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A Novel Missense WFS1 Variant: Expanding the Mutational Spectrum Associated with Nonsyndromic Low-Frequency Sensorineural Hearing Loss

BACKGROUND: Nonsyndromic low-frequency sensorineural hearing loss (LFSNHL) is an uncommon form of hearing loss (HL) that typically affects frequencies at 2000 Hz and below. Heterozygous variants in the WFS1 gene at the DFNA6/14/38 locus are considered a common cause of LFSNHL. To date, 34 different...

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Autores principales: Ma, Jingyu, Wang, Rongrong, Zhang, Li, Wang, Shanshan, Tong, Shuqing, Bai, Xiaohui, Lu, Zhiming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9550458/
https://www.ncbi.nlm.nih.gov/pubmed/36225977
http://dx.doi.org/10.1155/2022/5068869
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author Ma, Jingyu
Wang, Rongrong
Zhang, Li
Wang, Shanshan
Tong, Shuqing
Bai, Xiaohui
Lu, Zhiming
author_facet Ma, Jingyu
Wang, Rongrong
Zhang, Li
Wang, Shanshan
Tong, Shuqing
Bai, Xiaohui
Lu, Zhiming
author_sort Ma, Jingyu
collection PubMed
description BACKGROUND: Nonsyndromic low-frequency sensorineural hearing loss (LFSNHL) is an uncommon form of hearing loss (HL) that typically affects frequencies at 2000 Hz and below. Heterozygous variants in the WFS1 gene at the DFNA6/14/38 locus are considered a common cause of LFSNHL. To date, 34 different pathogenic genetic variants have been reported to cause LFSNHL with seven of these variants identified in the Chinese population. However, limited reports are available on the association between WFS1 gene and LFSNHL. Here, we report a five-generation Chinese family with an autosomal dominant inheritance pattern of postlingual and progressive LFSNHL. METHODS: Routine clinical and audiological examinations were performed on 16 affected and 7 healthy members in this family. The targeted next-generation sequencing of 127 known deafness genes was performed to identify variants in affected individuals. Sanger sequencing were further employed to confirm the pathogenic variant identified. RESULTS: A novel heterozygous pathogenic genetic variant c.2530G > T (p.Ala844Ser) was identified in the WFS1 gene in all patients of this family. The mutated Ala residue is evolutionarily conserved and cosegregated with HL. The variant was predicted to be deleterious by MutationTaster, PolyPhen-2, LRT, and Fathmm software. Conservation analysis and 3D protein structure model indicated that the variant caused a structural change in the protein. CONCLUSIONS: Our present study identifies a novel heterozygous WFS1 variant associated with LFSNHL in a Chinese family.
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spelling pubmed-95504582022-10-11 A Novel Missense WFS1 Variant: Expanding the Mutational Spectrum Associated with Nonsyndromic Low-Frequency Sensorineural Hearing Loss Ma, Jingyu Wang, Rongrong Zhang, Li Wang, Shanshan Tong, Shuqing Bai, Xiaohui Lu, Zhiming Biomed Res Int Research Article BACKGROUND: Nonsyndromic low-frequency sensorineural hearing loss (LFSNHL) is an uncommon form of hearing loss (HL) that typically affects frequencies at 2000 Hz and below. Heterozygous variants in the WFS1 gene at the DFNA6/14/38 locus are considered a common cause of LFSNHL. To date, 34 different pathogenic genetic variants have been reported to cause LFSNHL with seven of these variants identified in the Chinese population. However, limited reports are available on the association between WFS1 gene and LFSNHL. Here, we report a five-generation Chinese family with an autosomal dominant inheritance pattern of postlingual and progressive LFSNHL. METHODS: Routine clinical and audiological examinations were performed on 16 affected and 7 healthy members in this family. The targeted next-generation sequencing of 127 known deafness genes was performed to identify variants in affected individuals. Sanger sequencing were further employed to confirm the pathogenic variant identified. RESULTS: A novel heterozygous pathogenic genetic variant c.2530G > T (p.Ala844Ser) was identified in the WFS1 gene in all patients of this family. The mutated Ala residue is evolutionarily conserved and cosegregated with HL. The variant was predicted to be deleterious by MutationTaster, PolyPhen-2, LRT, and Fathmm software. Conservation analysis and 3D protein structure model indicated that the variant caused a structural change in the protein. CONCLUSIONS: Our present study identifies a novel heterozygous WFS1 variant associated with LFSNHL in a Chinese family. Hindawi 2022-10-03 /pmc/articles/PMC9550458/ /pubmed/36225977 http://dx.doi.org/10.1155/2022/5068869 Text en Copyright © 2022 Jingyu Ma et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Ma, Jingyu
Wang, Rongrong
Zhang, Li
Wang, Shanshan
Tong, Shuqing
Bai, Xiaohui
Lu, Zhiming
A Novel Missense WFS1 Variant: Expanding the Mutational Spectrum Associated with Nonsyndromic Low-Frequency Sensorineural Hearing Loss
title A Novel Missense WFS1 Variant: Expanding the Mutational Spectrum Associated with Nonsyndromic Low-Frequency Sensorineural Hearing Loss
title_full A Novel Missense WFS1 Variant: Expanding the Mutational Spectrum Associated with Nonsyndromic Low-Frequency Sensorineural Hearing Loss
title_fullStr A Novel Missense WFS1 Variant: Expanding the Mutational Spectrum Associated with Nonsyndromic Low-Frequency Sensorineural Hearing Loss
title_full_unstemmed A Novel Missense WFS1 Variant: Expanding the Mutational Spectrum Associated with Nonsyndromic Low-Frequency Sensorineural Hearing Loss
title_short A Novel Missense WFS1 Variant: Expanding the Mutational Spectrum Associated with Nonsyndromic Low-Frequency Sensorineural Hearing Loss
title_sort novel missense wfs1 variant: expanding the mutational spectrum associated with nonsyndromic low-frequency sensorineural hearing loss
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9550458/
https://www.ncbi.nlm.nih.gov/pubmed/36225977
http://dx.doi.org/10.1155/2022/5068869
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