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New MT-ND6 and NDUFA1 mutations in mitochondrial respiratory chain disorders

OBJECTIVE: Mitochondrial respiratory chain disorder (MRCD) is an intractable disease of infants with variable clinical symptoms. Our goal was to identify the causative mutations in MRCD patients. METHODS: The subjects were 90 children diagnosed with MRCD by enzyme assay. We analyzed whole mitochondr...

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Autores principales: Uehara, Natsumi, Mori, Masato, Tokuzawa, Yoshimi, Mizuno, Yosuke, Tamaru, Shunsuke, Kohda, Masakazu, Moriyama, Yohsuke, Nakachi, Yutaka, Matoba, Nana, Sakai, Tetsuro, Yamazaki, Taro, Harashima, Hiroko, Murayama, Kei, Hattori, Keisuke, Hayashi, Jun-Ichi, Yamagata, Takanori, Fujita, Yasunori, Ito, Masafumi, Tanaka, Masashi, Nibu, Ken-ichi, Ohtake, Akira, Okazaki, Yasushi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BlackWell Publishing Ltd 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4184687/
https://www.ncbi.nlm.nih.gov/pubmed/25356405
http://dx.doi.org/10.1002/acn3.59
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author Uehara, Natsumi
Mori, Masato
Tokuzawa, Yoshimi
Mizuno, Yosuke
Tamaru, Shunsuke
Kohda, Masakazu
Moriyama, Yohsuke
Nakachi, Yutaka
Matoba, Nana
Sakai, Tetsuro
Yamazaki, Taro
Harashima, Hiroko
Murayama, Kei
Hattori, Keisuke
Hayashi, Jun-Ichi
Yamagata, Takanori
Fujita, Yasunori
Ito, Masafumi
Tanaka, Masashi
Nibu, Ken-ichi
Ohtake, Akira
Okazaki, Yasushi
author_facet Uehara, Natsumi
Mori, Masato
Tokuzawa, Yoshimi
Mizuno, Yosuke
Tamaru, Shunsuke
Kohda, Masakazu
Moriyama, Yohsuke
Nakachi, Yutaka
Matoba, Nana
Sakai, Tetsuro
Yamazaki, Taro
Harashima, Hiroko
Murayama, Kei
Hattori, Keisuke
Hayashi, Jun-Ichi
Yamagata, Takanori
Fujita, Yasunori
Ito, Masafumi
Tanaka, Masashi
Nibu, Ken-ichi
Ohtake, Akira
Okazaki, Yasushi
author_sort Uehara, Natsumi
collection PubMed
description OBJECTIVE: Mitochondrial respiratory chain disorder (MRCD) is an intractable disease of infants with variable clinical symptoms. Our goal was to identify the causative mutations in MRCD patients. METHODS: The subjects were 90 children diagnosed with MRCD by enzyme assay. We analyzed whole mitochondrial DNA (mtDNA) sequences. A cybrid study was performed in two patients. Whole exome sequencing was performed for one of these two patients whose mtDNA variant was confirmed as non-pathogenic. RESULTS: Whole mtDNA sequences identified 29 mtDNA variants in 29 patients (13 were previously reported, the other 13 variants and three deletions were novel). The remaining 61 patients had no pathogenic mutations in their mtDNA. Of the 13 patients harboring unreported mtDNA variants, we excluded seven variants by manual curation. Of the remaining six variants, we selected two Leigh syndrome patients whose mitochondrial enzyme activity was decreased in their fibroblasts and performed a cybrid study. We confirmed that m.14439G>A (MT-ND6) was pathogenic, while m.1356A>G (mitochondrial 12S rRNA) was shown to be a non-pathogenic polymorphism. Exome sequencing and a complementation study of the latter patient identified a novel c.55C>T hemizygous missense mutation in the nuclear-encoded gene NDUFA1. INTERPRETATION: Our results demonstrate that it is important to perform whole mtDNA sequencing rather than only typing reported mutations. Cybrid assays are also useful to diagnose the pathogenicity of mtDNA variants, and whole exome sequencing is a powerful tool to diagnose nuclear gene mutations as molecular diagnosis can provide a lead to appropriate genetic counseling.
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spelling pubmed-41846872014-10-29 New MT-ND6 and NDUFA1 mutations in mitochondrial respiratory chain disorders Uehara, Natsumi Mori, Masato Tokuzawa, Yoshimi Mizuno, Yosuke Tamaru, Shunsuke Kohda, Masakazu Moriyama, Yohsuke Nakachi, Yutaka Matoba, Nana Sakai, Tetsuro Yamazaki, Taro Harashima, Hiroko Murayama, Kei Hattori, Keisuke Hayashi, Jun-Ichi Yamagata, Takanori Fujita, Yasunori Ito, Masafumi Tanaka, Masashi Nibu, Ken-ichi Ohtake, Akira Okazaki, Yasushi Ann Clin Transl Neurol Research Papers OBJECTIVE: Mitochondrial respiratory chain disorder (MRCD) is an intractable disease of infants with variable clinical symptoms. Our goal was to identify the causative mutations in MRCD patients. METHODS: The subjects were 90 children diagnosed with MRCD by enzyme assay. We analyzed whole mitochondrial DNA (mtDNA) sequences. A cybrid study was performed in two patients. Whole exome sequencing was performed for one of these two patients whose mtDNA variant was confirmed as non-pathogenic. RESULTS: Whole mtDNA sequences identified 29 mtDNA variants in 29 patients (13 were previously reported, the other 13 variants and three deletions were novel). The remaining 61 patients had no pathogenic mutations in their mtDNA. Of the 13 patients harboring unreported mtDNA variants, we excluded seven variants by manual curation. Of the remaining six variants, we selected two Leigh syndrome patients whose mitochondrial enzyme activity was decreased in their fibroblasts and performed a cybrid study. We confirmed that m.14439G>A (MT-ND6) was pathogenic, while m.1356A>G (mitochondrial 12S rRNA) was shown to be a non-pathogenic polymorphism. Exome sequencing and a complementation study of the latter patient identified a novel c.55C>T hemizygous missense mutation in the nuclear-encoded gene NDUFA1. INTERPRETATION: Our results demonstrate that it is important to perform whole mtDNA sequencing rather than only typing reported mutations. Cybrid assays are also useful to diagnose the pathogenicity of mtDNA variants, and whole exome sequencing is a powerful tool to diagnose nuclear gene mutations as molecular diagnosis can provide a lead to appropriate genetic counseling. BlackWell Publishing Ltd 2014-05 2014-04-28 /pmc/articles/PMC4184687/ /pubmed/25356405 http://dx.doi.org/10.1002/acn3.59 Text en © 2014 The Authors. Annals of Clinical and Translational Neurology published by Wiley Periodicals, Inc on behalf of American Neurological Association. http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open access article under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs 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 Research Papers
Uehara, Natsumi
Mori, Masato
Tokuzawa, Yoshimi
Mizuno, Yosuke
Tamaru, Shunsuke
Kohda, Masakazu
Moriyama, Yohsuke
Nakachi, Yutaka
Matoba, Nana
Sakai, Tetsuro
Yamazaki, Taro
Harashima, Hiroko
Murayama, Kei
Hattori, Keisuke
Hayashi, Jun-Ichi
Yamagata, Takanori
Fujita, Yasunori
Ito, Masafumi
Tanaka, Masashi
Nibu, Ken-ichi
Ohtake, Akira
Okazaki, Yasushi
New MT-ND6 and NDUFA1 mutations in mitochondrial respiratory chain disorders
title New MT-ND6 and NDUFA1 mutations in mitochondrial respiratory chain disorders
title_full New MT-ND6 and NDUFA1 mutations in mitochondrial respiratory chain disorders
title_fullStr New MT-ND6 and NDUFA1 mutations in mitochondrial respiratory chain disorders
title_full_unstemmed New MT-ND6 and NDUFA1 mutations in mitochondrial respiratory chain disorders
title_short New MT-ND6 and NDUFA1 mutations in mitochondrial respiratory chain disorders
title_sort new mt-nd6 and ndufa1 mutations in mitochondrial respiratory chain disorders
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4184687/
https://www.ncbi.nlm.nih.gov/pubmed/25356405
http://dx.doi.org/10.1002/acn3.59
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