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Infantile onset spinocerebellar ataxia caused by compound heterozygosity for Twinkle mutations and modeling of Twinkle mutations causing recessive disease

Mutations in nuclear genes required for the replication and maintenance of mitochondrial DNA cause progressive multisystemic neuromuscular disorders with overlapping phenotypes. Biallelic mutations in C10orf2, encoding the Twinkle mitochondrial DNA helicase, lead to infantile-onset cerebellar ataxia...

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Autores principales: Pierce, Sarah B., Gulsuner, Suleyman, Stapleton, Gail A., Walsh, Tom, Lee, Ming K., Mandell, Jessica B., Morales, Augusto, Klevit, Rachel E., King, Mary-Claire, Rogers, R. Curtis
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4990813/
https://www.ncbi.nlm.nih.gov/pubmed/27551684
http://dx.doi.org/10.1101/mcs.a001107
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author Pierce, Sarah B.
Gulsuner, Suleyman
Stapleton, Gail A.
Walsh, Tom
Lee, Ming K.
Mandell, Jessica B.
Morales, Augusto
Klevit, Rachel E.
King, Mary-Claire
Rogers, R. Curtis
author_facet Pierce, Sarah B.
Gulsuner, Suleyman
Stapleton, Gail A.
Walsh, Tom
Lee, Ming K.
Mandell, Jessica B.
Morales, Augusto
Klevit, Rachel E.
King, Mary-Claire
Rogers, R. Curtis
author_sort Pierce, Sarah B.
collection PubMed
description Mutations in nuclear genes required for the replication and maintenance of mitochondrial DNA cause progressive multisystemic neuromuscular disorders with overlapping phenotypes. Biallelic mutations in C10orf2, encoding the Twinkle mitochondrial DNA helicase, lead to infantile-onset cerebellar ataxia (IOSCA), as well as milder and more severe phenotypes. We present a 13-year-old girl with ataxia, severe hearing loss, optic atrophy, peripheral neuropathy, and hypergonadotropic hypogonadism. Whole-exome sequencing revealed that the patient is compound heterozygous for previously unreported variants in the C10orf2 gene: a paternally inherited frameshift variant (c.333delT; p.L112Sfs*3) and a maternally inherited missense variant (c.904C>T; p.R302W). The identification of novel C10orf2 mutations extends the spectrum of mutations in the Twinkle helicase causing recessive disease, in particular the intermediate IOSCA phenotype. Structural modeling suggests that the p.R302W mutation and many other recessively inherited Twinkle mutations impact the position or interactions of the linker region, which is critical for the oligomeric ring structure and activity of the helicase. This study emphasizes the utility of whole-exome sequencing for the genetic diagnosis of a complex multisystemic disorder.
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spelling pubmed-49908132016-08-22 Infantile onset spinocerebellar ataxia caused by compound heterozygosity for Twinkle mutations and modeling of Twinkle mutations causing recessive disease Pierce, Sarah B. Gulsuner, Suleyman Stapleton, Gail A. Walsh, Tom Lee, Ming K. Mandell, Jessica B. Morales, Augusto Klevit, Rachel E. King, Mary-Claire Rogers, R. Curtis Cold Spring Harb Mol Case Stud Research Report Mutations in nuclear genes required for the replication and maintenance of mitochondrial DNA cause progressive multisystemic neuromuscular disorders with overlapping phenotypes. Biallelic mutations in C10orf2, encoding the Twinkle mitochondrial DNA helicase, lead to infantile-onset cerebellar ataxia (IOSCA), as well as milder and more severe phenotypes. We present a 13-year-old girl with ataxia, severe hearing loss, optic atrophy, peripheral neuropathy, and hypergonadotropic hypogonadism. Whole-exome sequencing revealed that the patient is compound heterozygous for previously unreported variants in the C10orf2 gene: a paternally inherited frameshift variant (c.333delT; p.L112Sfs*3) and a maternally inherited missense variant (c.904C>T; p.R302W). The identification of novel C10orf2 mutations extends the spectrum of mutations in the Twinkle helicase causing recessive disease, in particular the intermediate IOSCA phenotype. Structural modeling suggests that the p.R302W mutation and many other recessively inherited Twinkle mutations impact the position or interactions of the linker region, which is critical for the oligomeric ring structure and activity of the helicase. This study emphasizes the utility of whole-exome sequencing for the genetic diagnosis of a complex multisystemic disorder. Cold Spring Harbor Laboratory Press 2016-07 /pmc/articles/PMC4990813/ /pubmed/27551684 http://dx.doi.org/10.1101/mcs.a001107 Text en © 2016 Pierce et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/4.0/ This article is distributed under the terms of the Creative Commons Attribution-NonCommercial License (http://creativecommons.org/licenses/by-nc/4.0/) , which permits reuse and redistribution, except for commercial purposes, provided that the original author and source are credited.
spellingShingle Research Report
Pierce, Sarah B.
Gulsuner, Suleyman
Stapleton, Gail A.
Walsh, Tom
Lee, Ming K.
Mandell, Jessica B.
Morales, Augusto
Klevit, Rachel E.
King, Mary-Claire
Rogers, R. Curtis
Infantile onset spinocerebellar ataxia caused by compound heterozygosity for Twinkle mutations and modeling of Twinkle mutations causing recessive disease
title Infantile onset spinocerebellar ataxia caused by compound heterozygosity for Twinkle mutations and modeling of Twinkle mutations causing recessive disease
title_full Infantile onset spinocerebellar ataxia caused by compound heterozygosity for Twinkle mutations and modeling of Twinkle mutations causing recessive disease
title_fullStr Infantile onset spinocerebellar ataxia caused by compound heterozygosity for Twinkle mutations and modeling of Twinkle mutations causing recessive disease
title_full_unstemmed Infantile onset spinocerebellar ataxia caused by compound heterozygosity for Twinkle mutations and modeling of Twinkle mutations causing recessive disease
title_short Infantile onset spinocerebellar ataxia caused by compound heterozygosity for Twinkle mutations and modeling of Twinkle mutations causing recessive disease
title_sort infantile onset spinocerebellar ataxia caused by compound heterozygosity for twinkle mutations and modeling of twinkle mutations causing recessive disease
topic Research Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4990813/
https://www.ncbi.nlm.nih.gov/pubmed/27551684
http://dx.doi.org/10.1101/mcs.a001107
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