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Mutations in APOPT1, Encoding a Mitochondrial Protein, Cause Cavitating Leukoencephalopathy with Cytochrome c Oxidase Deficiency

Cytochrome c oxidase (COX) deficiency is a frequent biochemical abnormality in mitochondrial disorders, but a large fraction of cases remains genetically undetermined. Whole-exome sequencing led to the identification of APOPT1 mutations in two Italian sisters and in a third Turkish individual presen...

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Autores principales: Melchionda, Laura, Haack, Tobias B., Hardy, Steven, Abbink, Truus E.M., Fernandez-Vizarra, Erika, Lamantea, Eleonora, Marchet, Silvia, Morandi, Lucia, Moggio, Maurizio, Carrozzo, Rosalba, Torraco, Alessandra, Diodato, Daria, Strom, Tim M., Meitinger, Thomas, Tekturk, Pinar, Yapici, Zuhal, Al-Murshedi, Fathiya, Stevens, René, Rodenburg, Richard J., Lamperti, Costanza, Ardissone, Anna, Moroni, Isabella, Uziel, Graziella, Prokisch, Holger, Taylor, Robert W., Bertini, Enrico, van der Knaap, Marjo S., Ghezzi, Daniele, Zeviani, Massimo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4157140/
https://www.ncbi.nlm.nih.gov/pubmed/25175347
http://dx.doi.org/10.1016/j.ajhg.2014.08.003
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author Melchionda, Laura
Haack, Tobias B.
Hardy, Steven
Abbink, Truus E.M.
Fernandez-Vizarra, Erika
Lamantea, Eleonora
Marchet, Silvia
Morandi, Lucia
Moggio, Maurizio
Carrozzo, Rosalba
Torraco, Alessandra
Diodato, Daria
Strom, Tim M.
Meitinger, Thomas
Tekturk, Pinar
Yapici, Zuhal
Al-Murshedi, Fathiya
Stevens, René
Rodenburg, Richard J.
Lamperti, Costanza
Ardissone, Anna
Moroni, Isabella
Uziel, Graziella
Prokisch, Holger
Taylor, Robert W.
Bertini, Enrico
van der Knaap, Marjo S.
Ghezzi, Daniele
Zeviani, Massimo
author_facet Melchionda, Laura
Haack, Tobias B.
Hardy, Steven
Abbink, Truus E.M.
Fernandez-Vizarra, Erika
Lamantea, Eleonora
Marchet, Silvia
Morandi, Lucia
Moggio, Maurizio
Carrozzo, Rosalba
Torraco, Alessandra
Diodato, Daria
Strom, Tim M.
Meitinger, Thomas
Tekturk, Pinar
Yapici, Zuhal
Al-Murshedi, Fathiya
Stevens, René
Rodenburg, Richard J.
Lamperti, Costanza
Ardissone, Anna
Moroni, Isabella
Uziel, Graziella
Prokisch, Holger
Taylor, Robert W.
Bertini, Enrico
van der Knaap, Marjo S.
Ghezzi, Daniele
Zeviani, Massimo
author_sort Melchionda, Laura
collection PubMed
description Cytochrome c oxidase (COX) deficiency is a frequent biochemical abnormality in mitochondrial disorders, but a large fraction of cases remains genetically undetermined. Whole-exome sequencing led to the identification of APOPT1 mutations in two Italian sisters and in a third Turkish individual presenting severe COX deficiency. All three subjects presented a distinctive brain MRI pattern characterized by cavitating leukodystrophy, predominantly in the posterior region of the cerebral hemispheres. We then found APOPT1 mutations in three additional unrelated children, selected on the basis of these particular MRI features. All identified mutations predicted the synthesis of severely damaged protein variants. The clinical features of the six subjects varied widely from acute neurometabolic decompensation in late infancy to subtle neurological signs, which appeared in adolescence; all presented a chronic, long-surviving clinical course. We showed that APOPT1 is targeted to and localized within mitochondria by an N-terminal mitochondrial targeting sequence that is eventually cleaved off from the mature protein. We then showed that APOPT1 is virtually absent in fibroblasts cultured in standard conditions, but its levels increase by inhibiting the proteasome or after oxidative challenge. Mutant fibroblasts showed reduced amount of COX holocomplex and higher levels of reactive oxygen species, which both shifted toward control values by expressing a recombinant, wild-type APOPT1 cDNA. The shRNA-mediated knockdown of APOPT1 in myoblasts and fibroblasts caused dramatic decrease in cell viability. APOPT1 mutations are responsible for infantile or childhood-onset mitochondrial disease, hallmarked by the combination of profound COX deficiency with a distinctive neuroimaging presentation.
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spelling pubmed-41571402015-01-08 Mutations in APOPT1, Encoding a Mitochondrial Protein, Cause Cavitating Leukoencephalopathy with Cytochrome c Oxidase Deficiency Melchionda, Laura Haack, Tobias B. Hardy, Steven Abbink, Truus E.M. Fernandez-Vizarra, Erika Lamantea, Eleonora Marchet, Silvia Morandi, Lucia Moggio, Maurizio Carrozzo, Rosalba Torraco, Alessandra Diodato, Daria Strom, Tim M. Meitinger, Thomas Tekturk, Pinar Yapici, Zuhal Al-Murshedi, Fathiya Stevens, René Rodenburg, Richard J. Lamperti, Costanza Ardissone, Anna Moroni, Isabella Uziel, Graziella Prokisch, Holger Taylor, Robert W. Bertini, Enrico van der Knaap, Marjo S. Ghezzi, Daniele Zeviani, Massimo Am J Hum Genet Report Cytochrome c oxidase (COX) deficiency is a frequent biochemical abnormality in mitochondrial disorders, but a large fraction of cases remains genetically undetermined. Whole-exome sequencing led to the identification of APOPT1 mutations in two Italian sisters and in a third Turkish individual presenting severe COX deficiency. All three subjects presented a distinctive brain MRI pattern characterized by cavitating leukodystrophy, predominantly in the posterior region of the cerebral hemispheres. We then found APOPT1 mutations in three additional unrelated children, selected on the basis of these particular MRI features. All identified mutations predicted the synthesis of severely damaged protein variants. The clinical features of the six subjects varied widely from acute neurometabolic decompensation in late infancy to subtle neurological signs, which appeared in adolescence; all presented a chronic, long-surviving clinical course. We showed that APOPT1 is targeted to and localized within mitochondria by an N-terminal mitochondrial targeting sequence that is eventually cleaved off from the mature protein. We then showed that APOPT1 is virtually absent in fibroblasts cultured in standard conditions, but its levels increase by inhibiting the proteasome or after oxidative challenge. Mutant fibroblasts showed reduced amount of COX holocomplex and higher levels of reactive oxygen species, which both shifted toward control values by expressing a recombinant, wild-type APOPT1 cDNA. The shRNA-mediated knockdown of APOPT1 in myoblasts and fibroblasts caused dramatic decrease in cell viability. APOPT1 mutations are responsible for infantile or childhood-onset mitochondrial disease, hallmarked by the combination of profound COX deficiency with a distinctive neuroimaging presentation. Elsevier 2014-09-04 /pmc/articles/PMC4157140/ /pubmed/25175347 http://dx.doi.org/10.1016/j.ajhg.2014.08.003 Text en © 2014 The Authors http://creativecommons.org/licenses/by/3.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Report
Melchionda, Laura
Haack, Tobias B.
Hardy, Steven
Abbink, Truus E.M.
Fernandez-Vizarra, Erika
Lamantea, Eleonora
Marchet, Silvia
Morandi, Lucia
Moggio, Maurizio
Carrozzo, Rosalba
Torraco, Alessandra
Diodato, Daria
Strom, Tim M.
Meitinger, Thomas
Tekturk, Pinar
Yapici, Zuhal
Al-Murshedi, Fathiya
Stevens, René
Rodenburg, Richard J.
Lamperti, Costanza
Ardissone, Anna
Moroni, Isabella
Uziel, Graziella
Prokisch, Holger
Taylor, Robert W.
Bertini, Enrico
van der Knaap, Marjo S.
Ghezzi, Daniele
Zeviani, Massimo
Mutations in APOPT1, Encoding a Mitochondrial Protein, Cause Cavitating Leukoencephalopathy with Cytochrome c Oxidase Deficiency
title Mutations in APOPT1, Encoding a Mitochondrial Protein, Cause Cavitating Leukoencephalopathy with Cytochrome c Oxidase Deficiency
title_full Mutations in APOPT1, Encoding a Mitochondrial Protein, Cause Cavitating Leukoencephalopathy with Cytochrome c Oxidase Deficiency
title_fullStr Mutations in APOPT1, Encoding a Mitochondrial Protein, Cause Cavitating Leukoencephalopathy with Cytochrome c Oxidase Deficiency
title_full_unstemmed Mutations in APOPT1, Encoding a Mitochondrial Protein, Cause Cavitating Leukoencephalopathy with Cytochrome c Oxidase Deficiency
title_short Mutations in APOPT1, Encoding a Mitochondrial Protein, Cause Cavitating Leukoencephalopathy with Cytochrome c Oxidase Deficiency
title_sort mutations in apopt1, encoding a mitochondrial protein, cause cavitating leukoencephalopathy with cytochrome c oxidase deficiency
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4157140/
https://www.ncbi.nlm.nih.gov/pubmed/25175347
http://dx.doi.org/10.1016/j.ajhg.2014.08.003
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