Cargando…

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

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...

Descripción completa

Detalles Bibliográficos
Autores principales: Jacquier, Arnaud, Theuriet, Julian, Fontaine, Fanny, Mosbach, Valentine, Lacoste, Nicolas, Ribault, Shams, Risson, Valérie, Carras, Julien, Coudert, Laurent, Simonet, Thomas, Latour, Philippe, Stojkovic, Tanya, Piard, Juliette, Cosson, Anne, Lesca, Gaëtan, Bouhour, Françoise, Allouche, Stéphane, Puccio, Hélène, Pegat, Antoine, Schaeffer, Laurent
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10393394/
https://www.ncbi.nlm.nih.gov/pubmed/36454683
http://dx.doi.org/10.1093/brain/awac453
_version_ 1785083148067930112
author Jacquier, Arnaud
Theuriet, Julian
Fontaine, Fanny
Mosbach, Valentine
Lacoste, Nicolas
Ribault, Shams
Risson, Valérie
Carras, Julien
Coudert, Laurent
Simonet, Thomas
Latour, Philippe
Stojkovic, Tanya
Piard, Juliette
Cosson, Anne
Lesca, Gaëtan
Bouhour, Françoise
Allouche, Stéphane
Puccio, Hélène
Pegat, Antoine
Schaeffer, Laurent
author_facet Jacquier, Arnaud
Theuriet, Julian
Fontaine, Fanny
Mosbach, Valentine
Lacoste, Nicolas
Ribault, Shams
Risson, Valérie
Carras, Julien
Coudert, Laurent
Simonet, Thomas
Latour, Philippe
Stojkovic, Tanya
Piard, Juliette
Cosson, Anne
Lesca, Gaëtan
Bouhour, Françoise
Allouche, Stéphane
Puccio, Hélène
Pegat, Antoine
Schaeffer, Laurent
author_sort Jacquier, Arnaud
collection PubMed
description 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.
format Online
Article
Text
id pubmed-10393394
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-103933942023-08-02 Homozygous COQ7 mutation: a new cause of potentially treatable distal hereditary motor neuropathy Jacquier, Arnaud Theuriet, Julian Fontaine, Fanny Mosbach, Valentine Lacoste, Nicolas Ribault, Shams Risson, Valérie Carras, Julien Coudert, Laurent Simonet, Thomas Latour, Philippe Stojkovic, Tanya Piard, Juliette Cosson, Anne Lesca, Gaëtan Bouhour, Françoise Allouche, Stéphane Puccio, Hélène Pegat, Antoine Schaeffer, Laurent Brain Original Article 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. Oxford University Press 2022-12-01 /pmc/articles/PMC10393394/ /pubmed/36454683 http://dx.doi.org/10.1093/brain/awac453 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of the Guarantors of Brain. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Original Article
Jacquier, Arnaud
Theuriet, Julian
Fontaine, Fanny
Mosbach, Valentine
Lacoste, Nicolas
Ribault, Shams
Risson, Valérie
Carras, Julien
Coudert, Laurent
Simonet, Thomas
Latour, Philippe
Stojkovic, Tanya
Piard, Juliette
Cosson, Anne
Lesca, Gaëtan
Bouhour, Françoise
Allouche, Stéphane
Puccio, Hélène
Pegat, Antoine
Schaeffer, Laurent
Homozygous COQ7 mutation: a new cause of potentially treatable distal hereditary motor neuropathy
title Homozygous COQ7 mutation: a new cause of potentially treatable distal hereditary motor neuropathy
title_full Homozygous COQ7 mutation: a new cause of potentially treatable distal hereditary motor neuropathy
title_fullStr Homozygous COQ7 mutation: a new cause of potentially treatable distal hereditary motor neuropathy
title_full_unstemmed Homozygous COQ7 mutation: a new cause of potentially treatable distal hereditary motor neuropathy
title_short Homozygous COQ7 mutation: a new cause of potentially treatable distal hereditary motor neuropathy
title_sort homozygous coq7 mutation: a new cause of potentially treatable distal hereditary motor neuropathy
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10393394/
https://www.ncbi.nlm.nih.gov/pubmed/36454683
http://dx.doi.org/10.1093/brain/awac453
work_keys_str_mv AT jacquierarnaud homozygouscoq7mutationanewcauseofpotentiallytreatabledistalhereditarymotorneuropathy
AT theurietjulian homozygouscoq7mutationanewcauseofpotentiallytreatabledistalhereditarymotorneuropathy
AT fontainefanny homozygouscoq7mutationanewcauseofpotentiallytreatabledistalhereditarymotorneuropathy
AT mosbachvalentine homozygouscoq7mutationanewcauseofpotentiallytreatabledistalhereditarymotorneuropathy
AT lacostenicolas homozygouscoq7mutationanewcauseofpotentiallytreatabledistalhereditarymotorneuropathy
AT ribaultshams homozygouscoq7mutationanewcauseofpotentiallytreatabledistalhereditarymotorneuropathy
AT rissonvalerie homozygouscoq7mutationanewcauseofpotentiallytreatabledistalhereditarymotorneuropathy
AT carrasjulien homozygouscoq7mutationanewcauseofpotentiallytreatabledistalhereditarymotorneuropathy
AT coudertlaurent homozygouscoq7mutationanewcauseofpotentiallytreatabledistalhereditarymotorneuropathy
AT simonetthomas homozygouscoq7mutationanewcauseofpotentiallytreatabledistalhereditarymotorneuropathy
AT latourphilippe homozygouscoq7mutationanewcauseofpotentiallytreatabledistalhereditarymotorneuropathy
AT stojkovictanya homozygouscoq7mutationanewcauseofpotentiallytreatabledistalhereditarymotorneuropathy
AT piardjuliette homozygouscoq7mutationanewcauseofpotentiallytreatabledistalhereditarymotorneuropathy
AT cossonanne homozygouscoq7mutationanewcauseofpotentiallytreatabledistalhereditarymotorneuropathy
AT lescagaetan homozygouscoq7mutationanewcauseofpotentiallytreatabledistalhereditarymotorneuropathy
AT bouhourfrancoise homozygouscoq7mutationanewcauseofpotentiallytreatabledistalhereditarymotorneuropathy
AT allouchestephane homozygouscoq7mutationanewcauseofpotentiallytreatabledistalhereditarymotorneuropathy
AT pucciohelene homozygouscoq7mutationanewcauseofpotentiallytreatabledistalhereditarymotorneuropathy
AT pegatantoine homozygouscoq7mutationanewcauseofpotentiallytreatabledistalhereditarymotorneuropathy
AT schaefferlaurent homozygouscoq7mutationanewcauseofpotentiallytreatabledistalhereditarymotorneuropathy