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FDXR Mutations Cause Sensorial Neuropathies and Expand the Spectrum of Mitochondrial Fe-S-Synthesis Diseases
Author(s) -
Antoine Paul,
Anthony Drecourt,
Floriane Petit,
D. Dupin Deguine,
Christelle Vasnier,
Myriam Oufadem,
Cécile Masson,
Crystel Bonnet,
Saber Masmoudi,
Isabelle Mosnier,
L. Mahieu,
D. Bouccara,
Josseline Kaplan,
Georges Challe,
C. Domange,
Fanny Mochel,
Olivier Sterkers,
S. Gerber,
Patrick Nitschké,
Christine BôleFeysot,
Laurence Jonard,
Souad Gherbi,
Oriane Mercati,
Ines Aïssa,
Stanislas Lyonnet,
Agnès Rötig,
Agnès Delahodde,
Sandrine Marlin
Publication year - 2017
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.2017.09.007
Subject(s) - biology , complementation , genetics , mutant , ferredoxin , exome sequencing , mutation , gene , biochemistry , enzyme
Hearing loss and visual impairment in childhood have mostly genetic origins, some of them being related to sensorial neuronal defects. Here, we report on eight subjects from four independent families affected by auditory neuropathy and optic atrophy. Whole-exome sequencing revealed biallelic mutations in FDXR in affected subjects of each family. FDXR encodes the mitochondrial ferredoxin reductase, the sole human ferredoxin reductase implicated in the biosynthesis of iron-sulfur clusters (ISCs) and in heme formation. ISC proteins are involved in enzymatic catalysis, gene expression, and DNA replication and repair. We observed deregulated iron homeostasis in FDXR mutant fibroblasts and indirect evidence of mitochondrial iron overload. Functional complementation in a yeast strain in which ARH1, the human FDXR ortholog, was deleted established the pathogenicity of these mutations. These data highlight the wide clinical heterogeneity of mitochondrial disorders related to ISC synthesis.

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