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Human COQ4 deficiency: Delineating the clinical, metabolic and neuroimaging phenotypes
- 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.
- Subjects :
- Nervous System Diseases
Pediatrics
Epilepsy
Early Diagnosis
Ubiquinone
Neurodegeneration
Cell
Infant, Newborn
Neuroimaging
Biology
medicine.disease
Bioinformatics
Phenotype
Article
In vitro
Cell Line
Mitochondrial Proteins
medicine.anatomical_structure
Cell culture
Genetics
medicine
Humans
Child
Fibroblast
Genetics (clinical)
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- J. Med. Genet. 59, 878–887 (2022), J Med Genet
- Accession number :
- edsair.doi.dedup.....e0d760564b3657f43ae9c7926a5f7da3