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Massively Parallel DNA Sequencing Facilitates Diagnosis of Patients with Usher Syndrome Type 1

Usher syndrome is an autosomal recessive disorder manifesting hearing loss, retinitis pigmentosa and vestibular dysfunction, and having three clinical subtypes. Usher syndrome type 1 is the most severe subtype due to its profound hearing loss, lack of vestibular responses, and retinitis pigmentosa t...

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Autores principales: Yoshimura, Hidekane, Iwasaki, Satoshi, Nishio, Shin-ya, Kumakawa, Kozo, Tono, Tetsuya, Kobayashi, Yumiko, Sato, Hiroaki, Nagai, Kyoko, Ishikawa, Kotaro, Ikezono, Tetsuo, Naito, Yasushi, Fukushima, Kunihiro, Oshikawa, Chie, Kimitsuki, Takashi, Nakanishi, Hiroshi, Usami, Shin-ichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3949687/
https://www.ncbi.nlm.nih.gov/pubmed/24618850
http://dx.doi.org/10.1371/journal.pone.0090688
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author Yoshimura, Hidekane
Iwasaki, Satoshi
Nishio, Shin-ya
Kumakawa, Kozo
Tono, Tetsuya
Kobayashi, Yumiko
Sato, Hiroaki
Nagai, Kyoko
Ishikawa, Kotaro
Ikezono, Tetsuo
Naito, Yasushi
Fukushima, Kunihiro
Oshikawa, Chie
Kimitsuki, Takashi
Nakanishi, Hiroshi
Usami, Shin-ichi
author_facet Yoshimura, Hidekane
Iwasaki, Satoshi
Nishio, Shin-ya
Kumakawa, Kozo
Tono, Tetsuya
Kobayashi, Yumiko
Sato, Hiroaki
Nagai, Kyoko
Ishikawa, Kotaro
Ikezono, Tetsuo
Naito, Yasushi
Fukushima, Kunihiro
Oshikawa, Chie
Kimitsuki, Takashi
Nakanishi, Hiroshi
Usami, Shin-ichi
author_sort Yoshimura, Hidekane
collection PubMed
description Usher syndrome is an autosomal recessive disorder manifesting hearing loss, retinitis pigmentosa and vestibular dysfunction, and having three clinical subtypes. Usher syndrome type 1 is the most severe subtype due to its profound hearing loss, lack of vestibular responses, and retinitis pigmentosa that appears in prepuberty. Six of the corresponding genes have been identified, making early diagnosis through DNA testing possible, with many immediate and several long-term advantages for patients and their families. However, the conventional genetic techniques, such as direct sequence analysis, are both time-consuming and expensive. Targeted exon sequencing of selected genes using the massively parallel DNA sequencing technology will potentially enable us to systematically tackle previously intractable monogenic disorders and improve molecular diagnosis. Using this technique combined with direct sequence analysis, we screened 17 unrelated Usher syndrome type 1 patients and detected probable pathogenic variants in the 16 of them (94.1%) who carried at least one mutation. Seven patients had the MYO7A mutation (41.2%), which is the most common type in Japanese. Most of the mutations were detected by only the massively parallel DNA sequencing. We report here four patients, who had probable pathogenic mutations in two different Usher syndrome type 1 genes, and one case of MYO7A/PCDH15 digenic inheritance. This is the first report of Usher syndrome mutation analysis using massively parallel DNA sequencing and the frequency of Usher syndrome type 1 genes in Japanese. Mutation screening using this technique has the power to quickly identify mutations of many causative genes while maintaining cost-benefit performance. In addition, the simultaneous mutation analysis of large numbers of genes is useful for detecting mutations in different genes that are possibly disease modifiers or of digenic inheritance.
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spelling pubmed-39496872014-03-12 Massively Parallel DNA Sequencing Facilitates Diagnosis of Patients with Usher Syndrome Type 1 Yoshimura, Hidekane Iwasaki, Satoshi Nishio, Shin-ya Kumakawa, Kozo Tono, Tetsuya Kobayashi, Yumiko Sato, Hiroaki Nagai, Kyoko Ishikawa, Kotaro Ikezono, Tetsuo Naito, Yasushi Fukushima, Kunihiro Oshikawa, Chie Kimitsuki, Takashi Nakanishi, Hiroshi Usami, Shin-ichi PLoS One Research Article Usher syndrome is an autosomal recessive disorder manifesting hearing loss, retinitis pigmentosa and vestibular dysfunction, and having three clinical subtypes. Usher syndrome type 1 is the most severe subtype due to its profound hearing loss, lack of vestibular responses, and retinitis pigmentosa that appears in prepuberty. Six of the corresponding genes have been identified, making early diagnosis through DNA testing possible, with many immediate and several long-term advantages for patients and their families. However, the conventional genetic techniques, such as direct sequence analysis, are both time-consuming and expensive. Targeted exon sequencing of selected genes using the massively parallel DNA sequencing technology will potentially enable us to systematically tackle previously intractable monogenic disorders and improve molecular diagnosis. Using this technique combined with direct sequence analysis, we screened 17 unrelated Usher syndrome type 1 patients and detected probable pathogenic variants in the 16 of them (94.1%) who carried at least one mutation. Seven patients had the MYO7A mutation (41.2%), which is the most common type in Japanese. Most of the mutations were detected by only the massively parallel DNA sequencing. We report here four patients, who had probable pathogenic mutations in two different Usher syndrome type 1 genes, and one case of MYO7A/PCDH15 digenic inheritance. This is the first report of Usher syndrome mutation analysis using massively parallel DNA sequencing and the frequency of Usher syndrome type 1 genes in Japanese. Mutation screening using this technique has the power to quickly identify mutations of many causative genes while maintaining cost-benefit performance. In addition, the simultaneous mutation analysis of large numbers of genes is useful for detecting mutations in different genes that are possibly disease modifiers or of digenic inheritance. Public Library of Science 2014-03-11 /pmc/articles/PMC3949687/ /pubmed/24618850 http://dx.doi.org/10.1371/journal.pone.0090688 Text en © 2014 Yoshimura et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Yoshimura, Hidekane
Iwasaki, Satoshi
Nishio, Shin-ya
Kumakawa, Kozo
Tono, Tetsuya
Kobayashi, Yumiko
Sato, Hiroaki
Nagai, Kyoko
Ishikawa, Kotaro
Ikezono, Tetsuo
Naito, Yasushi
Fukushima, Kunihiro
Oshikawa, Chie
Kimitsuki, Takashi
Nakanishi, Hiroshi
Usami, Shin-ichi
Massively Parallel DNA Sequencing Facilitates Diagnosis of Patients with Usher Syndrome Type 1
title Massively Parallel DNA Sequencing Facilitates Diagnosis of Patients with Usher Syndrome Type 1
title_full Massively Parallel DNA Sequencing Facilitates Diagnosis of Patients with Usher Syndrome Type 1
title_fullStr Massively Parallel DNA Sequencing Facilitates Diagnosis of Patients with Usher Syndrome Type 1
title_full_unstemmed Massively Parallel DNA Sequencing Facilitates Diagnosis of Patients with Usher Syndrome Type 1
title_short Massively Parallel DNA Sequencing Facilitates Diagnosis of Patients with Usher Syndrome Type 1
title_sort massively parallel dna sequencing facilitates diagnosis of patients with usher syndrome type 1
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3949687/
https://www.ncbi.nlm.nih.gov/pubmed/24618850
http://dx.doi.org/10.1371/journal.pone.0090688
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