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KMID : 0880220130510010105
Journal of Microbiology
2013 Volume.51 No. 1 p.105 ~ p.112
Hrq1 functions independently of Sgs1 to preserve genome integrity in Saccharomyces cerevisiae
Choi Do-Hee

Kwon Sung-Hun
Lee Ri-na
Bae Sung-Ho
Abstract
Maintenance of genome stability in eukaryotes involves a number of conserved proteins, including RecQ helicases, which play multiple roles at various steps in homologous recombination and DNA repair pathways. Sgs1 has been described as the only RecQ helicase in lower eukaryotes. However, recent studies revealed the presence of a second RecQ helicase, Hrq1, which is most homologous to human RECQL4. Here we show that hrq1¥Ä mutation resulted in increased mitotic recombination and spontaneous mutation in Saccharomyces cerevisiae, and sgs1¥Ä mutation had additive effects on the phenotypes of hrq1¥Ä. We also observed that the hrq1¥Ä mutant was sensitive to 4-nitroquinoline 1-oxide and cisplatin, which was not complemented by overexpression of Sgs1. In addition, the hrq1¥Ä sgs1¥Ä double mutant displayed synthetic growth defect as well as a shortened chronological life span compared with the respective single mutants. Analysis of the type of age-dependent Canr mutations revealed that only point mutations were found in hrq1¥Ä, whereas significant numbers of gross deletion mutations were found in sgs1¥Ä. Our results suggest that Hrq1 is involved in recombination and DNA repair pathways in S. cerevisiae independent of Sgs1.
KEYWORD
Hrq1, RecQ helicase, DNA helicase, RECQL4 orthologue, Sgs1, recombination
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