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Mutation analysis in exons 22 and 24 of SCN4A gene in Iranian patients with non-dystrophic myotonia

Background: Non-dystrophic myotonias are a heterogeneous set of skeletal, muscular channelopathies, which have been associated with point mutations within sodium channel α-subunit (SCN4A) gene. Because exons 22 and 24 of SCN4A gene are recognized as hot spots for this disease, the purpose of the stu...

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Autores principales: Heidari, Mohammad Mehdi, Khatami, Mehri, Nafissi, Shahriar, Hesami-Zokai, Faezeh, Khorrami, Afshin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Tehran University of Medical Sciences 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4754597/
https://www.ncbi.nlm.nih.gov/pubmed/26885337
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author Heidari, Mohammad Mehdi
Khatami, Mehri
Nafissi, Shahriar
Hesami-Zokai, Faezeh
Khorrami, Afshin
author_facet Heidari, Mohammad Mehdi
Khatami, Mehri
Nafissi, Shahriar
Hesami-Zokai, Faezeh
Khorrami, Afshin
author_sort Heidari, Mohammad Mehdi
collection PubMed
description Background: Non-dystrophic myotonias are a heterogeneous set of skeletal, muscular channelopathies, which have been associated with point mutations within sodium channel α-subunit (SCN4A) gene. Because exons 22 and 24 of SCN4A gene are recognized as hot spots for this disease, the purpose of the study is to identify mutation in exons 22 and 24 of SCN4A gene in Iranian non-dystrophic myotonias patients. Methods: In this study, 28 Iranian patients with non-dystrophic myotonia analyzed for the mutation scanning in exons 22 and 24 of SCN4A gene by polymerase chain reaction-single strand conformational polymorphism (PCR-SSCP) and sequencing. Results: We found 29073G>C substitution in SCN4A gene in one case and 31506A>G substitution in seven cases. The 29073G>C substitution causes a missense mutation G1306A, located in the conserved cytoplasmic loop connecting repeat III and IV of the SCN4A channel but, 31506A>G substitution do not alter amino acid in SCN4A protein. Conclusion: G1306A residue is located in functionally important protein region. In “hinged-lid model” for Na(+) channel inactivation in which glycines(1306) act as the hinge of the lid occluding the channel pore. Mutation in this region slowed fast inactivation. Therefore, it might be a pathogenic mutation. The causal relationship of this mutation with the disease is an object for further discussion.
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spelling pubmed-47545972016-02-16 Mutation analysis in exons 22 and 24 of SCN4A gene in Iranian patients with non-dystrophic myotonia Heidari, Mohammad Mehdi Khatami, Mehri Nafissi, Shahriar Hesami-Zokai, Faezeh Khorrami, Afshin Iran J Neurol Original Article Background: Non-dystrophic myotonias are a heterogeneous set of skeletal, muscular channelopathies, which have been associated with point mutations within sodium channel α-subunit (SCN4A) gene. Because exons 22 and 24 of SCN4A gene are recognized as hot spots for this disease, the purpose of the study is to identify mutation in exons 22 and 24 of SCN4A gene in Iranian non-dystrophic myotonias patients. Methods: In this study, 28 Iranian patients with non-dystrophic myotonia analyzed for the mutation scanning in exons 22 and 24 of SCN4A gene by polymerase chain reaction-single strand conformational polymorphism (PCR-SSCP) and sequencing. Results: We found 29073G>C substitution in SCN4A gene in one case and 31506A>G substitution in seven cases. The 29073G>C substitution causes a missense mutation G1306A, located in the conserved cytoplasmic loop connecting repeat III and IV of the SCN4A channel but, 31506A>G substitution do not alter amino acid in SCN4A protein. Conclusion: G1306A residue is located in functionally important protein region. In “hinged-lid model” for Na(+) channel inactivation in which glycines(1306) act as the hinge of the lid occluding the channel pore. Mutation in this region slowed fast inactivation. Therefore, it might be a pathogenic mutation. The causal relationship of this mutation with the disease is an object for further discussion. Tehran University of Medical Sciences 2015-10-07 /pmc/articles/PMC4754597/ /pubmed/26885337 Text en Copyright © 2015 Iranian Neurological Association, and Tehran University of Medical Sciences This is an Open Access article distributed under the terms of the Creative Commons Attribution License, (http://creativecommons.org/licenses/by/3.0/) which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Heidari, Mohammad Mehdi
Khatami, Mehri
Nafissi, Shahriar
Hesami-Zokai, Faezeh
Khorrami, Afshin
Mutation analysis in exons 22 and 24 of SCN4A gene in Iranian patients with non-dystrophic myotonia
title Mutation analysis in exons 22 and 24 of SCN4A gene in Iranian patients with non-dystrophic myotonia
title_full Mutation analysis in exons 22 and 24 of SCN4A gene in Iranian patients with non-dystrophic myotonia
title_fullStr Mutation analysis in exons 22 and 24 of SCN4A gene in Iranian patients with non-dystrophic myotonia
title_full_unstemmed Mutation analysis in exons 22 and 24 of SCN4A gene in Iranian patients with non-dystrophic myotonia
title_short Mutation analysis in exons 22 and 24 of SCN4A gene in Iranian patients with non-dystrophic myotonia
title_sort mutation analysis in exons 22 and 24 of scn4a gene in iranian patients with non-dystrophic myotonia
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4754597/
https://www.ncbi.nlm.nih.gov/pubmed/26885337
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