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NDUFB8 Mutations Cause Mitochondrial Complex I Deficiency in Individuals with Leigh-like Encephalomyopathy

Authors :
Agnès Rötig
Sylvain Hanein
René G. Feichtinger
Lavinija Mataković
Joanna Trubicka
Giulia Barcia
Eliška Koňaříková
Agnieszka Pollak
Rafał Płoski
Elżbieta Ciara
Johannes A. Mayr
Mirjana Gusic
Katarzyna Iwanicka-Pronicka
Wolfgang Sperl
Saskia B. Wortmann
Piotr Stawiński
Zahra Assouline
Ewa Pronicka
Dariusz Rokicki
Elżbieta Jurkiewicz
Andreas Koller
Piotr Gasperowicz
Dorota Piekutowska-Abramczuk
Holger Prokisch
Source :
Am. J. Hum. Genet. 102, 460-467 (2018)
Publication Year :
2017

Abstract

Respiratory chain complex I deficiency is the most frequently identified biochemical defect in childhood mitochondrial diseases. Clinical symptoms range from fatal infantile lactic acidosis to Leigh syndrome and other encephalomyopathies or cardiomyopathies. To date, disease-causing variants in genes coding for 27 complex I subunits, including 7 mitochondrial DNA genes, and in 11 genes encoding complex I assembly factors have been reported. Here, we describe rare biallelic variants in NDUFB8 encoding a complex I accessory subunit revealed by whole-exome sequencing in two individuals from two families. Both presented with a progressive course of disease with encephalo(cardio) myopathic features including muscular hypotonia, cardiac hypertrophy, respiratory failure, failure to thrive, and developmental delay. Blood lactate was elevated. Neuroimaging disclosed progressive changes in the basal ganglia and either brain stem or internal capsule. Biochemical analyses showed an isolated decrease in complex I enzymatic activity in muscle and fibroblasts. Complementation studies by expression of wild-type NDUFB8 in cells from affected individuals restored mitochondrial function, confirming NDUFB8 variants as the cause of complex I deficiency. Hereby we establish NDUFB8 as a relevant gene in childhood-onset mitochondrial disease.

Details

ISSN :
15376605
Volume :
102
Issue :
3
Database :
OpenAIRE
Journal :
American journal of human genetics
Accession number :
edsair.doi.dedup.....e5f8b37b1ac831e700c4622beed43b3e