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Extensive DNA End Processing by Exo1 and Sgs1 Inhibits Break-Induced Replication

Homology-dependent repair of DNA double-strand breaks (DSBs) by gene conversion involves short tracts of DNA synthesis and limited loss of heterozygosity (LOH). For DSBs that present only one end, repair occurs by invasion into a homologous sequence followed by replication to the end of the chromoso...

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Autores principales: Marrero, Vanessa A., Symington, Lorraine S.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2900301/
https://www.ncbi.nlm.nih.gov/pubmed/20628570
http://dx.doi.org/10.1371/journal.pgen.1001007
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author Marrero, Vanessa A.
Symington, Lorraine S.
author_facet Marrero, Vanessa A.
Symington, Lorraine S.
author_sort Marrero, Vanessa A.
collection PubMed
description Homology-dependent repair of DNA double-strand breaks (DSBs) by gene conversion involves short tracts of DNA synthesis and limited loss of heterozygosity (LOH). For DSBs that present only one end, repair occurs by invasion into a homologous sequence followed by replication to the end of the chromosome resulting in extensive LOH, a process called break-induced replication (BIR). We developed a BIR assay in Saccharomyces cerevisiae consisting of a plasmid with a telomere seeding sequence separated from sequence homologous to chromosome III by an I-SceI endonuclease recognition site. Following cleavage of the plasmid by I-SceI in vivo, de novo telomere synthesis occurs at one end of the vector, and the other end invades at the homologous sequence on chromosome III and initiates replication to the end of the chromosome to generate a stable chromosome fragment (CF). BIR was infrequent in wild-type cells due to degradation of the linearized vector. However, in the exo1Δ sgs1Δ mutant, which is defective in the 5′-3′ resection of DSBs, the frequency of BIR was increased by 39-fold. Extension of the invading end of the plasmid was detected by physical analysis two hours after induction of the I-SceI endonuclease in the wild-type exo1Δ, sgs1Δ, and exo1Δ sgs1Δ mutants, but fully repaired products were only visible in the exo1Δ sgs1Δ mutant. The inhibitory effect of resection was less in a plasmid-chromosome gene conversion assay, compared to BIR, and products were detected by physical assay in the wild-type strain. The rare chromosome rearrangements due to BIR template switching at repeated sequences were increased in the exo1Δ sgs1Δ mutant, suggesting that reduced resection can decrease the fidelity of homologous recombination.
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spelling pubmed-29003012010-07-13 Extensive DNA End Processing by Exo1 and Sgs1 Inhibits Break-Induced Replication Marrero, Vanessa A. Symington, Lorraine S. PLoS Genet Research Article Homology-dependent repair of DNA double-strand breaks (DSBs) by gene conversion involves short tracts of DNA synthesis and limited loss of heterozygosity (LOH). For DSBs that present only one end, repair occurs by invasion into a homologous sequence followed by replication to the end of the chromosome resulting in extensive LOH, a process called break-induced replication (BIR). We developed a BIR assay in Saccharomyces cerevisiae consisting of a plasmid with a telomere seeding sequence separated from sequence homologous to chromosome III by an I-SceI endonuclease recognition site. Following cleavage of the plasmid by I-SceI in vivo, de novo telomere synthesis occurs at one end of the vector, and the other end invades at the homologous sequence on chromosome III and initiates replication to the end of the chromosome to generate a stable chromosome fragment (CF). BIR was infrequent in wild-type cells due to degradation of the linearized vector. However, in the exo1Δ sgs1Δ mutant, which is defective in the 5′-3′ resection of DSBs, the frequency of BIR was increased by 39-fold. Extension of the invading end of the plasmid was detected by physical analysis two hours after induction of the I-SceI endonuclease in the wild-type exo1Δ, sgs1Δ, and exo1Δ sgs1Δ mutants, but fully repaired products were only visible in the exo1Δ sgs1Δ mutant. The inhibitory effect of resection was less in a plasmid-chromosome gene conversion assay, compared to BIR, and products were detected by physical assay in the wild-type strain. The rare chromosome rearrangements due to BIR template switching at repeated sequences were increased in the exo1Δ sgs1Δ mutant, suggesting that reduced resection can decrease the fidelity of homologous recombination. Public Library of Science 2010-07-08 /pmc/articles/PMC2900301/ /pubmed/20628570 http://dx.doi.org/10.1371/journal.pgen.1001007 Text en Marrero, Symington. 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
Marrero, Vanessa A.
Symington, Lorraine S.
Extensive DNA End Processing by Exo1 and Sgs1 Inhibits Break-Induced Replication
title Extensive DNA End Processing by Exo1 and Sgs1 Inhibits Break-Induced Replication
title_full Extensive DNA End Processing by Exo1 and Sgs1 Inhibits Break-Induced Replication
title_fullStr Extensive DNA End Processing by Exo1 and Sgs1 Inhibits Break-Induced Replication
title_full_unstemmed Extensive DNA End Processing by Exo1 and Sgs1 Inhibits Break-Induced Replication
title_short Extensive DNA End Processing by Exo1 and Sgs1 Inhibits Break-Induced Replication
title_sort extensive dna end processing by exo1 and sgs1 inhibits break-induced replication
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2900301/
https://www.ncbi.nlm.nih.gov/pubmed/20628570
http://dx.doi.org/10.1371/journal.pgen.1001007
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