NDUFA10 mutations cause complex I deficiency in a patient with Leigh disease
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R. Rodenburg | J. Smeitink | L. Nijtmans | L. Heuvel | F. V. Spronsen | E. Lenssen | Saskia J G Hoefs
[1] Ια,et al. Energy Converting NADH : Quinone Oxidoreductase ( Complex I ) , 2012 .
[2] Rutger O. Vogel,et al. Acyl-CoA dehydrogenase 9 is required for the biogenesis of oxidative phosphorylation complex I. , 2010, Cell metabolism.
[3] M. Rivas,et al. Nature Genetics Advance Online Publication High-throughput, Pooled Sequencing Identifies Mutations in Nubpl and Foxred1 in Human Complex I Deficiency , 2022 .
[4] R. Rodenburg,et al. Novel mutations in the NDUFS1 gene cause low residual activities in human complex I deficiencies. , 2010, Molecular genetics and metabolism.
[5] Rouslan G. Efremov,et al. The architecture of respiratory complex I , 2010, Nature.
[6] R. Rodenburg,et al. Baculovirus complementation restores a novel NDUFAF2 mutation causing complex I deficiency , 2009, Human mutation.
[7] Rutger O. Vogel,et al. Mutations in NDUFAF3 (C3ORF60), encoding an NDUFAF4 (C6ORF66)-interacting complex I assembly protein, cause fatal neonatal mitochondrial disease. , 2009, American journal of human genetics.
[8] J. Smeitink,et al. Electrophoresis techniques to investigate defects in oxidative phosphorylation. , 2008, Methods.
[9] V. Mootha,et al. Mutation of C20orf7 disrupts complex I assembly and causes lethal neonatal mitochondrial disease. , 2008, American journal of human genetics.
[10] S. Carr,et al. A Mitochondrial Protein Compendium Elucidates Complex I Disease Biology , 2008, Cell.
[11] R. Rodenburg,et al. NDUFA2 complex I mutation leads to Leigh disease. , 2008, American journal of human genetics.
[12] Ann Saada,et al. Mitochondrial complex I deficiency caused by a deleterious NDUFA11 mutation , 2008, Annals of neurology.
[13] Ann Saada,et al. C6ORF66 is an assembly factor of mitochondrial complex I. , 2008, American journal of human genetics.
[14] J. Silke,et al. Human CIA30 is involved in the early assembly of mitochondrial complex I and mutations in its gene cause disease , 2007, The EMBO journal.
[15] M. Lazarou,et al. Analysis of the Assembly Profiles for Mitochondrial- and Nuclear-DNA-Encoded Subunits into Complex I , 2007, Molecular and Cellular Biology.
[16] Rutger O. Vogel,et al. Identification of Mitochondrial Complex I Assembly Intermediates by Tracing Tagged NDUFS3 Demonstrates the Entry Point of Mitochondrial Subunits* , 2007, Journal of Biological Chemistry.
[17] R. Rodenburg,et al. X‐linked NDUFA1 gene mutations associated with mitochondrial encephalomyopathy , 2007, Annals of neurology.
[18] J. Smeitink,et al. Mitochondrial complex I: Structure, function and pathology , 2006, Journal of Inherited Metabolic Disease.
[19] R. Rodenburg,et al. Measurement of the energy-generating capacity of human muscle mitochondria: diagnostic procedure and application to human pathology. , 2006, Clinical chemistry.
[20] E. Shoubridge,et al. A molecular chaperone for mitochondrial complex I assembly is mutated in a progressive encephalopathy. , 2005, The Journal of clinical investigation.
[21] B. Gibson,et al. Mass spectrometric identification of a novel phosphorylation site in subunit NDUFA10 of bovine mitochondrial complex I , 2005, FEBS letters.
[22] Robert W. Taylor,et al. NDUFS6 mutations are a novel cause of lethal neonatal mitochondrial complex I deficiency. , 2004, The Journal of clinical investigation.
[23] Wayne F. Patton,et al. Analysis of Steady-state Protein Phosphorylation in Mitochondria Using a Novel Fluorescent Phosphosensor Dye* , 2003, Journal of Biological Chemistry.
[24] N. Henderson,et al. Blue Native electrophoresis to study mitochondrial and other protein complexes. , 2002, Methods.
[25] J. Smeitink,et al. Human NADH:Ubiquinone Oxidoreductase , 2001, Journal of bioenergetics and biomembranes.
[26] S. Dimauro,et al. The genetics and pathology of oxidative phosphorylation , 2001, Nature Reviews Genetics.
[27] L. V. D. Heuvel,et al. Combined enzymatic complex I and III deficiency associated with mutations in the nuclear encoded NDUFS4 gene. , 2000, Biochemical and biophysical research communications.
[28] J. Walker,et al. Resolution of the membrane domain of bovine complex I into subcomplexes: implications for the structural organization of the enzyme. , 2000, Biochemistry.
[29] L. P. Van den Heuvel,et al. Isolated complex I deficiency in children: Clinical, biochemical and genetic aspects , 2000, Human mutation.
[30] Y. Hatefi,et al. The multiple nicotinamide nucleotide-binding subunits of bovine heart mitochondrial NADH:ubiquinone oxidoreductase (complex I). , 2000, European journal of biochemistry.
[31] E. Mariman,et al. Demonstration of a new pathogenic mutation in human complex I deficiency: a 5-bp duplication in the nuclear gene encoding the 18-kD (AQDQ) subunit. , 1998, American journal of human genetics.
[32] J. Walker,et al. Resolution of NADH:ubiquinone oxidoreductase from bovine heart mitochondria into two subcomplexes, one of which contains the redox centers of the enzyme. , 1992, Biochemistry.
[33] Shirley A. Miller,et al. A simple salting out procedure for extracting DNA from human nucleated cells. , 1988, Nucleic acids research.
[34] S. Chen,et al. Identification of the NADH-NAD+ transhydrogenase peptide of the mitochondrial NADH-CoQ reductase (Complex I). A photodependent labeling study utilizing arylazido-beta-alanyl NAD+. , 1984, The Journal of biological chemistry.