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Next-generation sequencing of Tunisian Leigh syndrome patients reveals novel variations: impact for diagnosis and treatment

Mitochondrial cytopathies, among which the Leigh syndrome (LS), are caused by variants either in the mitochondrial or the nuclear genome, affecting the oxidative phosphorylation process. The aim of the present study consisted in defining the molecular diagnosis of a group of Tunisian patients with L...

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Autores principales: Hechmi, Meriem, Charif, Majida, Kraoua, Ichraf, Fassatoui, Meriem, Dallali, Hamza, Desquiret-Dumas, Valerie, Bris, Céline, Goudenège, David, Drissi, Cyrine, Galaï, Saïd, Ouerhani, Slah, Procaccio, Vincent, Amati-Bonneau, Patrizia, Abdelhak, Sonia, Ben Youssef-Turki, Ilhem, Lenaers, Guy, Kefi, Rym
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9508526/
https://www.ncbi.nlm.nih.gov/pubmed/36093993
http://dx.doi.org/10.1042/BSR20220194
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author Hechmi, Meriem
Charif, Majida
Kraoua, Ichraf
Fassatoui, Meriem
Dallali, Hamza
Desquiret-Dumas, Valerie
Bris, Céline
Goudenège, David
Drissi, Cyrine
Galaï, Saïd
Ouerhani, Slah
Procaccio, Vincent
Amati-Bonneau, Patrizia
Abdelhak, Sonia
Ben Youssef-Turki, Ilhem
Lenaers, Guy
Kefi, Rym
author_facet Hechmi, Meriem
Charif, Majida
Kraoua, Ichraf
Fassatoui, Meriem
Dallali, Hamza
Desquiret-Dumas, Valerie
Bris, Céline
Goudenège, David
Drissi, Cyrine
Galaï, Saïd
Ouerhani, Slah
Procaccio, Vincent
Amati-Bonneau, Patrizia
Abdelhak, Sonia
Ben Youssef-Turki, Ilhem
Lenaers, Guy
Kefi, Rym
author_sort Hechmi, Meriem
collection PubMed
description Mitochondrial cytopathies, among which the Leigh syndrome (LS), are caused by variants either in the mitochondrial or the nuclear genome, affecting the oxidative phosphorylation process. The aim of the present study consisted in defining the molecular diagnosis of a group of Tunisian patients with LS. Six children, belonging to five Tunisian families, with clinical and imaging presentations suggestive of LS were recruited. Whole mitochondrial DNA and targeted next-generation sequencing of a panel of 281 nuclear genes involved in mitochondrial physiology were performed. Bioinformatic analyses were achieved in order to identify deleterious variations. A single m.10197G>A (p.Ala47Thr) variant was found in the mitochondrial MT-ND3 gene in one patient, while the others were related to autosomal homozygous variants: two c.1412delA (p.Gln471ArgfsTer42) and c.1264A>G (p.Thr422Ala) in SLC19A3, one c.454C>G (p.Pro152Ala) in SLC25A19 and one c.122G>A (p.Gly41Asp) in ETHE1. Our findings demonstrate the usefulness of genomic investigations to improve LS diagnosis in consanguineous populations and further allow for treating the patients harboring variants in SLC19A3 and SLC25A19 that contribute to thiamine transport, by thiamine and biotin supplementation. Considering the Tunisian genetic background, the newly identified variants could be screened in patients with similar clinical presentation in related populations.
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spelling pubmed-95085262022-09-28 Next-generation sequencing of Tunisian Leigh syndrome patients reveals novel variations: impact for diagnosis and treatment Hechmi, Meriem Charif, Majida Kraoua, Ichraf Fassatoui, Meriem Dallali, Hamza Desquiret-Dumas, Valerie Bris, Céline Goudenège, David Drissi, Cyrine Galaï, Saïd Ouerhani, Slah Procaccio, Vincent Amati-Bonneau, Patrizia Abdelhak, Sonia Ben Youssef-Turki, Ilhem Lenaers, Guy Kefi, Rym Biosci Rep Diagnostics & Biomarkers Mitochondrial cytopathies, among which the Leigh syndrome (LS), are caused by variants either in the mitochondrial or the nuclear genome, affecting the oxidative phosphorylation process. The aim of the present study consisted in defining the molecular diagnosis of a group of Tunisian patients with LS. Six children, belonging to five Tunisian families, with clinical and imaging presentations suggestive of LS were recruited. Whole mitochondrial DNA and targeted next-generation sequencing of a panel of 281 nuclear genes involved in mitochondrial physiology were performed. Bioinformatic analyses were achieved in order to identify deleterious variations. A single m.10197G>A (p.Ala47Thr) variant was found in the mitochondrial MT-ND3 gene in one patient, while the others were related to autosomal homozygous variants: two c.1412delA (p.Gln471ArgfsTer42) and c.1264A>G (p.Thr422Ala) in SLC19A3, one c.454C>G (p.Pro152Ala) in SLC25A19 and one c.122G>A (p.Gly41Asp) in ETHE1. Our findings demonstrate the usefulness of genomic investigations to improve LS diagnosis in consanguineous populations and further allow for treating the patients harboring variants in SLC19A3 and SLC25A19 that contribute to thiamine transport, by thiamine and biotin supplementation. Considering the Tunisian genetic background, the newly identified variants could be screened in patients with similar clinical presentation in related populations. Portland Press Ltd. 2022-09-21 /pmc/articles/PMC9508526/ /pubmed/36093993 http://dx.doi.org/10.1042/BSR20220194 Text en © 2022 The Author(s). https://creativecommons.org/licenses/by/4.0/This is an open access article published by Portland Press Limited on behalf of the Biochemical Society and distributed under the Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Diagnostics & Biomarkers
Hechmi, Meriem
Charif, Majida
Kraoua, Ichraf
Fassatoui, Meriem
Dallali, Hamza
Desquiret-Dumas, Valerie
Bris, Céline
Goudenège, David
Drissi, Cyrine
Galaï, Saïd
Ouerhani, Slah
Procaccio, Vincent
Amati-Bonneau, Patrizia
Abdelhak, Sonia
Ben Youssef-Turki, Ilhem
Lenaers, Guy
Kefi, Rym
Next-generation sequencing of Tunisian Leigh syndrome patients reveals novel variations: impact for diagnosis and treatment
title Next-generation sequencing of Tunisian Leigh syndrome patients reveals novel variations: impact for diagnosis and treatment
title_full Next-generation sequencing of Tunisian Leigh syndrome patients reveals novel variations: impact for diagnosis and treatment
title_fullStr Next-generation sequencing of Tunisian Leigh syndrome patients reveals novel variations: impact for diagnosis and treatment
title_full_unstemmed Next-generation sequencing of Tunisian Leigh syndrome patients reveals novel variations: impact for diagnosis and treatment
title_short Next-generation sequencing of Tunisian Leigh syndrome patients reveals novel variations: impact for diagnosis and treatment
title_sort next-generation sequencing of tunisian leigh syndrome patients reveals novel variations: impact for diagnosis and treatment
topic Diagnostics & Biomarkers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9508526/
https://www.ncbi.nlm.nih.gov/pubmed/36093993
http://dx.doi.org/10.1042/BSR20220194
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