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FUS Interacts with HSP60 to Promote Mitochondrial Damage

FUS-proteinopathies, a group of heterogeneous disorders including ALS-FUS and FTLD-FUS, are characterized by the formation of inclusion bodies containing the nuclear protein FUS in the affected patients. However, the underlying molecular and cellular defects remain unclear. Here we provide evidence...

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Autores principales: Deng, Jianwen, Yang, Mengxue, Chen, Yanbo, Chen, Xiaoping, Liu, Jianghong, Sun, Shufeng, Cheng, Haipeng, Li, Yang, Bigio, Eileen H., Mesulam, Marsel, Xu, Qi, Du, Sidan, Fushimi, Kazuo, Zhu, Li, Wu, Jane Y.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4559378/
https://www.ncbi.nlm.nih.gov/pubmed/26335776
http://dx.doi.org/10.1371/journal.pgen.1005357
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author Deng, Jianwen
Yang, Mengxue
Chen, Yanbo
Chen, Xiaoping
Liu, Jianghong
Sun, Shufeng
Cheng, Haipeng
Li, Yang
Bigio, Eileen H.
Mesulam, Marsel
Xu, Qi
Du, Sidan
Fushimi, Kazuo
Zhu, Li
Wu, Jane Y.
author_facet Deng, Jianwen
Yang, Mengxue
Chen, Yanbo
Chen, Xiaoping
Liu, Jianghong
Sun, Shufeng
Cheng, Haipeng
Li, Yang
Bigio, Eileen H.
Mesulam, Marsel
Xu, Qi
Du, Sidan
Fushimi, Kazuo
Zhu, Li
Wu, Jane Y.
author_sort Deng, Jianwen
collection PubMed
description FUS-proteinopathies, a group of heterogeneous disorders including ALS-FUS and FTLD-FUS, are characterized by the formation of inclusion bodies containing the nuclear protein FUS in the affected patients. However, the underlying molecular and cellular defects remain unclear. Here we provide evidence for mitochondrial localization of FUS and its induction of mitochondrial damage. Remarkably, FTLD-FUS brain samples show increased FUS expression and mitochondrial defects. Biochemical and genetic data demonstrate that FUS interacts with a mitochondrial chaperonin, HSP60, and that FUS translocation to mitochondria is, at least in part, mediated by HSP60. Down-regulating HSP60 reduces mitochondrially localized FUS and partially rescues mitochondrial defects and neurodegenerative phenotypes caused by FUS expression in transgenic flies. This is the first report of direct mitochondrial targeting by a nuclear protein associated with neurodegeneration, suggesting that mitochondrial impairment may represent a critical event in different forms of FUS-proteinopathies and a common pathological feature for both ALS-FUS and FTLD-FUS. Our study offers a potential explanation for the highly heterogeneous nature and complex genetic presentation of different forms of FUS-proteinopathies. Our data also suggest that mitochondrial damage may be a target in future development of diagnostic and therapeutic tools for FUS-proteinopathies, a group of devastating neurodegenerative diseases.
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spelling pubmed-45593782015-09-10 FUS Interacts with HSP60 to Promote Mitochondrial Damage Deng, Jianwen Yang, Mengxue Chen, Yanbo Chen, Xiaoping Liu, Jianghong Sun, Shufeng Cheng, Haipeng Li, Yang Bigio, Eileen H. Mesulam, Marsel Xu, Qi Du, Sidan Fushimi, Kazuo Zhu, Li Wu, Jane Y. PLoS Genet Research Article FUS-proteinopathies, a group of heterogeneous disorders including ALS-FUS and FTLD-FUS, are characterized by the formation of inclusion bodies containing the nuclear protein FUS in the affected patients. However, the underlying molecular and cellular defects remain unclear. Here we provide evidence for mitochondrial localization of FUS and its induction of mitochondrial damage. Remarkably, FTLD-FUS brain samples show increased FUS expression and mitochondrial defects. Biochemical and genetic data demonstrate that FUS interacts with a mitochondrial chaperonin, HSP60, and that FUS translocation to mitochondria is, at least in part, mediated by HSP60. Down-regulating HSP60 reduces mitochondrially localized FUS and partially rescues mitochondrial defects and neurodegenerative phenotypes caused by FUS expression in transgenic flies. This is the first report of direct mitochondrial targeting by a nuclear protein associated with neurodegeneration, suggesting that mitochondrial impairment may represent a critical event in different forms of FUS-proteinopathies and a common pathological feature for both ALS-FUS and FTLD-FUS. Our study offers a potential explanation for the highly heterogeneous nature and complex genetic presentation of different forms of FUS-proteinopathies. Our data also suggest that mitochondrial damage may be a target in future development of diagnostic and therapeutic tools for FUS-proteinopathies, a group of devastating neurodegenerative diseases. Public Library of Science 2015-09-03 /pmc/articles/PMC4559378/ /pubmed/26335776 http://dx.doi.org/10.1371/journal.pgen.1005357 Text en © 2015 Deng 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
Deng, Jianwen
Yang, Mengxue
Chen, Yanbo
Chen, Xiaoping
Liu, Jianghong
Sun, Shufeng
Cheng, Haipeng
Li, Yang
Bigio, Eileen H.
Mesulam, Marsel
Xu, Qi
Du, Sidan
Fushimi, Kazuo
Zhu, Li
Wu, Jane Y.
FUS Interacts with HSP60 to Promote Mitochondrial Damage
title FUS Interacts with HSP60 to Promote Mitochondrial Damage
title_full FUS Interacts with HSP60 to Promote Mitochondrial Damage
title_fullStr FUS Interacts with HSP60 to Promote Mitochondrial Damage
title_full_unstemmed FUS Interacts with HSP60 to Promote Mitochondrial Damage
title_short FUS Interacts with HSP60 to Promote Mitochondrial Damage
title_sort fus interacts with hsp60 to promote mitochondrial damage
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4559378/
https://www.ncbi.nlm.nih.gov/pubmed/26335776
http://dx.doi.org/10.1371/journal.pgen.1005357
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