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Mislocalization of XPF-ERCC1 Nuclease Contributes to Reduced DNA Repair in XP-F Patients

Xeroderma pigmentosum (XP) is caused by defects in the nucleotide excision repair (NER) pathway. NER removes helix-distorting DNA lesions, such as UV–induced photodimers, from the genome. Patients suffering from XP exhibit exquisite sun sensitivity, high incidence of skin cancer, and in some cases n...

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Autores principales: Ahmad, Anwaar, Enzlin, Jacqueline H., Bhagwat, Nikhil R., Wijgers, Nils, Raams, Anja, Appledoorn, Esther, Theil, Arjan F., J. Hoeijmakers, Jan H., Vermeulen, Wim, J. Jaspers, Nicolaas G., Schärer, Orlando D., Niedernhofer, Laura J.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2832669/
https://www.ncbi.nlm.nih.gov/pubmed/20221251
http://dx.doi.org/10.1371/journal.pgen.1000871
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author Ahmad, Anwaar
Enzlin, Jacqueline H.
Bhagwat, Nikhil R.
Wijgers, Nils
Raams, Anja
Appledoorn, Esther
Theil, Arjan F.
J. Hoeijmakers, Jan H.
Vermeulen, Wim
J. Jaspers, Nicolaas G.
Schärer, Orlando D.
Niedernhofer, Laura J.
author_facet Ahmad, Anwaar
Enzlin, Jacqueline H.
Bhagwat, Nikhil R.
Wijgers, Nils
Raams, Anja
Appledoorn, Esther
Theil, Arjan F.
J. Hoeijmakers, Jan H.
Vermeulen, Wim
J. Jaspers, Nicolaas G.
Schärer, Orlando D.
Niedernhofer, Laura J.
author_sort Ahmad, Anwaar
collection PubMed
description Xeroderma pigmentosum (XP) is caused by defects in the nucleotide excision repair (NER) pathway. NER removes helix-distorting DNA lesions, such as UV–induced photodimers, from the genome. Patients suffering from XP exhibit exquisite sun sensitivity, high incidence of skin cancer, and in some cases neurodegeneration. The severity of XP varies tremendously depending upon which NER gene is mutated and how severely the mutation affects DNA repair capacity. XPF-ERCC1 is a structure-specific endonuclease essential for incising the damaged strand of DNA in NER. Missense mutations in XPF can result not only in XP, but also XPF-ERCC1 (XFE) progeroid syndrome, a disease of accelerated aging. In an attempt to determine how mutations in XPF can lead to such diverse symptoms, the effects of a progeria-causing mutation (XPF(R153P)) were compared to an XP–causing mutation (XPF(R799W)) in vitro and in vivo. Recombinant XPF harboring either mutation was purified in a complex with ERCC1 and tested for its ability to incise a stem-loop structure in vitro. Both mutant complexes nicked the substrate indicating that neither mutation obviates catalytic activity of the nuclease. Surprisingly, differential immunostaining and fractionation of cells from an XFE progeroid patient revealed that XPF-ERCC1 is abundant in the cytoplasm. This was confirmed by fluorescent detection of XPF(R153P)-YFP expressed in Xpf mutant cells. In addition, microinjection of XPF(R153P)-ERCC1 into the nucleus of XPF–deficient human cells restored nucleotide excision repair of UV–induced DNA damage. Intriguingly, in all XPF mutant cell lines examined, XPF-ERCC1 was detected in the cytoplasm of a fraction of cells. This demonstrates that at least part of the DNA repair defect and symptoms associated with mutations in XPF are due to mislocalization of XPF-ERCC1 into the cytoplasm of cells, likely due to protein misfolding. Analysis of these patient cells therefore reveals a novel mechanism to potentially regulate a cell's capacity for DNA repair: by manipulating nuclear localization of XPF-ERCC1.
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spelling pubmed-28326692010-03-11 Mislocalization of XPF-ERCC1 Nuclease Contributes to Reduced DNA Repair in XP-F Patients Ahmad, Anwaar Enzlin, Jacqueline H. Bhagwat, Nikhil R. Wijgers, Nils Raams, Anja Appledoorn, Esther Theil, Arjan F. J. Hoeijmakers, Jan H. Vermeulen, Wim J. Jaspers, Nicolaas G. Schärer, Orlando D. Niedernhofer, Laura J. PLoS Genet Research Article Xeroderma pigmentosum (XP) is caused by defects in the nucleotide excision repair (NER) pathway. NER removes helix-distorting DNA lesions, such as UV–induced photodimers, from the genome. Patients suffering from XP exhibit exquisite sun sensitivity, high incidence of skin cancer, and in some cases neurodegeneration. The severity of XP varies tremendously depending upon which NER gene is mutated and how severely the mutation affects DNA repair capacity. XPF-ERCC1 is a structure-specific endonuclease essential for incising the damaged strand of DNA in NER. Missense mutations in XPF can result not only in XP, but also XPF-ERCC1 (XFE) progeroid syndrome, a disease of accelerated aging. In an attempt to determine how mutations in XPF can lead to such diverse symptoms, the effects of a progeria-causing mutation (XPF(R153P)) were compared to an XP–causing mutation (XPF(R799W)) in vitro and in vivo. Recombinant XPF harboring either mutation was purified in a complex with ERCC1 and tested for its ability to incise a stem-loop structure in vitro. Both mutant complexes nicked the substrate indicating that neither mutation obviates catalytic activity of the nuclease. Surprisingly, differential immunostaining and fractionation of cells from an XFE progeroid patient revealed that XPF-ERCC1 is abundant in the cytoplasm. This was confirmed by fluorescent detection of XPF(R153P)-YFP expressed in Xpf mutant cells. In addition, microinjection of XPF(R153P)-ERCC1 into the nucleus of XPF–deficient human cells restored nucleotide excision repair of UV–induced DNA damage. Intriguingly, in all XPF mutant cell lines examined, XPF-ERCC1 was detected in the cytoplasm of a fraction of cells. This demonstrates that at least part of the DNA repair defect and symptoms associated with mutations in XPF are due to mislocalization of XPF-ERCC1 into the cytoplasm of cells, likely due to protein misfolding. Analysis of these patient cells therefore reveals a novel mechanism to potentially regulate a cell's capacity for DNA repair: by manipulating nuclear localization of XPF-ERCC1. Public Library of Science 2010-03-05 /pmc/articles/PMC2832669/ /pubmed/20221251 http://dx.doi.org/10.1371/journal.pgen.1000871 Text en Ahmad 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
Ahmad, Anwaar
Enzlin, Jacqueline H.
Bhagwat, Nikhil R.
Wijgers, Nils
Raams, Anja
Appledoorn, Esther
Theil, Arjan F.
J. Hoeijmakers, Jan H.
Vermeulen, Wim
J. Jaspers, Nicolaas G.
Schärer, Orlando D.
Niedernhofer, Laura J.
Mislocalization of XPF-ERCC1 Nuclease Contributes to Reduced DNA Repair in XP-F Patients
title Mislocalization of XPF-ERCC1 Nuclease Contributes to Reduced DNA Repair in XP-F Patients
title_full Mislocalization of XPF-ERCC1 Nuclease Contributes to Reduced DNA Repair in XP-F Patients
title_fullStr Mislocalization of XPF-ERCC1 Nuclease Contributes to Reduced DNA Repair in XP-F Patients
title_full_unstemmed Mislocalization of XPF-ERCC1 Nuclease Contributes to Reduced DNA Repair in XP-F Patients
title_short Mislocalization of XPF-ERCC1 Nuclease Contributes to Reduced DNA Repair in XP-F Patients
title_sort mislocalization of xpf-ercc1 nuclease contributes to reduced dna repair in xp-f patients
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2832669/
https://www.ncbi.nlm.nih.gov/pubmed/20221251
http://dx.doi.org/10.1371/journal.pgen.1000871
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