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Mitochondrial RNA processing defect caused by a SUPV3L1 mutation in two siblings with a novel neurodegenerative syndrome

SUPV3L1 encodes a helicase that is mainly localized in the mitochondria. It has been shown in vitro to possess both double‐stranded RNA and DNA unwinding activity that is ATP‐dependent. Here we report the first two patients for this gene who presented with a homozygous preliminary stop codon resulti...

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Autores principales: van Esveld, Selma L., Rodenburg, Richard J., Al‐Murshedi, Fathiya, Al‐Ajmi, Eiman, Al‐Zuhaibi, Sana, Huynen, Martijn A., Spelbrink, Johannes N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9303385/
https://www.ncbi.nlm.nih.gov/pubmed/35023579
http://dx.doi.org/10.1002/jimd.12476
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author van Esveld, Selma L.
Rodenburg, Richard J.
Al‐Murshedi, Fathiya
Al‐Ajmi, Eiman
Al‐Zuhaibi, Sana
Huynen, Martijn A.
Spelbrink, Johannes N.
author_facet van Esveld, Selma L.
Rodenburg, Richard J.
Al‐Murshedi, Fathiya
Al‐Ajmi, Eiman
Al‐Zuhaibi, Sana
Huynen, Martijn A.
Spelbrink, Johannes N.
author_sort van Esveld, Selma L.
collection PubMed
description SUPV3L1 encodes a helicase that is mainly localized in the mitochondria. It has been shown in vitro to possess both double‐stranded RNA and DNA unwinding activity that is ATP‐dependent. Here we report the first two patients for this gene who presented with a homozygous preliminary stop codon resulting in a C‐terminal truncation of the SUPV3L1 protein. They presented with a characteristic phenotype of neurodegenerative nature with progressive spastic paraparesis, growth restriction, hypopigmentation, and predisposition to autoimmune disease. Ophthalmological examination showed severe photophobia with corneal erosions, optic atrophy, and pigmentary retinopathy, while neuroimaging showed atrophy of the optic chiasm and the pons with calcification of putamina, with intermittent and mild elevation of lactate. We show that the amino acids that are eliminated by the preliminary stop codon are highly conserved and are predicted to form an amphipathic helix. To investigate if the mutation causes mitochondrial dysfunction, we examined fibroblasts of the proband. We observed very low expression of the truncated protein, a reduction in the mature ND6 mRNA species as well as the accumulation of double‐stranded RNA. Lentiviral complementation with the full‐length SUPV3L1 cDNA partly restored the observed RNA phenotypes, supporting that the SUPV3L1 mutation in these patients is pathogenic and the cause of the disease.
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spelling pubmed-93033852022-07-22 Mitochondrial RNA processing defect caused by a SUPV3L1 mutation in two siblings with a novel neurodegenerative syndrome van Esveld, Selma L. Rodenburg, Richard J. Al‐Murshedi, Fathiya Al‐Ajmi, Eiman Al‐Zuhaibi, Sana Huynen, Martijn A. Spelbrink, Johannes N. J Inherit Metab Dis Original Articles SUPV3L1 encodes a helicase that is mainly localized in the mitochondria. It has been shown in vitro to possess both double‐stranded RNA and DNA unwinding activity that is ATP‐dependent. Here we report the first two patients for this gene who presented with a homozygous preliminary stop codon resulting in a C‐terminal truncation of the SUPV3L1 protein. They presented with a characteristic phenotype of neurodegenerative nature with progressive spastic paraparesis, growth restriction, hypopigmentation, and predisposition to autoimmune disease. Ophthalmological examination showed severe photophobia with corneal erosions, optic atrophy, and pigmentary retinopathy, while neuroimaging showed atrophy of the optic chiasm and the pons with calcification of putamina, with intermittent and mild elevation of lactate. We show that the amino acids that are eliminated by the preliminary stop codon are highly conserved and are predicted to form an amphipathic helix. To investigate if the mutation causes mitochondrial dysfunction, we examined fibroblasts of the proband. We observed very low expression of the truncated protein, a reduction in the mature ND6 mRNA species as well as the accumulation of double‐stranded RNA. Lentiviral complementation with the full‐length SUPV3L1 cDNA partly restored the observed RNA phenotypes, supporting that the SUPV3L1 mutation in these patients is pathogenic and the cause of the disease. John Wiley & Sons, Inc. 2022-01-21 2022-03 /pmc/articles/PMC9303385/ /pubmed/35023579 http://dx.doi.org/10.1002/jimd.12476 Text en © 2022 The Authors. Journal of Inherited Metabolic Disease published by John Wiley & Sons Ltd on behalf of SSIEM. https://creativecommons.org/licenses/by-nc/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Original Articles
van Esveld, Selma L.
Rodenburg, Richard J.
Al‐Murshedi, Fathiya
Al‐Ajmi, Eiman
Al‐Zuhaibi, Sana
Huynen, Martijn A.
Spelbrink, Johannes N.
Mitochondrial RNA processing defect caused by a SUPV3L1 mutation in two siblings with a novel neurodegenerative syndrome
title Mitochondrial RNA processing defect caused by a SUPV3L1 mutation in two siblings with a novel neurodegenerative syndrome
title_full Mitochondrial RNA processing defect caused by a SUPV3L1 mutation in two siblings with a novel neurodegenerative syndrome
title_fullStr Mitochondrial RNA processing defect caused by a SUPV3L1 mutation in two siblings with a novel neurodegenerative syndrome
title_full_unstemmed Mitochondrial RNA processing defect caused by a SUPV3L1 mutation in two siblings with a novel neurodegenerative syndrome
title_short Mitochondrial RNA processing defect caused by a SUPV3L1 mutation in two siblings with a novel neurodegenerative syndrome
title_sort mitochondrial rna processing defect caused by a supv3l1 mutation in two siblings with a novel neurodegenerative syndrome
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9303385/
https://www.ncbi.nlm.nih.gov/pubmed/35023579
http://dx.doi.org/10.1002/jimd.12476
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