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Human COQ4 deficiency: Delineating the clinical, metabolic and neuroimaging phenotypes

Authors :
Tobias B. Haack
Felix Distelmaier
Penelope E. Bonnen
Parag M Tamhankar
Pascal Joset
Anita Rauch
Amelie J. Müller
Karim Daliri
Katharina Steindl
Gessica Vasco
Imke Kienzle
Samuel Groeschel
Annette Seibt
S. Leiz
Rebecca Buchert
Ingeborg Krägeloh-Mann
Susana Peralta
Ertan Mayatepek
Vasundhara Tamhankar
Ruth Falb
Ahmet Okay Caglayan
Matias Wagner
Pegah Katibeh
Diran Herebian
Lucia Laugwitz
Jan Kern
Robert Steinfeld
Darja Gauck
Margit Burmeister
Tawfiq Froukh
Hakan Gümüş
Diego Martinelli
Fabian Baertling
Stefanie Beck-Woedel
Katharina Danhauser
Mona Grimmel
Viola Alesi
Source :
J. Med. Genet. 59, 878–887 (2022), J Med Genet
Publication Year :
2022
Publisher :
Bmj Publishing Group, 2022.

Abstract

BackgroundHuman coenzyme Q4 (COQ4) is essential for coenzyme Q10 (CoQ10) biosynthesis. Pathogenic variants in COQ4 cause childhood-onset neurodegeneration. We aimed to delineate the clinical spectrum and the cellular consequences of COQ4 deficiency.MethodsClinical course and neuroradiological findings in a large cohort of paediatric patients with COQ4 deficiency were analysed. Functional studies in patient-derived cell lines were performed.ResultsWe characterised 44 individuals from 36 families with COQ4 deficiency (16 newly described). A total of 23 different variants were identified, including four novel variants in COQ4. Correlation analyses of clinical and neuroimaging findings revealed three disease patterns: type 1: early-onset phenotype with neonatal brain anomalies and epileptic encephalopathy; type 2: intermediate phenotype with distinct stroke-like lesions; and type 3: moderate phenotype with non-specific brain pathology and a stable disease course. The functional relevance of COQ4 variants was supported by in vitro studies using patient-derived fibroblast lines. Experiments revealed significantly decreased COQ4 protein levels, reduced levels of cellular CoQ10 and elevated levels of the metabolic intermediate 6-demethoxyubiquinone.ConclusionOur study describes the heterogeneous clinical presentation of COQ4 deficiency and identifies phenotypic subtypes. Cell-based studies support the pathogenic characteristics of COQ4 variants. Due to the insufficient clinical response to oral CoQ10 supplementation, alternative treatment strategies are warranted.

Details

Language :
English
Database :
OpenAIRE
Journal :
J. Med. Genet. 59, 878–887 (2022), J Med Genet
Accession number :
edsair.doi.dedup.....e0d760564b3657f43ae9c7926a5f7da3