Homozygous COQ7 mutation: a new cause of potentially treatable distal hereditary motor neuropathy

Author:

Jacquier Arnaud12,Theuriet Julian13,Fontaine Fanny4,Mosbach Valentine1,Lacoste Nicolas1,Ribault Shams15,Risson Valérie1,Carras Julien1,Coudert Laurent1,Simonet Thomas1,Latour Philippe16,Stojkovic Tanya7,Piard Juliette89,Cosson Anne10,Lesca Gaëtan11,Bouhour Françoise13,Allouche Stéphane4,Puccio Hélène1,Pegat Antoine13,Schaeffer Laurent12ORCID

Affiliation:

1. Pathophysiology and Genetics of Neuron and Muscle, CNRS UMR 5261, INSERM U1315, Université Lyon1, Faculté de Médecine Lyon Est , Lyon , France

2. Centre de Biotechnologie Cellulaire, CBC Biotec, CHU de Lyon—Hospices Civils de Lyon (HCL) groupement Est , Bron , France

3. Hôpital Neurologique Pierre Wertheimer, Service d’électroneuromyographie et de pathologies neuromusculaires, CHU de Lyon—Hospices Civils de Lyon (HCL) groupement Est , Bron , France

4. Service de Biochimie, CHU de Caen, UMRS 1237 PhIND, Université de Caen , Caen , France

5. Hôpital Henry Gabrielle, Service de Médecine Physique et de Réadaptation, CHU de Lyon—Hospices Civils de Lyon (HCL) , Saint-Genis-Laval , France

6. Unité fonctionnelle de neurogénétique moléculaire, CHU de Lyon—Hospices Civils de Lyon (HCL) groupement Est , Bron , France

7. Institut de Myologie, Hôpital Pitié-Salpêtrière, Assistance Publique des Hôpitaux de Paris (APHP) , Paris , France

8. Centre de Génétique Humaine, CHU , Besançon , France

9. UMR-Inserm 1231 GAD, Génétique des Anomalies du Développement, Université de Bourgogne Franche-Comté , Dijon , France

10. Neurologie Électrophysiologie Clinique, CHU Jean-Minjoz , Besançon , France

11. Service de génétique, CHU de Lyon—Hospices Civils de Lyon (HCL) groupement Est , Bron , France

Abstract

Abstract Distal hereditary motor neuropathy represents a group of motor inherited neuropathies leading to distal weakness. We report a family of two brothers and a sister affected by distal hereditary motor neuropathy in whom a homozygous variant c.3G>T (p.1Met?) was identified in the COQ7 gene. This gene encodes a protein required for coenzyme Q10 biosynthesis, a component of the respiratory chain in mitochondria. Mutations of COQ7 were previously associated with severe multi-organ disorders characterized by early childhood onset and developmental delay. Using patient blood samples and fibroblasts derived from a skin biopsy, we investigated the pathogenicity of the variant of unknown significance c.3G>T (p.1Met?) in the COQ7 gene and the effect of coenzyme Q10 supplementation in vitro. We showed that this variation leads to a severe decrease in COQ7 protein levels in the patient’s fibroblasts, resulting in a decrease in coenzyme Q10 production and in the accumulation of 6-demethoxycoenzyme Q10, the COQ7 substrate. Interestingly, such accumulation was also found in the patient’s plasma. Normal coenzyme Q10 and 6-demethoxycoenzyme Q10 levels were restored in vitro by using the coenzyme Q10 precursor 2,4-dihydroxybenzoic acid, thus bypassing the COQ7 requirement. Coenzyme Q10 biosynthesis deficiency is known to impair the mitochondrial respiratory chain. Seahorse experiments showed that the patient’s cells mainly rely on glycolysis to maintain sufficient ATP production. Consistently, the replacement of glucose by galactose in the culture medium of these cells reduced their proliferation rate. Interestingly, normal proliferation was restored by coenzyme Q10 supplementation of the culture medium, suggesting a therapeutic avenue for these patients. Altogether, we have identified the first example of recessive distal hereditary motor neuropathy caused by a homozygous variation in the COQ7 gene, which should thus be included in the gene panels used to diagnose peripheral inherited neuropathies. Furthermore, 6-demethoxycoenzyme Q10 accumulation in the blood can be used to confirm the pathogenic nature of the mutation. Finally, supplementation with coenzyme Q10 or derivatives should be considered to prevent the progression of COQ7-related peripheral inherited neuropathy in diagnosed patients.

Funder

Association pour le Développement de la Neurogénétique

Fondation pour la Recherche Médicale

Société Francophone du Nerf Périphérique

AFM Téléthon

equipe FRM

Publisher

Oxford University Press (OUP)

Subject

Neurology (clinical)

Reference29 articles.

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