Cargando…

Targeting DNA topoisomerases or checkpoint kinases results in an overload of chaperone systems, triggering aggregation of a metastable subproteome

A loss of the checkpoint kinase ataxia telangiectasia mutated (ATM) leads to impairments in the DNA damage response, and in humans causes cerebellar neurodegeneration, and an increased risk of cancer. A loss of ATM is also associated with increased protein aggregation. The relevance and characterist...

Descripción completa

Detalles Bibliográficos
Autores principales: Huiting, Wouter, Dekker, Suzanne L, van der Lienden, Joris CJ, Mergener, Rafaella, Musskopf, Maiara K, Furtado, Gabriel V, Gerrits, Emma, Coit, David, Oghbaie, Mehrnoosh, Di Stefano, Luciano H, Schepers, Hein, van Waarde-Verhagen, Maria AWH, Couzijn, Suzanne, Barazzuol, Lara, LaCava, John, Kampinga, Harm H, Bergink, Steven
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8871389/
https://www.ncbi.nlm.nih.gov/pubmed/35200138
http://dx.doi.org/10.7554/eLife.70726
_version_ 1784656985114804224
author Huiting, Wouter
Dekker, Suzanne L
van der Lienden, Joris CJ
Mergener, Rafaella
Musskopf, Maiara K
Furtado, Gabriel V
Gerrits, Emma
Coit, David
Oghbaie, Mehrnoosh
Di Stefano, Luciano H
Schepers, Hein
van Waarde-Verhagen, Maria AWH
Couzijn, Suzanne
Barazzuol, Lara
LaCava, John
Kampinga, Harm H
Bergink, Steven
author_facet Huiting, Wouter
Dekker, Suzanne L
van der Lienden, Joris CJ
Mergener, Rafaella
Musskopf, Maiara K
Furtado, Gabriel V
Gerrits, Emma
Coit, David
Oghbaie, Mehrnoosh
Di Stefano, Luciano H
Schepers, Hein
van Waarde-Verhagen, Maria AWH
Couzijn, Suzanne
Barazzuol, Lara
LaCava, John
Kampinga, Harm H
Bergink, Steven
author_sort Huiting, Wouter
collection PubMed
description A loss of the checkpoint kinase ataxia telangiectasia mutated (ATM) leads to impairments in the DNA damage response, and in humans causes cerebellar neurodegeneration, and an increased risk of cancer. A loss of ATM is also associated with increased protein aggregation. The relevance and characteristics of this aggregation are still incompletely understood. Moreover, it is unclear to what extent other genotoxic conditions can trigger protein aggregation as well. Here, we show that targeting ATM, but also ATR or DNA topoisomerases, results in the widespread aggregation of a metastable, disease-associated subfraction of the proteome. Aggregation-prone model substrates, including Huntingtin exon 1 containing an expanded polyglutamine repeat, aggregate faster under these conditions. This increased aggregation results from an overload of chaperone systems, which lowers the cell-intrinsic threshold for proteins to aggregate. In line with this, we find that inhibition of the HSP70 chaperone system further exacerbates the increased protein aggregation. Moreover, we identify the molecular chaperone HSPB5 as a cell-specific suppressor of it. Our findings reveal that various genotoxic conditions trigger widespread protein aggregation in a manner that is highly reminiscent of the aggregation occurring in situations of proteotoxic stress and in proteinopathies.
format Online
Article
Text
id pubmed-8871389
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher eLife Sciences Publications, Ltd
record_format MEDLINE/PubMed
spelling pubmed-88713892022-02-25 Targeting DNA topoisomerases or checkpoint kinases results in an overload of chaperone systems, triggering aggregation of a metastable subproteome Huiting, Wouter Dekker, Suzanne L van der Lienden, Joris CJ Mergener, Rafaella Musskopf, Maiara K Furtado, Gabriel V Gerrits, Emma Coit, David Oghbaie, Mehrnoosh Di Stefano, Luciano H Schepers, Hein van Waarde-Verhagen, Maria AWH Couzijn, Suzanne Barazzuol, Lara LaCava, John Kampinga, Harm H Bergink, Steven eLife Cell Biology A loss of the checkpoint kinase ataxia telangiectasia mutated (ATM) leads to impairments in the DNA damage response, and in humans causes cerebellar neurodegeneration, and an increased risk of cancer. A loss of ATM is also associated with increased protein aggregation. The relevance and characteristics of this aggregation are still incompletely understood. Moreover, it is unclear to what extent other genotoxic conditions can trigger protein aggregation as well. Here, we show that targeting ATM, but also ATR or DNA topoisomerases, results in the widespread aggregation of a metastable, disease-associated subfraction of the proteome. Aggregation-prone model substrates, including Huntingtin exon 1 containing an expanded polyglutamine repeat, aggregate faster under these conditions. This increased aggregation results from an overload of chaperone systems, which lowers the cell-intrinsic threshold for proteins to aggregate. In line with this, we find that inhibition of the HSP70 chaperone system further exacerbates the increased protein aggregation. Moreover, we identify the molecular chaperone HSPB5 as a cell-specific suppressor of it. Our findings reveal that various genotoxic conditions trigger widespread protein aggregation in a manner that is highly reminiscent of the aggregation occurring in situations of proteotoxic stress and in proteinopathies. eLife Sciences Publications, Ltd 2022-02-24 /pmc/articles/PMC8871389/ /pubmed/35200138 http://dx.doi.org/10.7554/eLife.70726 Text en © 2022, Huiting et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cell Biology
Huiting, Wouter
Dekker, Suzanne L
van der Lienden, Joris CJ
Mergener, Rafaella
Musskopf, Maiara K
Furtado, Gabriel V
Gerrits, Emma
Coit, David
Oghbaie, Mehrnoosh
Di Stefano, Luciano H
Schepers, Hein
van Waarde-Verhagen, Maria AWH
Couzijn, Suzanne
Barazzuol, Lara
LaCava, John
Kampinga, Harm H
Bergink, Steven
Targeting DNA topoisomerases or checkpoint kinases results in an overload of chaperone systems, triggering aggregation of a metastable subproteome
title Targeting DNA topoisomerases or checkpoint kinases results in an overload of chaperone systems, triggering aggregation of a metastable subproteome
title_full Targeting DNA topoisomerases or checkpoint kinases results in an overload of chaperone systems, triggering aggregation of a metastable subproteome
title_fullStr Targeting DNA topoisomerases or checkpoint kinases results in an overload of chaperone systems, triggering aggregation of a metastable subproteome
title_full_unstemmed Targeting DNA topoisomerases or checkpoint kinases results in an overload of chaperone systems, triggering aggregation of a metastable subproteome
title_short Targeting DNA topoisomerases or checkpoint kinases results in an overload of chaperone systems, triggering aggregation of a metastable subproteome
title_sort targeting dna topoisomerases or checkpoint kinases results in an overload of chaperone systems, triggering aggregation of a metastable subproteome
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8871389/
https://www.ncbi.nlm.nih.gov/pubmed/35200138
http://dx.doi.org/10.7554/eLife.70726
work_keys_str_mv AT huitingwouter targetingdnatopoisomerasesorcheckpointkinasesresultsinanoverloadofchaperonesystemstriggeringaggregationofametastablesubproteome
AT dekkersuzannel targetingdnatopoisomerasesorcheckpointkinasesresultsinanoverloadofchaperonesystemstriggeringaggregationofametastablesubproteome
AT vanderliendenjoriscj targetingdnatopoisomerasesorcheckpointkinasesresultsinanoverloadofchaperonesystemstriggeringaggregationofametastablesubproteome
AT mergenerrafaella targetingdnatopoisomerasesorcheckpointkinasesresultsinanoverloadofchaperonesystemstriggeringaggregationofametastablesubproteome
AT musskopfmaiarak targetingdnatopoisomerasesorcheckpointkinasesresultsinanoverloadofchaperonesystemstriggeringaggregationofametastablesubproteome
AT furtadogabrielv targetingdnatopoisomerasesorcheckpointkinasesresultsinanoverloadofchaperonesystemstriggeringaggregationofametastablesubproteome
AT gerritsemma targetingdnatopoisomerasesorcheckpointkinasesresultsinanoverloadofchaperonesystemstriggeringaggregationofametastablesubproteome
AT coitdavid targetingdnatopoisomerasesorcheckpointkinasesresultsinanoverloadofchaperonesystemstriggeringaggregationofametastablesubproteome
AT oghbaiemehrnoosh targetingdnatopoisomerasesorcheckpointkinasesresultsinanoverloadofchaperonesystemstriggeringaggregationofametastablesubproteome
AT distefanolucianoh targetingdnatopoisomerasesorcheckpointkinasesresultsinanoverloadofchaperonesystemstriggeringaggregationofametastablesubproteome
AT schepershein targetingdnatopoisomerasesorcheckpointkinasesresultsinanoverloadofchaperonesystemstriggeringaggregationofametastablesubproteome
AT vanwaardeverhagenmariaawh targetingdnatopoisomerasesorcheckpointkinasesresultsinanoverloadofchaperonesystemstriggeringaggregationofametastablesubproteome
AT couzijnsuzanne targetingdnatopoisomerasesorcheckpointkinasesresultsinanoverloadofchaperonesystemstriggeringaggregationofametastablesubproteome
AT barazzuollara targetingdnatopoisomerasesorcheckpointkinasesresultsinanoverloadofchaperonesystemstriggeringaggregationofametastablesubproteome
AT lacavajohn targetingdnatopoisomerasesorcheckpointkinasesresultsinanoverloadofchaperonesystemstriggeringaggregationofametastablesubproteome
AT kampingaharmh targetingdnatopoisomerasesorcheckpointkinasesresultsinanoverloadofchaperonesystemstriggeringaggregationofametastablesubproteome
AT berginksteven targetingdnatopoisomerasesorcheckpointkinasesresultsinanoverloadofchaperonesystemstriggeringaggregationofametastablesubproteome