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Clinical, biochemical, and genetic spectrum of seven patients with NFU1 deficiency

Disorders of the mitochondrial energy metabolism are clinically and genetically heterogeneous. An increasingly recognized subgroup is caused by defective mitochondrial iron–sulfur (Fe–S) cluster biosynthesis, with defects in 13 genes being linked to human disease to date. Mutations in three of them,...

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Autores principales: Ahting, Uwe, Mayr, Johannes A., Vanlander, Arnaud V., Hardy, Steven A., Santra, Saikat, Makowski, Christine, Alston, Charlotte L., Zimmermann, Franz A., Abela, Lucia, Plecko, Barbara, Rohrbach, Marianne, Spranger, Stephanie, Seneca, Sara, Rolinski, Boris, Hagendorff, Angela, Hempel, Maja, Sperl, Wolfgang, Meitinger, Thomas, Smet, Joél, Taylor, Robert W., Van Coster, Rudy, Freisinger, Peter, Prokisch, Holger, Haack, Tobias B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4394698/
https://www.ncbi.nlm.nih.gov/pubmed/25918518
http://dx.doi.org/10.3389/fgene.2015.00123
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author Ahting, Uwe
Mayr, Johannes A.
Vanlander, Arnaud V.
Hardy, Steven A.
Santra, Saikat
Makowski, Christine
Alston, Charlotte L.
Zimmermann, Franz A.
Abela, Lucia
Plecko, Barbara
Rohrbach, Marianne
Spranger, Stephanie
Seneca, Sara
Rolinski, Boris
Hagendorff, Angela
Hempel, Maja
Sperl, Wolfgang
Meitinger, Thomas
Smet, Joél
Taylor, Robert W.
Van Coster, Rudy
Freisinger, Peter
Prokisch, Holger
Haack, Tobias B.
author_facet Ahting, Uwe
Mayr, Johannes A.
Vanlander, Arnaud V.
Hardy, Steven A.
Santra, Saikat
Makowski, Christine
Alston, Charlotte L.
Zimmermann, Franz A.
Abela, Lucia
Plecko, Barbara
Rohrbach, Marianne
Spranger, Stephanie
Seneca, Sara
Rolinski, Boris
Hagendorff, Angela
Hempel, Maja
Sperl, Wolfgang
Meitinger, Thomas
Smet, Joél
Taylor, Robert W.
Van Coster, Rudy
Freisinger, Peter
Prokisch, Holger
Haack, Tobias B.
author_sort Ahting, Uwe
collection PubMed
description Disorders of the mitochondrial energy metabolism are clinically and genetically heterogeneous. An increasingly recognized subgroup is caused by defective mitochondrial iron–sulfur (Fe–S) cluster biosynthesis, with defects in 13 genes being linked to human disease to date. Mutations in three of them, NFU1, BOLA3, and IBA57, affect the assembly of mitochondrial [4Fe–4S] proteins leading to an impairment of diverse mitochondrial metabolic pathways and ATP production. Patients with defects in these three genes present with lactic acidosis, hyperglycinemia, and reduced activities of respiratory chain complexes I and II, the four lipoic acid-dependent 2-oxoacid dehydrogenases and the glycine cleavage system (GCS). To date, five different NFU1 pathogenic variants have been reported in 15 patients from 12 families. We report on seven new patients from five families carrying compound heterozygous or homozygous pathogenic NFU1 mutations identified by candidate gene screening and exome sequencing. Six out of eight different disease alleles were novel and functional studies were performed to support the pathogenicity of five of them. Characteristic clinical features included fatal infantile encephalopathy and pulmonary hypertension leading to death within the first 6 months of life in six out of seven patients. Laboratory investigations revealed combined defects of pyruvate dehydrogenase complex (five out of five) and respiratory chain complexes I and II+III (four out of five) in skeletal muscle and/or cultured skin fibroblasts as well as increased lactate (five out of six) and glycine concentration (seven out of seven). Our study contributes to a better definition of the phenotypic spectrum associated with NFU1 mutations and to the diagnostic workup of future patients.
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spelling pubmed-43946982015-04-27 Clinical, biochemical, and genetic spectrum of seven patients with NFU1 deficiency Ahting, Uwe Mayr, Johannes A. Vanlander, Arnaud V. Hardy, Steven A. Santra, Saikat Makowski, Christine Alston, Charlotte L. Zimmermann, Franz A. Abela, Lucia Plecko, Barbara Rohrbach, Marianne Spranger, Stephanie Seneca, Sara Rolinski, Boris Hagendorff, Angela Hempel, Maja Sperl, Wolfgang Meitinger, Thomas Smet, Joél Taylor, Robert W. Van Coster, Rudy Freisinger, Peter Prokisch, Holger Haack, Tobias B. Front Genet Genetics Disorders of the mitochondrial energy metabolism are clinically and genetically heterogeneous. An increasingly recognized subgroup is caused by defective mitochondrial iron–sulfur (Fe–S) cluster biosynthesis, with defects in 13 genes being linked to human disease to date. Mutations in three of them, NFU1, BOLA3, and IBA57, affect the assembly of mitochondrial [4Fe–4S] proteins leading to an impairment of diverse mitochondrial metabolic pathways and ATP production. Patients with defects in these three genes present with lactic acidosis, hyperglycinemia, and reduced activities of respiratory chain complexes I and II, the four lipoic acid-dependent 2-oxoacid dehydrogenases and the glycine cleavage system (GCS). To date, five different NFU1 pathogenic variants have been reported in 15 patients from 12 families. We report on seven new patients from five families carrying compound heterozygous or homozygous pathogenic NFU1 mutations identified by candidate gene screening and exome sequencing. Six out of eight different disease alleles were novel and functional studies were performed to support the pathogenicity of five of them. Characteristic clinical features included fatal infantile encephalopathy and pulmonary hypertension leading to death within the first 6 months of life in six out of seven patients. Laboratory investigations revealed combined defects of pyruvate dehydrogenase complex (five out of five) and respiratory chain complexes I and II+III (four out of five) in skeletal muscle and/or cultured skin fibroblasts as well as increased lactate (five out of six) and glycine concentration (seven out of seven). Our study contributes to a better definition of the phenotypic spectrum associated with NFU1 mutations and to the diagnostic workup of future patients. Frontiers Media S.A. 2015-04-13 /pmc/articles/PMC4394698/ /pubmed/25918518 http://dx.doi.org/10.3389/fgene.2015.00123 Text en Copyright © 2015 Ahting, Mayr, Vanlander, Hardy, Santra, Makowski, Alston, Zimmermann, Abela, Plecko, Rohrbach, Spranger, Seneca, Rolinski, Hagendorff, Hempel, Sperl, Meitinger, Smet, Taylor, Van Coster, Freisinger, Prokisch and Haack. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Genetics
Ahting, Uwe
Mayr, Johannes A.
Vanlander, Arnaud V.
Hardy, Steven A.
Santra, Saikat
Makowski, Christine
Alston, Charlotte L.
Zimmermann, Franz A.
Abela, Lucia
Plecko, Barbara
Rohrbach, Marianne
Spranger, Stephanie
Seneca, Sara
Rolinski, Boris
Hagendorff, Angela
Hempel, Maja
Sperl, Wolfgang
Meitinger, Thomas
Smet, Joél
Taylor, Robert W.
Van Coster, Rudy
Freisinger, Peter
Prokisch, Holger
Haack, Tobias B.
Clinical, biochemical, and genetic spectrum of seven patients with NFU1 deficiency
title Clinical, biochemical, and genetic spectrum of seven patients with NFU1 deficiency
title_full Clinical, biochemical, and genetic spectrum of seven patients with NFU1 deficiency
title_fullStr Clinical, biochemical, and genetic spectrum of seven patients with NFU1 deficiency
title_full_unstemmed Clinical, biochemical, and genetic spectrum of seven patients with NFU1 deficiency
title_short Clinical, biochemical, and genetic spectrum of seven patients with NFU1 deficiency
title_sort clinical, biochemical, and genetic spectrum of seven patients with nfu1 deficiency
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4394698/
https://www.ncbi.nlm.nih.gov/pubmed/25918518
http://dx.doi.org/10.3389/fgene.2015.00123
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