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Mechanism of Suppression of Chromosomal Instability by DNA Polymerase POLQ

Although a defect in the DNA polymerase POLQ leads to ionizing radiation sensitivity in mammalian cells, the relevant enzymatic pathway has not been identified. Here we define the specific mechanism by which POLQ restricts harmful DNA instability. Our experiments show that Polq-null murine cells are...

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Autores principales: Yousefzadeh, Matthew J., Wyatt, David W., Takata, Kei-ichi, Mu, Yunxiang, Hensley, Sean C., Tomida, Junya, Bylund, Göran O., Doublié, Sylvie, Johansson, Erik, Ramsden, Dale A., McBride, Kevin M., Wood, Richard D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4183433/
https://www.ncbi.nlm.nih.gov/pubmed/25275444
http://dx.doi.org/10.1371/journal.pgen.1004654
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author Yousefzadeh, Matthew J.
Wyatt, David W.
Takata, Kei-ichi
Mu, Yunxiang
Hensley, Sean C.
Tomida, Junya
Bylund, Göran O.
Doublié, Sylvie
Johansson, Erik
Ramsden, Dale A.
McBride, Kevin M.
Wood, Richard D.
author_facet Yousefzadeh, Matthew J.
Wyatt, David W.
Takata, Kei-ichi
Mu, Yunxiang
Hensley, Sean C.
Tomida, Junya
Bylund, Göran O.
Doublié, Sylvie
Johansson, Erik
Ramsden, Dale A.
McBride, Kevin M.
Wood, Richard D.
author_sort Yousefzadeh, Matthew J.
collection PubMed
description Although a defect in the DNA polymerase POLQ leads to ionizing radiation sensitivity in mammalian cells, the relevant enzymatic pathway has not been identified. Here we define the specific mechanism by which POLQ restricts harmful DNA instability. Our experiments show that Polq-null murine cells are selectively hypersensitive to DNA strand breaking agents, and that damage resistance requires the DNA polymerase activity of POLQ. Using a DNA break end joining assay in cells, we monitored repair of DNA ends with long 3′ single-stranded overhangs. End joining events retaining much of the overhang were dependent on POLQ, and independent of Ku70. To analyze the repair function in more detail, we examined immunoglobulin class switch joining between DNA segments in antibody genes. POLQ participates in end joining of a DNA break during immunoglobulin class-switching, producing insertions of base pairs at the joins with homology to IgH switch-region sequences. Biochemical experiments with purified human POLQ protein revealed the mechanism generating the insertions during DNA end joining, relying on the unique ability of POLQ to extend DNA from minimally paired primers. DNA breaks at the IgH locus can sometimes join with breaks in Myc, creating a chromosome translocation. We found a marked increase in Myc/IgH translocations in Polq-defective mice, showing that POLQ suppresses genomic instability and genome rearrangements originating at DNA double-strand breaks. This work clearly defines a role and mechanism for mammalian POLQ in an alternative end joining pathway that suppresses the formation of chromosomal translocations. Our findings depart from the prevailing view that alternative end joining processes are generically translocation-prone.
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spelling pubmed-41834332014-10-07 Mechanism of Suppression of Chromosomal Instability by DNA Polymerase POLQ Yousefzadeh, Matthew J. Wyatt, David W. Takata, Kei-ichi Mu, Yunxiang Hensley, Sean C. Tomida, Junya Bylund, Göran O. Doublié, Sylvie Johansson, Erik Ramsden, Dale A. McBride, Kevin M. Wood, Richard D. PLoS Genet Research Article Although a defect in the DNA polymerase POLQ leads to ionizing radiation sensitivity in mammalian cells, the relevant enzymatic pathway has not been identified. Here we define the specific mechanism by which POLQ restricts harmful DNA instability. Our experiments show that Polq-null murine cells are selectively hypersensitive to DNA strand breaking agents, and that damage resistance requires the DNA polymerase activity of POLQ. Using a DNA break end joining assay in cells, we monitored repair of DNA ends with long 3′ single-stranded overhangs. End joining events retaining much of the overhang were dependent on POLQ, and independent of Ku70. To analyze the repair function in more detail, we examined immunoglobulin class switch joining between DNA segments in antibody genes. POLQ participates in end joining of a DNA break during immunoglobulin class-switching, producing insertions of base pairs at the joins with homology to IgH switch-region sequences. Biochemical experiments with purified human POLQ protein revealed the mechanism generating the insertions during DNA end joining, relying on the unique ability of POLQ to extend DNA from minimally paired primers. DNA breaks at the IgH locus can sometimes join with breaks in Myc, creating a chromosome translocation. We found a marked increase in Myc/IgH translocations in Polq-defective mice, showing that POLQ suppresses genomic instability and genome rearrangements originating at DNA double-strand breaks. This work clearly defines a role and mechanism for mammalian POLQ in an alternative end joining pathway that suppresses the formation of chromosomal translocations. Our findings depart from the prevailing view that alternative end joining processes are generically translocation-prone. Public Library of Science 2014-10-02 /pmc/articles/PMC4183433/ /pubmed/25275444 http://dx.doi.org/10.1371/journal.pgen.1004654 Text en © 2014 Yousefzadeh 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
Yousefzadeh, Matthew J.
Wyatt, David W.
Takata, Kei-ichi
Mu, Yunxiang
Hensley, Sean C.
Tomida, Junya
Bylund, Göran O.
Doublié, Sylvie
Johansson, Erik
Ramsden, Dale A.
McBride, Kevin M.
Wood, Richard D.
Mechanism of Suppression of Chromosomal Instability by DNA Polymerase POLQ
title Mechanism of Suppression of Chromosomal Instability by DNA Polymerase POLQ
title_full Mechanism of Suppression of Chromosomal Instability by DNA Polymerase POLQ
title_fullStr Mechanism of Suppression of Chromosomal Instability by DNA Polymerase POLQ
title_full_unstemmed Mechanism of Suppression of Chromosomal Instability by DNA Polymerase POLQ
title_short Mechanism of Suppression of Chromosomal Instability by DNA Polymerase POLQ
title_sort mechanism of suppression of chromosomal instability by dna polymerase polq
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4183433/
https://www.ncbi.nlm.nih.gov/pubmed/25275444
http://dx.doi.org/10.1371/journal.pgen.1004654
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