Very few gene conversions in mitotic cells are associated with crossovers, suggesting that these events are regulated. This may be important for the maintenance of genetic stability. We have analyzed the relationship between homologous recombination and crossing-over in haploid budding yeast and identified factors involved in the regulation of crossover outcomes. Gene conversions unaccompanied by a crossover appear 30 min before conversions accompanied by exchange, indicating that there are two different repair mechanisms in mitotic cells. Crossovers are rare (5%), but deleting the BLM/WRN homolog, SGS1, or the SRS2 helicase increases crossovers 2- to 3-fold. Overexpressing SRS2 nearly eliminates crossovers, whereas overexpression of RAD51 in srs2Δ cells almost completely eliminates the noncrossover recombination pathway. We suggest Sgs1 and its associated topoisomerase Top3 remove double Holliday junction intermediates from a crossover-producing repair pathway, thereby reducing crossovers. Srs2 promotes the noncrossover synthesis-dependent strand-annealing (SDSA) pathway, apparently by regulating Rad51 binding during strand exchange.

Srs2 and Sgs1-Top3 Suppress Crossovers during Double-Strand Break Repair in Yeast / G. Ira, A. Malkova, G. Liberi, M. Foiani, J.E. Haber. - In: CELL. - ISSN 0092-8674. - 115:4(2003), pp. 401-411. [10.1016/S0092-8674(03)00886-9]

Srs2 and Sgs1-Top3 Suppress Crossovers during Double-Strand Break Repair in Yeast

M. Foiani
Penultimo
;
2003

Abstract

Very few gene conversions in mitotic cells are associated with crossovers, suggesting that these events are regulated. This may be important for the maintenance of genetic stability. We have analyzed the relationship between homologous recombination and crossing-over in haploid budding yeast and identified factors involved in the regulation of crossover outcomes. Gene conversions unaccompanied by a crossover appear 30 min before conversions accompanied by exchange, indicating that there are two different repair mechanisms in mitotic cells. Crossovers are rare (5%), but deleting the BLM/WRN homolog, SGS1, or the SRS2 helicase increases crossovers 2- to 3-fold. Overexpressing SRS2 nearly eliminates crossovers, whereas overexpression of RAD51 in srs2Δ cells almost completely eliminates the noncrossover recombination pathway. We suggest Sgs1 and its associated topoisomerase Top3 remove double Holliday junction intermediates from a crossover-producing repair pathway, thereby reducing crossovers. Srs2 promotes the noncrossover synthesis-dependent strand-annealing (SDSA) pathway, apparently by regulating Rad51 binding during strand exchange.
English
Syndrome gene-product; saccharomyces-cerevisiae; mitotic recombination; topoisomerase-III; crossing-over; DNA helicase; homologous recombination; holliday junctions; werner-syndrome; meiotic recombination
Settore BIO/11 - Biologia Molecolare
Articolo
Esperti anonimi
Pubblicazione scientifica
2003
Cell Press
115
4
401
411
11
Pubblicato
Periodico con rilevanza internazionale
scopus
pubmed
crossref
Aderisco
info:eu-repo/semantics/article
Srs2 and Sgs1-Top3 Suppress Crossovers during Double-Strand Break Repair in Yeast / G. Ira, A. Malkova, G. Liberi, M. Foiani, J.E. Haber. - In: CELL. - ISSN 0092-8674. - 115:4(2003), pp. 401-411. [10.1016/S0092-8674(03)00886-9]
open
Prodotti della ricerca::01 - Articolo su periodico
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262
Article (author)
Periodico con Impact Factor
G. Ira, A. Malkova, G. Liberi, M. Foiani, J.E. Haber
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/659553
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