and heart failure; two sisters showed antenatal cerebellar hypoplasia, neonatal respiratory-distress syndrome, and epileptic encephalopathy. The fifth subject had an early-onset but slowly progressive clinical course dominated by neurological deterioration with hardly any involvement of other organs. All available specimens from affected subjects showed reduced amounts of CoQ(10) and often displayed a decrease in CoQ(10)-dependent ETC complex activities. The pathogenic role of all identified mutations was experimentally validated in a recombinant yeast model; oxidative growth, strongly impaired in strains lacking COQ4, was corrected by expression of human wild-type COQ4 cDNA but failed to be corrected by expression of COQ4 cDNAs with any of the mutations identified in affected subjects. COQ4 mutations are responsible for early-onset mitochondrial diseases with heterogeneous clinical presentations and associated with CoQ10 deficiency.
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spelling pubmed-43202552015-08-05 COQ4 Mutations Cause a Broad Spectrum of Mitochondrial Disorders Associated with CoQ(10) Deficiency Brea-Calvo, Gloria Haack, Tobias B. Karall, Daniela Ohtake, Akira Invernizzi, Federica Carrozzo, Rosalba Kremer, Laura Dusi, Sabrina Fauth, Christine Scholl-Bürgi, Sabine Graf, Elisabeth Ahting, Uwe Resta, Nicoletta Laforgia, Nicola Verrigni, Daniela Okazaki, Yasushi Kohda, Masakazu Martinelli, Diego Freisinger, Peter Strom, Tim M. Meitinger, Thomas Lamperti, Costanza Lacson, Atilano Navas, Placido Mayr, Johannes A. Bertini, Enrico Murayama, Kei Zeviani, Massimo Prokisch, Holger Ghezzi, Daniele Am J Hum Genet Report Primary coenzyme Q10 (CoQ(10)) deficiencies are rare, clinically heterogeneous disorders caused by mutations in several genes encoding proteins involved in CoQ(10) biosynthesis. CoQ(10) is an essential component of the electron transport chain (ETC), where it shuttles electrons from complex I or II to complex III. By whole-exome sequencing, we identified five individuals carrying biallelic mutations in COQ4. The precise function of human COQ4 is not known, but it seems to play a structural role in stabilizing a multiheteromeric complex that contains most of the CoQ(10) biosynthetic enzymes. The clinical phenotypes of the five subjects varied widely, but four had a prenatal or perinatal onset with early fatal outcome. Two unrelated individuals presented with severe hypotonia, bradycardia, respiratory insufficiency, and heart failure; two sisters showed antenatal cerebellar hypoplasia, neonatal respiratory-distress syndrome, and epileptic encephalopathy. The fifth subject had an early-onset but slowly progressive clinical course dominated by neurological deterioration with hardly any involvement of other organs. All available specimens from affected subjects showed reduced amounts of CoQ(10) and often displayed a decrease in CoQ(10)-dependent ETC complex activities. The pathogenic role of all identified mutations was experimentally validated in a recombinant yeast model; oxidative growth, strongly impaired in strains lacking COQ4, was corrected by expression of human wild-type COQ4 cDNA but failed to be corrected by expression of COQ4 cDNAs with any of the mutations identified in affected subjects. COQ4 mutations are responsible for early-onset mitochondrial diseases with heterogeneous clinical presentations and associated with CoQ10 deficiency. Elsevier 2015-02-05 /pmc/articles/PMC4320255/ /pubmed/25658047 http://dx.doi.org/10.1016/j.ajhg.2014.12.023 Text en © 2015 The Authors http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/3.0/).
spellingShingle Report
Brea-Calvo, Gloria
Haack, Tobias B.
Karall, Daniela
Ohtake, Akira
Invernizzi, Federica
Carrozzo, Rosalba
Kremer, Laura
Dusi, Sabrina
Fauth, Christine
Scholl-Bürgi, Sabine
Graf, Elisabeth
Ahting, Uwe
Resta, Nicoletta
Laforgia, Nicola
Verrigni, Daniela
Okazaki, Yasushi
Kohda, Masakazu
Martinelli, Diego
Freisinger, Peter
Strom, Tim M.
Meitinger, Thomas
Lamperti, Costanza
Lacson, Atilano
Navas, Placido
Mayr, Johannes A.
Bertini, Enrico
Murayama, Kei
Zeviani, Massimo
Prokisch, Holger
Ghezzi, Daniele
COQ4 Mutations Cause a Broad Spectrum of Mitochondrial Disorders Associated with CoQ(10) Deficiency
title COQ4 Mutations Cause a Broad Spectrum of Mitochondrial Disorders Associated with CoQ(10) Deficiency
title_full COQ4 Mutations Cause a Broad Spectrum of Mitochondrial Disorders Associated with CoQ(10) Deficiency
title_fullStr COQ4 Mutations Cause a Broad Spectrum of Mitochondrial Disorders Associated with CoQ(10) Deficiency
title_full_unstemmed COQ4 Mutations Cause a Broad Spectrum of Mitochondrial Disorders Associated with CoQ(10) Deficiency
title_short COQ4 Mutations Cause a Broad Spectrum of Mitochondrial Disorders Associated with CoQ(10) Deficiency
title_sort coq4 mutations cause a broad spectrum of mitochondrial disorders associated with coq(10) deficiency
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4320255/
https://www.ncbi.nlm.nih.gov/pubmed/25658047
http://dx.doi.org/10.1016/j.ajhg.2014.12.023
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