Mutations in Complex I Assembly Factor TMEM126B Result in Muscle Weakness and Isolated Complex I Deficiency
Author(s) -
Laura SánchezCaballero,
Benedetta Ruzzenente,
L Bianchi,
Zahra Assouline,
Giulia Barcia,
Metodi D. Metodiev,
Marlène Rio,
Benoît Funalot,
Mariël A.M. van den Brand,
Sergio GuerreroCastillo,
J. Molenaar,
David A. Koolen,
Ulrich Brandt,
Richard J. Rodenburg,
Leo Nijtmans,
Agnès Rötig
Publication year - 2016
Publication title -
the american journal of human genetics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.661
H-Index - 302
eISSN - 1537-6605
pISSN - 0002-9297
DOI - 10.1016/j.ajhg.2016.05.022
Subject(s) - weakness , muscle weakness , factor (programming language) , genetics , mutation , medicine , biology , physical medicine and rehabilitation , anatomy , computer science , gene , programming language
Mitochondrial complex I deficiency results in a plethora of often severe clinical phenotypes manifesting in early childhood. Here, we report on three complex-I-deficient adult subjects with relatively mild clinical symptoms, including isolated, progressive exercise-induced myalgia and exercise intolerance but with normal later development. Exome sequencing and targeted exome sequencing revealed compound-heterozygous mutations in TMEM126B, encoding a complex I assembly factor. Further biochemical analysis of subject fibroblasts revealed a severe complex I deficiency caused by defective assembly. Lentiviral complementation with the wild-type cDNA restored the complex I deficiency, demonstrating the pathogenic nature of these mutations. Further complexome analysis of one subject indicated that the complex I assembly defect occurred during assembly of its membrane module. Our results show that TMEM126B defects can lead to complex I deficiencies and, interestingly, that symptoms can occur only after exercise.
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