Cargando…

Identification and Clinical Implications of Novel MYO15A Mutations in a Non-consanguineous Korean Family by Targeted Exome Sequencing

Mutations of MYO15A are generally known to cause severe to profound hearing loss throughout all frequencies. Here, we found two novel MYO15A mutations, c.3871C>T (p.L1291F) and c.5835T>G (p.Y1945X) in an affected individual carrying congenital profound sensorineural hearing loss (SNHL) through...

Descripción completa

Detalles Bibliográficos
Autores principales: Chang, Mun Young, Kim, Ah Reum, Kim, Nayoung K.D., Lee, Chung, Lee, Kyoung Yeul, Jeon, Woo-Sung, Koo, Ja-Won, Oh, Seung Ha, Park, Woong-Yang, Kim, Dongsup, Choi, Byung Yoon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Korean Society for Molecular and Cellular Biology 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4588721/
https://www.ncbi.nlm.nih.gov/pubmed/26242193
http://dx.doi.org/10.14348/molcells.2015.0078
_version_ 1782392679842185216
author Chang, Mun Young
Kim, Ah Reum
Kim, Nayoung K.D.
Lee, Chung
Lee, Kyoung Yeul
Jeon, Woo-Sung
Koo, Ja-Won
Oh, Seung Ha
Park, Woong-Yang
Kim, Dongsup
Choi, Byung Yoon
author_facet Chang, Mun Young
Kim, Ah Reum
Kim, Nayoung K.D.
Lee, Chung
Lee, Kyoung Yeul
Jeon, Woo-Sung
Koo, Ja-Won
Oh, Seung Ha
Park, Woong-Yang
Kim, Dongsup
Choi, Byung Yoon
author_sort Chang, Mun Young
collection PubMed
description Mutations of MYO15A are generally known to cause severe to profound hearing loss throughout all frequencies. Here, we found two novel MYO15A mutations, c.3871C>T (p.L1291F) and c.5835T>G (p.Y1945X) in an affected individual carrying congenital profound sensorineural hearing loss (SNHL) through targeted resequencing of 134 known deafness genes. The variant, p.L1291F and p.Y1945X, resided in the myosin motor and IQ2 domains, respectively. The p.L1291F variant was predicted to affect the structure of the actin-binding site from three-dimensional protein modeling, thereby interfering with the correct interaction between actin and myosin. From the literature analysis, mutations in the N-terminal domain were more frequently associated with residual hearing at low frequencies than mutations in the other regions of this gene. Therefore we suggest a hypothetical genotype-phenotype correlation whereby MYO15A mutations that affect domains other than the N-terminal domain, lead to profound SNHL throughout all frequencies and mutations that affect the N-terminal domain, result in residual hearing at low frequencies. This genotype-phenotype correlation suggests that preservation of residual hearing during auditory rehabilitation like cochlear implantation should be intended for those who carry mutations in the N-terminal domain and that individuals with mutations elsewhere in MYO15A require early cochlear implantation to timely initiate speech development.
format Online
Article
Text
id pubmed-4588721
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Korean Society for Molecular and Cellular Biology
record_format MEDLINE/PubMed
spelling pubmed-45887212015-10-13 Identification and Clinical Implications of Novel MYO15A Mutations in a Non-consanguineous Korean Family by Targeted Exome Sequencing Chang, Mun Young Kim, Ah Reum Kim, Nayoung K.D. Lee, Chung Lee, Kyoung Yeul Jeon, Woo-Sung Koo, Ja-Won Oh, Seung Ha Park, Woong-Yang Kim, Dongsup Choi, Byung Yoon Mol Cells Article Mutations of MYO15A are generally known to cause severe to profound hearing loss throughout all frequencies. Here, we found two novel MYO15A mutations, c.3871C>T (p.L1291F) and c.5835T>G (p.Y1945X) in an affected individual carrying congenital profound sensorineural hearing loss (SNHL) through targeted resequencing of 134 known deafness genes. The variant, p.L1291F and p.Y1945X, resided in the myosin motor and IQ2 domains, respectively. The p.L1291F variant was predicted to affect the structure of the actin-binding site from three-dimensional protein modeling, thereby interfering with the correct interaction between actin and myosin. From the literature analysis, mutations in the N-terminal domain were more frequently associated with residual hearing at low frequencies than mutations in the other regions of this gene. Therefore we suggest a hypothetical genotype-phenotype correlation whereby MYO15A mutations that affect domains other than the N-terminal domain, lead to profound SNHL throughout all frequencies and mutations that affect the N-terminal domain, result in residual hearing at low frequencies. This genotype-phenotype correlation suggests that preservation of residual hearing during auditory rehabilitation like cochlear implantation should be intended for those who carry mutations in the N-terminal domain and that individuals with mutations elsewhere in MYO15A require early cochlear implantation to timely initiate speech development. Korean Society for Molecular and Cellular Biology 2015-09-30 2015-08-04 /pmc/articles/PMC4588721/ /pubmed/26242193 http://dx.doi.org/10.14348/molcells.2015.0078 Text en © The Korean Society for Molecular and Cellular Biology. All rights reserved. This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-sa/3.0/.
spellingShingle Article
Chang, Mun Young
Kim, Ah Reum
Kim, Nayoung K.D.
Lee, Chung
Lee, Kyoung Yeul
Jeon, Woo-Sung
Koo, Ja-Won
Oh, Seung Ha
Park, Woong-Yang
Kim, Dongsup
Choi, Byung Yoon
Identification and Clinical Implications of Novel MYO15A Mutations in a Non-consanguineous Korean Family by Targeted Exome Sequencing
title Identification and Clinical Implications of Novel MYO15A Mutations in a Non-consanguineous Korean Family by Targeted Exome Sequencing
title_full Identification and Clinical Implications of Novel MYO15A Mutations in a Non-consanguineous Korean Family by Targeted Exome Sequencing
title_fullStr Identification and Clinical Implications of Novel MYO15A Mutations in a Non-consanguineous Korean Family by Targeted Exome Sequencing
title_full_unstemmed Identification and Clinical Implications of Novel MYO15A Mutations in a Non-consanguineous Korean Family by Targeted Exome Sequencing
title_short Identification and Clinical Implications of Novel MYO15A Mutations in a Non-consanguineous Korean Family by Targeted Exome Sequencing
title_sort identification and clinical implications of novel myo15a mutations in a non-consanguineous korean family by targeted exome sequencing
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4588721/
https://www.ncbi.nlm.nih.gov/pubmed/26242193
http://dx.doi.org/10.14348/molcells.2015.0078
work_keys_str_mv AT changmunyoung identificationandclinicalimplicationsofnovelmyo15amutationsinanonconsanguineouskoreanfamilybytargetedexomesequencing
AT kimahreum identificationandclinicalimplicationsofnovelmyo15amutationsinanonconsanguineouskoreanfamilybytargetedexomesequencing
AT kimnayoungkd identificationandclinicalimplicationsofnovelmyo15amutationsinanonconsanguineouskoreanfamilybytargetedexomesequencing
AT leechung identificationandclinicalimplicationsofnovelmyo15amutationsinanonconsanguineouskoreanfamilybytargetedexomesequencing
AT leekyoungyeul identificationandclinicalimplicationsofnovelmyo15amutationsinanonconsanguineouskoreanfamilybytargetedexomesequencing
AT jeonwoosung identificationandclinicalimplicationsofnovelmyo15amutationsinanonconsanguineouskoreanfamilybytargetedexomesequencing
AT koojawon identificationandclinicalimplicationsofnovelmyo15amutationsinanonconsanguineouskoreanfamilybytargetedexomesequencing
AT ohseungha identificationandclinicalimplicationsofnovelmyo15amutationsinanonconsanguineouskoreanfamilybytargetedexomesequencing
AT parkwoongyang identificationandclinicalimplicationsofnovelmyo15amutationsinanonconsanguineouskoreanfamilybytargetedexomesequencing
AT kimdongsup identificationandclinicalimplicationsofnovelmyo15amutationsinanonconsanguineouskoreanfamilybytargetedexomesequencing
AT choibyungyoon identificationandclinicalimplicationsofnovelmyo15amutationsinanonconsanguineouskoreanfamilybytargetedexomesequencing