Vitamin B1 deficiency leads to high oxidative stress and mtDNA depletion caused by SLC19A3 mutation in consanguineous family with Leigh syndrome

Author:

felhi Rahma1ORCID,Sfaihi Lamia2,Charif Majida3,Frikha Fakher4,Aoiadni Nissaf5,Kamoun Thouraya2,Lenaers Guy6,Fakhfakh Faiza5

Affiliation:

1. Universite de Sfax Faculte des Sciences de Sfax

2. University of Sfax Faculty of Medecine of Sfax: Universite de Sfax Faculte de Medecine de Sfax

3. Mohammed First University Oujda Faculty of Science: Universite Mohammed Premier Oujda Faculte des Sciences

4. Centre of Biotechnology of Sfax: Centre de Biotechnologie de Sfax

5. Faculty of Sciences of Sfax: Universite de Sfax Faculte des Sciences de Sfax

6. CHU Angers: Centre Hospitalier Universitaire d'Angers

Abstract

Abstract Leigh syndrome (LS) and Leigh-like spectrum are the most common infantile mitochondrial disorders characterized by heterogeneous neurologic and metabolic manifestations. Pathogenic variants in SLC carriers are frequently reported in LS given their important role in transporting various solutes across the blood–brain barrier. SLC19A3 (THTR2) is one of these carriers transporting vitamin-B1 (vitB1, thiamine) into the cell. Targeted NGS of nuclear genes involved in mitochondrial diseases was performed in a patient belonging to a consanguineous Tunisian family with LS and revealed a homozygous c.1264A > G (p.T422A) variant in SLC19A3. Molecular docking revealed that the p.T422A aa change is located at a key position interacting with vitB1 and causes conformational changes compromising vitB1 import. We further disclosed decreased plasma antioxidant activities of CAT, SOD and GSH enzymes, and a 42% decrease of the mtDNA copy number in patient blood. Altogether, our results disclose that the c.1264A > G (p.T422A) variant in SLC19A3 affects vitB1 transport, induces a mtDNA depletion and reduces the expression level of oxidative stress enzymes, altogether contributing to the LS phenotype of the patient.

Publisher

Research Square Platform LLC

Reference39 articles.

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