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Targeted next‐generation sequencing of deaf patients from Southwestern China

BACKGROUND: Targeted next‐generation sequencing is an efficient tool to identify pathogenic mutations of hereditary deafness. The molecular pathology of deaf patients in southwestern China is not fully understood. METHODS: In this study, targeted next‐generation sequencing of 127 deafness genes was...

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Autores principales: Li, Yunlong, Su, Jie, Zhang, Jingman, Pei, Jiahong, Li, Dongmei, Zhang, Yinhong, Li, Jingyu, Chen, Menglang, Zhu, Baosheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8123756/
https://www.ncbi.nlm.nih.gov/pubmed/33724713
http://dx.doi.org/10.1002/mgg3.1660
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author Li, Yunlong
Su, Jie
Zhang, Jingman
Pei, Jiahong
Li, Dongmei
Zhang, Yinhong
Li, Jingyu
Chen, Menglang
Zhu, Baosheng
author_facet Li, Yunlong
Su, Jie
Zhang, Jingman
Pei, Jiahong
Li, Dongmei
Zhang, Yinhong
Li, Jingyu
Chen, Menglang
Zhu, Baosheng
author_sort Li, Yunlong
collection PubMed
description BACKGROUND: Targeted next‐generation sequencing is an efficient tool to identify pathogenic mutations of hereditary deafness. The molecular pathology of deaf patients in southwestern China is not fully understood. METHODS: In this study, targeted next‐generation sequencing of 127 deafness genes was performed on 84 deaf patients. They were not caused by common mutations of GJB2 gene, including c.35delG, c.109 G>A, c.167delT, c.176_191del16, c.235delC and c.299_300delAT. RESULTS: In the cohorts of 84 deaf patients, we did not find any candidate pathogenic variants in 14 deaf patients (16.7%, 14/84). In other 70 deaf patients (83.3%, 70/84), candidate pathogenic variants were identified in 34 genes. Of these 70 deaf patients, the percentage of “Solved” and “Unsolved” patients was 51.43% (36/70) and 48.57% (34/70), respectively. The most common causative genes were SLC26A4 (12.9%, 9/70), MT‐RNR1 (11.4%, 8/70), and MYO7A (2.9%, 2/70) in deaf patients. In “Unsolved” patients, possible pathogenic variants were most found in SLC26A4 (8.9%, 3/34), MYO7A (5.9%, 2/34), OTOF (5.9%, 2/34), and PDZD7 (5.9%, 2/34) genes. Interesting, several novel recessive pathogenic variants were identified, like SLC26A4 c.290T>G, SLC26A4 c.599A>G, PDZD7c.490 C>T, etc. CONCLUSION: In addition to common deafness genes, like GJB2, SLC26A4, and MT‐RNR1 genes, other deafness genes (MYO7A, OTOF, PDZD7, etc.) were identified in deaf patients from southwestern China. Therefore, the spectrum of deafness genes in this area should be further studied.
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spelling pubmed-81237562021-05-21 Targeted next‐generation sequencing of deaf patients from Southwestern China Li, Yunlong Su, Jie Zhang, Jingman Pei, Jiahong Li, Dongmei Zhang, Yinhong Li, Jingyu Chen, Menglang Zhu, Baosheng Mol Genet Genomic Med Original Articles BACKGROUND: Targeted next‐generation sequencing is an efficient tool to identify pathogenic mutations of hereditary deafness. The molecular pathology of deaf patients in southwestern China is not fully understood. METHODS: In this study, targeted next‐generation sequencing of 127 deafness genes was performed on 84 deaf patients. They were not caused by common mutations of GJB2 gene, including c.35delG, c.109 G>A, c.167delT, c.176_191del16, c.235delC and c.299_300delAT. RESULTS: In the cohorts of 84 deaf patients, we did not find any candidate pathogenic variants in 14 deaf patients (16.7%, 14/84). In other 70 deaf patients (83.3%, 70/84), candidate pathogenic variants were identified in 34 genes. Of these 70 deaf patients, the percentage of “Solved” and “Unsolved” patients was 51.43% (36/70) and 48.57% (34/70), respectively. The most common causative genes were SLC26A4 (12.9%, 9/70), MT‐RNR1 (11.4%, 8/70), and MYO7A (2.9%, 2/70) in deaf patients. In “Unsolved” patients, possible pathogenic variants were most found in SLC26A4 (8.9%, 3/34), MYO7A (5.9%, 2/34), OTOF (5.9%, 2/34), and PDZD7 (5.9%, 2/34) genes. Interesting, several novel recessive pathogenic variants were identified, like SLC26A4 c.290T>G, SLC26A4 c.599A>G, PDZD7c.490 C>T, etc. CONCLUSION: In addition to common deafness genes, like GJB2, SLC26A4, and MT‐RNR1 genes, other deafness genes (MYO7A, OTOF, PDZD7, etc.) were identified in deaf patients from southwestern China. Therefore, the spectrum of deafness genes in this area should be further studied. John Wiley and Sons Inc. 2021-03-16 /pmc/articles/PMC8123756/ /pubmed/33724713 http://dx.doi.org/10.1002/mgg3.1660 Text en © 2021 The Authors. Molecular Genetics & Genomic Medicine published by Wiley Periodicals LLC. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Original Articles
Li, Yunlong
Su, Jie
Zhang, Jingman
Pei, Jiahong
Li, Dongmei
Zhang, Yinhong
Li, Jingyu
Chen, Menglang
Zhu, Baosheng
Targeted next‐generation sequencing of deaf patients from Southwestern China
title Targeted next‐generation sequencing of deaf patients from Southwestern China
title_full Targeted next‐generation sequencing of deaf patients from Southwestern China
title_fullStr Targeted next‐generation sequencing of deaf patients from Southwestern China
title_full_unstemmed Targeted next‐generation sequencing of deaf patients from Southwestern China
title_short Targeted next‐generation sequencing of deaf patients from Southwestern China
title_sort targeted next‐generation sequencing of deaf patients from southwestern china
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8123756/
https://www.ncbi.nlm.nih.gov/pubmed/33724713
http://dx.doi.org/10.1002/mgg3.1660
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