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Mutations in the RAD27 and SGS1 genes differentially affect the chronological and replicative lifespan of yeast cells growing on glucose and glycerol

机译:RAD27和SGS1基因的突变差异地影响在葡萄糖和甘油上生长的酵母细胞的时间顺序和复制寿命

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The Sgs1 protein from Saccharomyces cerevisiae is a member of the RecQ helicases. Defects in RecQ helicases result in premature aging phenotypes in both yeasts and humans, which appear to be promoted by replicative stress. Yeast rad27 mutants also suffer from premature aging. As the human Rad27p and Sgs1p homologs interact, a similar interaction between the yeast proteins could be important for promoting longevity in S. cerevisiae. We tested the contribution of a potential interaction between Rad27p and Sgs1p to longevity by analyzing lifespan and parameters associated with longevity in rad27 and sgs1 mutants. The carbon source supporting growth also modulated longevity as evaluated by replicative and chronological lifespan measurements. Growth on glycerol promoted chronological lifespan, while maximum replicative lifespan was obtained with glucose-supported growth. In comparison to the individual mutants, the sgs1 rad27 double mutant displayed a shortened replicative lifespan and was also more sensitive to DNA-damaging agents. In addition to promoting replicative lifespan, the activity of Rad27p was critical for achieving full chronological lifespan. The rad27 mutants exhibited increased oxidative stress levels along with an elevated spontaneous mutation rate. Removal of Sgs1p activity additionally increased the oxidative stress and spontaneous mutation rate in rad27 mutants without affecting the chronological lifespan.
机译:来自酿酒酵母的Sgs1蛋白是RecQ解旋酶的成员。 RecQ解旋酶中的缺陷会导致酵母和人类中过早的衰老表型,这似乎是由复制压力促进的。酵母rad27突变体也遭受过早衰老。当人类Rad27p和Sgs1p同源物相互作用时,酵母蛋白之间的相似相互作用可能对促进酿酒酵母的寿命很重要。通过分析rad27和sgs1突变体的寿命和与寿命相关的参数,我们测试了Rad27p和Sgs1p之间潜在相互作用对寿命的贡献。通过复制和按时间顺序的寿命测量评估,支持生长的碳源还调节了寿命。甘油的生长促进了按时间顺序的寿命,而葡萄糖支持的生长获得了最大的复制寿命。与单个突变体相比,sgs1 rad27双突变体显示出较短的复制寿命,并且对DNA破坏剂也更敏感。除了延长复制寿命外,Rad27p的活性对于实现完整的时间寿命至关重要。 rad27突变体表现出增加的氧化应激水平以及自发的突变率升高。 Sgs1p活性的去除还增加了rad27突变体的氧化应激和自发突变率,而不会影响时间寿命。

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