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HMGB1 facilitates repair of mitochondrial DNA damage and extends the lifespan of mutant ataxin-1 knock-in mice

Mutant ataxin-1 (Atxn1), which causes spinocerebellar ataxia type 1 (SCA1), binds to and impairs the function of high-mobility group box 1 (HMGB1), a crucial nuclear protein that regulates DNA architectural changes essential for DNA damage repair and transcription. In this study, we established that...

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Autores principales: Ito, Hikaru, Fujita, Kyota, Tagawa, Kazuhiko, Chen, Xigui, Homma, Hidenori, Sasabe, Toshikazu, Shimizu, Jun, Shimizu, Shigeomi, Tamura, Takuya, Muramatsu, Shin-ichi, Okazawa, Hitoshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BlackWell Publishing Ltd 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4309669/
https://www.ncbi.nlm.nih.gov/pubmed/25510912
http://dx.doi.org/10.15252/emmm.201404392
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author Ito, Hikaru
Fujita, Kyota
Tagawa, Kazuhiko
Chen, Xigui
Homma, Hidenori
Sasabe, Toshikazu
Shimizu, Jun
Shimizu, Shigeomi
Tamura, Takuya
Muramatsu, Shin-ichi
Okazawa, Hitoshi
author_facet Ito, Hikaru
Fujita, Kyota
Tagawa, Kazuhiko
Chen, Xigui
Homma, Hidenori
Sasabe, Toshikazu
Shimizu, Jun
Shimizu, Shigeomi
Tamura, Takuya
Muramatsu, Shin-ichi
Okazawa, Hitoshi
author_sort Ito, Hikaru
collection PubMed
description Mutant ataxin-1 (Atxn1), which causes spinocerebellar ataxia type 1 (SCA1), binds to and impairs the function of high-mobility group box 1 (HMGB1), a crucial nuclear protein that regulates DNA architectural changes essential for DNA damage repair and transcription. In this study, we established that transgenic or virus vector-mediated complementation with HMGB1 ameliorates motor dysfunction and prolongs lifespan in mutant Atxn1 knock-in (Atxn1-KI) mice. We identified mitochondrial DNA damage repair by HMGB1 as a novel molecular basis for this effect, in addition to the mechanisms already associated with HMGB1 function, such as nuclear DNA damage repair and nuclear transcription. The dysfunction and the improvement of mitochondrial DNA damage repair functions are tightly associated with the exacerbation and rescue, respectively, of symptoms, supporting the involvement of mitochondrial DNA quality control by HMGB1 in SCA1 pathology. Moreover, we show that the rescue of Purkinje cell dendrites and dendritic spines by HMGB1 could be downstream effects. Although extracellular HMGB1 triggers inflammation mediated by Toll-like receptor and receptor for advanced glycation end products, upregulation of intracellular HMGB1 does not induce such side effects. Thus, viral delivery of HMGB1 is a candidate approach by which to modify the disease progression of SCA1 even after the onset.
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spelling pubmed-43096692015-02-04 HMGB1 facilitates repair of mitochondrial DNA damage and extends the lifespan of mutant ataxin-1 knock-in mice Ito, Hikaru Fujita, Kyota Tagawa, Kazuhiko Chen, Xigui Homma, Hidenori Sasabe, Toshikazu Shimizu, Jun Shimizu, Shigeomi Tamura, Takuya Muramatsu, Shin-ichi Okazawa, Hitoshi EMBO Mol Med Research Articles Mutant ataxin-1 (Atxn1), which causes spinocerebellar ataxia type 1 (SCA1), binds to and impairs the function of high-mobility group box 1 (HMGB1), a crucial nuclear protein that regulates DNA architectural changes essential for DNA damage repair and transcription. In this study, we established that transgenic or virus vector-mediated complementation with HMGB1 ameliorates motor dysfunction and prolongs lifespan in mutant Atxn1 knock-in (Atxn1-KI) mice. We identified mitochondrial DNA damage repair by HMGB1 as a novel molecular basis for this effect, in addition to the mechanisms already associated with HMGB1 function, such as nuclear DNA damage repair and nuclear transcription. The dysfunction and the improvement of mitochondrial DNA damage repair functions are tightly associated with the exacerbation and rescue, respectively, of symptoms, supporting the involvement of mitochondrial DNA quality control by HMGB1 in SCA1 pathology. Moreover, we show that the rescue of Purkinje cell dendrites and dendritic spines by HMGB1 could be downstream effects. Although extracellular HMGB1 triggers inflammation mediated by Toll-like receptor and receptor for advanced glycation end products, upregulation of intracellular HMGB1 does not induce such side effects. Thus, viral delivery of HMGB1 is a candidate approach by which to modify the disease progression of SCA1 even after the onset. BlackWell Publishing Ltd 2015-01 2014-12-15 /pmc/articles/PMC4309669/ /pubmed/25510912 http://dx.doi.org/10.15252/emmm.201404392 Text en © 2014 The Authors. Published under the terms of the CC BY 4.0 license http://creativecommons.org/licenses/by/4.0/ This is an open access article under the terms of the Creative Commons Attribution 4.0 License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Ito, Hikaru
Fujita, Kyota
Tagawa, Kazuhiko
Chen, Xigui
Homma, Hidenori
Sasabe, Toshikazu
Shimizu, Jun
Shimizu, Shigeomi
Tamura, Takuya
Muramatsu, Shin-ichi
Okazawa, Hitoshi
HMGB1 facilitates repair of mitochondrial DNA damage and extends the lifespan of mutant ataxin-1 knock-in mice
title HMGB1 facilitates repair of mitochondrial DNA damage and extends the lifespan of mutant ataxin-1 knock-in mice
title_full HMGB1 facilitates repair of mitochondrial DNA damage and extends the lifespan of mutant ataxin-1 knock-in mice
title_fullStr HMGB1 facilitates repair of mitochondrial DNA damage and extends the lifespan of mutant ataxin-1 knock-in mice
title_full_unstemmed HMGB1 facilitates repair of mitochondrial DNA damage and extends the lifespan of mutant ataxin-1 knock-in mice
title_short HMGB1 facilitates repair of mitochondrial DNA damage and extends the lifespan of mutant ataxin-1 knock-in mice
title_sort hmgb1 facilitates repair of mitochondrial dna damage and extends the lifespan of mutant ataxin-1 knock-in mice
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4309669/
https://www.ncbi.nlm.nih.gov/pubmed/25510912
http://dx.doi.org/10.15252/emmm.201404392
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