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PARP1 protects from benzo[a]pyrene diol epoxide-induced replication stress and mutagenicity

Poly(ADP-ribosyl)ation (PARylation) is a complex and reversible posttranslational modification catalyzed by poly(ADP-ribose)polymerases (PARPs), which orchestrates protein function and subcellular localization. The function of PARP1 in genotoxic stress response upon induction of oxidative DNA lesion...

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Autores principales: Fischer, Jan M. F., Zubel, Tabea, Jander, Kirsten, Fix, Jelena, Trussina, Irmela R. E. A., Gebhard, Daniel, Bergemann, Jörg, Bürkle, Alexander, Mangerich, Aswin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5866831/
https://www.ncbi.nlm.nih.gov/pubmed/29196784
http://dx.doi.org/10.1007/s00204-017-2115-6
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author Fischer, Jan M. F.
Zubel, Tabea
Jander, Kirsten
Fix, Jelena
Trussina, Irmela R. E. A.
Gebhard, Daniel
Bergemann, Jörg
Bürkle, Alexander
Mangerich, Aswin
author_facet Fischer, Jan M. F.
Zubel, Tabea
Jander, Kirsten
Fix, Jelena
Trussina, Irmela R. E. A.
Gebhard, Daniel
Bergemann, Jörg
Bürkle, Alexander
Mangerich, Aswin
author_sort Fischer, Jan M. F.
collection PubMed
description Poly(ADP-ribosyl)ation (PARylation) is a complex and reversible posttranslational modification catalyzed by poly(ADP-ribose)polymerases (PARPs), which orchestrates protein function and subcellular localization. The function of PARP1 in genotoxic stress response upon induction of oxidative DNA lesions and strand breaks is firmly established, but its role in the response to chemical-induced, bulky DNA adducts is understood incompletely. To address the role of PARP1 in the response to bulky DNA adducts, we treated human cancer cells with benzo[a]pyrene 7,8-dihydrodiol-9,10-epoxide (BPDE), which represents the active metabolite of the environmental carcinogen benzo[a]pyrene [B(a)P], in nanomolar to low micromolar concentrations. Using a highly sensitive LC-MS/MS method, we revealed that BPDE induces cellular PAR formation in a time- and dose-dependent manner. Consistently, PARP1 activity significantly contributed to BPDE-induced genotoxic stress response. On one hand, PARP1 ablation rescued BPDE-induced NAD(+) depletion and protected cells from BPDE-induced short-term toxicity. On the other hand, strong sensitization effects of PARP inhibition and PARP1 ablation were observed in long-term clonogenic survival assays. Furthermore, PARP1 ablation significantly affected BPDE-induced S- and G2-phase transitions. Together, these results point towards unresolved BPDE-DNA lesions triggering replicative stress. In line with this, BPDE exposure resulted in enhanced formation and persistence of DNA double-strand breaks in PARP1-deficient cells as evaluated by microscopic co-localization studies of 53BP1 and γH2A.X foci. Consistently, an HPRT mutation assay revealed that PARP inhibition potentiated the mutagenicity of BPDE. In conclusion, this study demonstrates a profound role of PARylation in BPDE-induced genotoxic stress response with significant functional consequences and potential relevance with regard to B[a]P-induced cancer risks. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1007/s00204-017-2115-6) contains supplementary material, which is available to authorized users.
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spelling pubmed-58668312018-03-27 PARP1 protects from benzo[a]pyrene diol epoxide-induced replication stress and mutagenicity Fischer, Jan M. F. Zubel, Tabea Jander, Kirsten Fix, Jelena Trussina, Irmela R. E. A. Gebhard, Daniel Bergemann, Jörg Bürkle, Alexander Mangerich, Aswin Arch Toxicol Genotoxicity and Carcinogenicity Poly(ADP-ribosyl)ation (PARylation) is a complex and reversible posttranslational modification catalyzed by poly(ADP-ribose)polymerases (PARPs), which orchestrates protein function and subcellular localization. The function of PARP1 in genotoxic stress response upon induction of oxidative DNA lesions and strand breaks is firmly established, but its role in the response to chemical-induced, bulky DNA adducts is understood incompletely. To address the role of PARP1 in the response to bulky DNA adducts, we treated human cancer cells with benzo[a]pyrene 7,8-dihydrodiol-9,10-epoxide (BPDE), which represents the active metabolite of the environmental carcinogen benzo[a]pyrene [B(a)P], in nanomolar to low micromolar concentrations. Using a highly sensitive LC-MS/MS method, we revealed that BPDE induces cellular PAR formation in a time- and dose-dependent manner. Consistently, PARP1 activity significantly contributed to BPDE-induced genotoxic stress response. On one hand, PARP1 ablation rescued BPDE-induced NAD(+) depletion and protected cells from BPDE-induced short-term toxicity. On the other hand, strong sensitization effects of PARP inhibition and PARP1 ablation were observed in long-term clonogenic survival assays. Furthermore, PARP1 ablation significantly affected BPDE-induced S- and G2-phase transitions. Together, these results point towards unresolved BPDE-DNA lesions triggering replicative stress. In line with this, BPDE exposure resulted in enhanced formation and persistence of DNA double-strand breaks in PARP1-deficient cells as evaluated by microscopic co-localization studies of 53BP1 and γH2A.X foci. Consistently, an HPRT mutation assay revealed that PARP inhibition potentiated the mutagenicity of BPDE. In conclusion, this study demonstrates a profound role of PARylation in BPDE-induced genotoxic stress response with significant functional consequences and potential relevance with regard to B[a]P-induced cancer risks. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1007/s00204-017-2115-6) contains supplementary material, which is available to authorized users. Springer Berlin Heidelberg 2017-12-01 2018 /pmc/articles/PMC5866831/ /pubmed/29196784 http://dx.doi.org/10.1007/s00204-017-2115-6 Text en © The Author(s) 2017 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Genotoxicity and Carcinogenicity
Fischer, Jan M. F.
Zubel, Tabea
Jander, Kirsten
Fix, Jelena
Trussina, Irmela R. E. A.
Gebhard, Daniel
Bergemann, Jörg
Bürkle, Alexander
Mangerich, Aswin
PARP1 protects from benzo[a]pyrene diol epoxide-induced replication stress and mutagenicity
title PARP1 protects from benzo[a]pyrene diol epoxide-induced replication stress and mutagenicity
title_full PARP1 protects from benzo[a]pyrene diol epoxide-induced replication stress and mutagenicity
title_fullStr PARP1 protects from benzo[a]pyrene diol epoxide-induced replication stress and mutagenicity
title_full_unstemmed PARP1 protects from benzo[a]pyrene diol epoxide-induced replication stress and mutagenicity
title_short PARP1 protects from benzo[a]pyrene diol epoxide-induced replication stress and mutagenicity
title_sort parp1 protects from benzo[a]pyrene diol epoxide-induced replication stress and mutagenicity
topic Genotoxicity and Carcinogenicity
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5866831/
https://www.ncbi.nlm.nih.gov/pubmed/29196784
http://dx.doi.org/10.1007/s00204-017-2115-6
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