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Fission yeast RecQ helicase Rqh1 is required for the maintenance of circular chromosomes.


ABSTRACT: Protection of telomeres protein 1 (Pot1) binds to single-stranded telomere overhangs and protects chromosome ends. RecQ helicases regulate homologous recombination at multiple stages, including resection, strand displacement, and resolution. Fission yeast pot1 and RecQ helicase rqh1 double mutants are synthetically lethal, but the mechanism is not fully understood. Here, we show that the synthetic lethality of pot1? rqh1? double mutants is due to inappropriate homologous recombination, as it is suppressed by the deletion of rad51(+). The expression of Rad51 in the pot1? rqh1? rad51? triple mutant, which has circular chromosomes, is lethal. Reduction of the expression of Rqh1 in a pot1 disruptant with circular chromosomes caused chromosome missegregation, and this defect was partially suppressed by the deletion of rad51(+). Taken together, our results suggest that Rqh1 is required for the maintenance of circular chromosomes when homologous recombination is active. Crossovers between circular monomeric chromosomes generate dimers that cannot segregate properly in Escherichia coli. We propose that Rqh1 inhibits crossovers between circular monomeric chromosomes to suppress the generation of circular dimers.

SUBMITTER: Nanbu T 

PROVIDER: S-EPMC3592020 | biostudies-literature | 2013 Mar

REPOSITORIES: biostudies-literature

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Fission yeast RecQ helicase Rqh1 is required for the maintenance of circular chromosomes.

Nanbu Tomoko T   Takahashi Katsunori K   Murray Johanne M JM   Hirata Naoya N   Ukimori Shinobu S   Kanke Mai M   Masukata Hisao H   Yukawa Masashi M   Tsuchiya Eiko E   Ueno Masaru M  

Molecular and cellular biology 20130107 6


Protection of telomeres protein 1 (Pot1) binds to single-stranded telomere overhangs and protects chromosome ends. RecQ helicases regulate homologous recombination at multiple stages, including resection, strand displacement, and resolution. Fission yeast pot1 and RecQ helicase rqh1 double mutants are synthetically lethal, but the mechanism is not fully understood. Here, we show that the synthetic lethality of pot1Δ rqh1Δ double mutants is due to inappropriate homologous recombination, as it is  ...[more]

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