Literature DB >> 31883641

Bi-Allelic UQCRFS1 Variants Are Associated with Mitochondrial Complex III Deficiency, Cardiomyopathy, and Alopecia Totalis.

Mirjana Gusic1, Gudrun Schottmann2, René G Feichtinger3, Chen Du4, Caroline Scholz4, Matias Wagner5, Johannes A Mayr3, Chae-Young Lee2, Vicente A Yépez6, Norbert Lorenz7, Susanne Morales-Gonzalez2, Daan M Panneman8, Agnès Rötig9, Richard J T Rodenburg8, Saskia B Wortmann10, Holger Prokisch1, Markus Schuelke11.   

Abstract

Isolated complex III (CIII) deficiencies are among the least frequently diagnosed mitochondrial disorders. Clinical symptoms range from isolated myopathy to severe multi-systemic disorders with early death and disability. To date, we know of pathogenic variants in genes encoding five out of 10 subunits and five out of 13 assembly factors of CIII. Here we describe rare bi-allelic variants in the gene of a catalytic subunit of CIII, UQCRFS1, which encodes the Rieske iron-sulfur protein, in two unrelated individuals. Affected children presented with low CIII activity in fibroblasts, lactic acidosis, fetal bradycardia, hypertrophic cardiomyopathy, and alopecia totalis. Studies in proband-derived fibroblasts showed a deleterious effect of the variants on UQCRFS1 protein abundance, mitochondrial import, CIII assembly, and cellular respiration. Complementation studies via lentiviral transduction and overexpression of wild-type UQCRFS1 restored mitochondrial function and rescued the cellular phenotype, confirming UQCRFS1 variants as causative for CIII deficiency. We demonstrate that mutations in UQCRFS1 can cause mitochondrial disease, and our results thereby expand the clinical and mutational spectrum of CIII deficiencies.
Copyright © 2019 American Society of Human Genetics. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Q-cycle; Rieske iron-sulfur protein; alopecia; cardiomyopathy; microscale respiratory; mitochondrial complex III deficiency; mitochondrial import sequence; mitochondriopathy; mutation

Mesh:

Substances:

Year:  2019        PMID: 31883641      PMCID: PMC7042493          DOI: 10.1016/j.ajhg.2019.12.005

Source DB:  PubMed          Journal:  Am J Hum Genet        ISSN: 0002-9297            Impact factor:   11.025


  12 in total

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6.  Characterising a homozygous two-exon deletion in UQCRH: comparing human and mouse phenotypes.

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Review 9.  Blackout in the powerhouse: clinical phenotypes associated with defects in the assembly of OXPHOS complexes and the mitoribosome.

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