Coenzyme Q COQ , an essential cofactor in the electron-transport chain is involved in ATP production. Primary COQ deficiency is clinically and genetically a heterogeneous group of mitochondrial disorders caused by defects in the COQ synthesis pathway. Its mode of inheritance is autosomal recessive and it is characterized by metabolic abnormalities and multisystem involvement including neurological features. Mutations in 10 genes have been identified concerning this group of diseases, so far. Among those, variants of the COQ7 gene are very rare and confined to three patients with Asian ancestry. Here, we present the clinical features and results of whole-exome sequencing (WES) of three Iranian unrelated families affected by primary COQ deficiency. Three homozygous variants in COQ2, COQ4, and COQ7 genes were identified. Candidate variants of the COQ2 and COQ4 genes were novel and associated with the cerebellar signs and multisystem involvement, whereas, the known variant in COQ7 was associated with a mild phenotype that was initially diagnosed as hereditary spastic paraplegia (HSP). This variant has already been reported in a Canadian girl with similar presentations that also originated from Iran suggesting both patients may share a common ancestor. Due to extensive heterogeneity in this group of disorders, and overlap with other mitochondrial/neurological disorders, WES may be helpful to distinguish primary coenzyme Q deficiency from other similar conditions. Given that some features of primary coenzyme Q deficiency may improve with exogenous COQ , early diagnosis is very important.
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http://dx.doi.org/10.1002/ajmg.a.61983 | DOI Listing |
Front Biosci (Landmark Ed)
November 2024
Center for Biomedical Research, Ulm University, 89081 Ulm, Germany.
Background: Coenzyme Q (CoQ), also known as ubiquinone-10, is an important molecule of the mitochondrial respiratory chain that acts as an electron carrier between complexes I, II, and III and additionally functions as an antioxidant. Due to its bioenergetic properties, CoQ is of high interest for therapeutic and cosmetic use. This study aims to characterize the metabolic impact of CoQ on primary human dermal fibroblasts (HDF) using fluorescence lifetime imaging microscopy (FLIM) and electron microscopy.
View Article and Find Full Text PDFNeurol Genet
December 2024
From the Mitochondrial Research Group (A.W., S.R.), Genetics and Genomic Medicine Department, UCL Great Ormond Street Institute of Child Health, London; Medical Sciences Division (A.W.), University of Oxford; Department of Radiology (S.S.), Great Ormond Street Hospital for Children; Neurometabolic Unit (A.L., S.H.), National Hospital for Neurology and Neurosurgery; Department of Chemical Pathology, Great Ormond Street Hospital for Children; Neuromuscular Diseases (A.L.), Queen Square, UCL Institute of Neurology; Inborn Errors of Metabolism Section (J.I.R.C., P.M., S.H.), Genetics and Genomic Medicine Programme, UCL Great Ormond Street Institute of Child Health; National Institute for Health Research Great Ormond Street Hospital Biomedical Research Centre (P.G.), University College London; Metabolic Department (P.G., S.R.), Great Ormond Street Hospital for Children; North West Thames Regional Genetic Service (A.G.), North West London Hospitals; Neonatal Intensive Care Unit (J.K.), Luton and Dunstable University Hospital; and Department of Paediatric Neurology (J.H.), Great Ormond Street Hospital for Children NHS Foundation Trust, London, United Kingdom.
Background And Objectives: Disorders of coenzyme Q (CoQ) biosynthesis comprise a group of 11 clinically and genetically heterogeneous rare primary mitochondrial diseases. We sought to delineate clinical, biochemical, and neuroimaging features of these disorders, together with outcomes after oral CoQ supplementation and the utility of peripheral blood mononuclear cell (PBMNC) CoQ levels in monitoring therapy.
Methods: This was a retrospective cohort study, registered as an audit at a specialist pediatric hospital (Registration Number: 3318) of 14 patients with genetically confirmed CoQ biosynthesis deficiency, including 13 previously unreported cases.
Children with neurodevelopmental disorders, such as developmental coordination disorder (DCD), exhibit gross to fine sensorimotor impairments, reduced physical activity and interactions with the environment and people. This disorder co-exists with cognitive deficits, executive dysfunctions and learning impairments. Previously, we demonstrated in rats that limited amounts and atypical patterns of movements and somatosensory feedback during early movement restriction manifested in adulthood as degraded postural and locomotor abilities, and musculoskeletal histopathology, including muscle atrophy, hyperexcitability within sensorimotor circuitry and maladaptive cortical plasticity, leading to functional disorganization of the primary somatosensory and motor cortices in the absence of cortical histopathology.
View Article and Find Full Text PDFIntensive Care Med
November 2024
REA-REZO Infections et Antibiorésistance en Réanimation, Hôpital Henry Gabrielle, Saint-Genis-Laval, France.
Purpose: We aim to evaluate the association between central venous catheter (CVC) insertion site and microbiological CVC complications in a nationwide cohort.
Methods: This study was conducted using the healthcare-associated infection surveillance cohort "REA-REZO" involving 193 intensive care units (ICUs). All CVC inserted and removed during the same ICU stay between January 1st 2018 and December 31st 2022 were eligible but only those whose tips were sent for microbiological analysis were included.
J Inherit Metab Dis
September 2024
Departamento de Fisiología, Anatomía y Biología Celular, CABD, Universidad Pablo de Olavide, Sevilla, Spain.
The protein encoded by COQ7 is required for CoQ synthesis in humans, hydroxylating 3-demethoxyubiquinol (DMQ) in the second to last steps of the pathway. COQ7 mutations lead to a primary CoQ deficiency syndrome associated with a pleiotropic neurological disorder. This study shows the clinical, physiological, and molecular characterization of four new cases of CoQ primary deficiency caused by five mutations in COQ7, three of which have not yet been described, inducing mitochondrial dysfunction in all patients.
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