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Distinctive features of single nucleotide alterations in induced pluripotent stem cells with different types of DNA repair deficiency disorders

Disease-specific induced pluripotent stem cells (iPSCs) have been used as a model to analyze pathogenesis of disease. In this study, we generated iPSCs derived from a fibroblastic cell line of xeroderma pigmentosum (XP) group A (XPA-iPSCs), a rare autosomal recessive hereditary disease in which pati...

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Autores principales: Okamura, Kohji, Sakaguchi, Hironari, Sakamoto-Abutani, Rie, Nakanishi, Mahito, Nishimura, Ken, Yamazaki-Inoue, Mayu, Ohtaka, Manami, Periasamy, Vaiyapuri Subbarayan, Alshatwi, Ali Abdullah, Higuchi, Akon, Hanaoka, Kazunori, Nakabayashi, Kazuhiko, Takada, Shuji, Hata, Kenichiro, Toyoda, Masashi, Umezawa, Akihiro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4873825/
https://www.ncbi.nlm.nih.gov/pubmed/27197874
http://dx.doi.org/10.1038/srep26342
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author Okamura, Kohji
Sakaguchi, Hironari
Sakamoto-Abutani, Rie
Nakanishi, Mahito
Nishimura, Ken
Yamazaki-Inoue, Mayu
Ohtaka, Manami
Periasamy, Vaiyapuri Subbarayan
Alshatwi, Ali Abdullah
Higuchi, Akon
Hanaoka, Kazunori
Nakabayashi, Kazuhiko
Takada, Shuji
Hata, Kenichiro
Toyoda, Masashi
Umezawa, Akihiro
author_facet Okamura, Kohji
Sakaguchi, Hironari
Sakamoto-Abutani, Rie
Nakanishi, Mahito
Nishimura, Ken
Yamazaki-Inoue, Mayu
Ohtaka, Manami
Periasamy, Vaiyapuri Subbarayan
Alshatwi, Ali Abdullah
Higuchi, Akon
Hanaoka, Kazunori
Nakabayashi, Kazuhiko
Takada, Shuji
Hata, Kenichiro
Toyoda, Masashi
Umezawa, Akihiro
author_sort Okamura, Kohji
collection PubMed
description Disease-specific induced pluripotent stem cells (iPSCs) have been used as a model to analyze pathogenesis of disease. In this study, we generated iPSCs derived from a fibroblastic cell line of xeroderma pigmentosum (XP) group A (XPA-iPSCs), a rare autosomal recessive hereditary disease in which patients develop skin cancer in the areas of skin exposed to sunlight. XPA-iPSCs exhibited hypersensitivity to ultraviolet exposure and accumulation of single-nucleotide substitutions when compared with ataxia telangiectasia-derived iPSCs that were established in a previous study. However, XPA-iPSCs did not show any chromosomal instability in vitro, i.e. intact chromosomes were maintained. The results were mutually compensating for examining two major sources of mutations, nucleotide excision repair deficiency and double-strand break repair deficiency. Like XP patients, XPA-iPSCs accumulated single-nucleotide substitutions that are associated with malignant melanoma, a manifestation of XP. These results indicate that XPA-iPSCs may serve a monitoring tool (analogous to the Ames test but using mammalian cells) to measure single-nucleotide alterations, and may be a good model to clarify pathogenesis of XP. In addition, XPA-iPSCs may allow us to facilitate development of drugs that delay genetic alteration and decrease hypersensitivity to ultraviolet for therapeutic applications.
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spelling pubmed-48738252016-06-02 Distinctive features of single nucleotide alterations in induced pluripotent stem cells with different types of DNA repair deficiency disorders Okamura, Kohji Sakaguchi, Hironari Sakamoto-Abutani, Rie Nakanishi, Mahito Nishimura, Ken Yamazaki-Inoue, Mayu Ohtaka, Manami Periasamy, Vaiyapuri Subbarayan Alshatwi, Ali Abdullah Higuchi, Akon Hanaoka, Kazunori Nakabayashi, Kazuhiko Takada, Shuji Hata, Kenichiro Toyoda, Masashi Umezawa, Akihiro Sci Rep Article Disease-specific induced pluripotent stem cells (iPSCs) have been used as a model to analyze pathogenesis of disease. In this study, we generated iPSCs derived from a fibroblastic cell line of xeroderma pigmentosum (XP) group A (XPA-iPSCs), a rare autosomal recessive hereditary disease in which patients develop skin cancer in the areas of skin exposed to sunlight. XPA-iPSCs exhibited hypersensitivity to ultraviolet exposure and accumulation of single-nucleotide substitutions when compared with ataxia telangiectasia-derived iPSCs that were established in a previous study. However, XPA-iPSCs did not show any chromosomal instability in vitro, i.e. intact chromosomes were maintained. The results were mutually compensating for examining two major sources of mutations, nucleotide excision repair deficiency and double-strand break repair deficiency. Like XP patients, XPA-iPSCs accumulated single-nucleotide substitutions that are associated with malignant melanoma, a manifestation of XP. These results indicate that XPA-iPSCs may serve a monitoring tool (analogous to the Ames test but using mammalian cells) to measure single-nucleotide alterations, and may be a good model to clarify pathogenesis of XP. In addition, XPA-iPSCs may allow us to facilitate development of drugs that delay genetic alteration and decrease hypersensitivity to ultraviolet for therapeutic applications. Nature Publishing Group 2016-05-20 /pmc/articles/PMC4873825/ /pubmed/27197874 http://dx.doi.org/10.1038/srep26342 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Okamura, Kohji
Sakaguchi, Hironari
Sakamoto-Abutani, Rie
Nakanishi, Mahito
Nishimura, Ken
Yamazaki-Inoue, Mayu
Ohtaka, Manami
Periasamy, Vaiyapuri Subbarayan
Alshatwi, Ali Abdullah
Higuchi, Akon
Hanaoka, Kazunori
Nakabayashi, Kazuhiko
Takada, Shuji
Hata, Kenichiro
Toyoda, Masashi
Umezawa, Akihiro
Distinctive features of single nucleotide alterations in induced pluripotent stem cells with different types of DNA repair deficiency disorders
title Distinctive features of single nucleotide alterations in induced pluripotent stem cells with different types of DNA repair deficiency disorders
title_full Distinctive features of single nucleotide alterations in induced pluripotent stem cells with different types of DNA repair deficiency disorders
title_fullStr Distinctive features of single nucleotide alterations in induced pluripotent stem cells with different types of DNA repair deficiency disorders
title_full_unstemmed Distinctive features of single nucleotide alterations in induced pluripotent stem cells with different types of DNA repair deficiency disorders
title_short Distinctive features of single nucleotide alterations in induced pluripotent stem cells with different types of DNA repair deficiency disorders
title_sort distinctive features of single nucleotide alterations in induced pluripotent stem cells with different types of dna repair deficiency disorders
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4873825/
https://www.ncbi.nlm.nih.gov/pubmed/27197874
http://dx.doi.org/10.1038/srep26342
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