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1. Elevated proteasome capacity extends replicative lifespan in Saccharomyces cerevisiae.

2. Composition and acidification of the culture medium influences chronological aging similarly in vineyard and laboratory yeast.

4. Aneuploidy shortens replicative lifespan in Saccharomyces cerevisiae

5. Stress profiling of longevity mutants identifies Afg3 as a mitochondrial determinant of cytoplasmic mRNA translation and aging

6. Ribosome Deficiency Protects Against ER Stress in Saccharomyces cerevisiae

7. A Comprehensive Analysis of Replicative Lifespan in 4,698 Single-Gene Deletion Strains Uncovers Conserved Mechanisms of Aging

8. Sir2 deletion prevents lifespan extension in 32 long-lived mutants

9. Molecular mechanisms underlying genotype-dependent responses to dietary restriction

10. Dietary restriction and mitochondrial function link replicative and chronological aging in Saccharomyces cerevisiae

11. End-of-life cell cycle arrest contributes to stochasticity of yeast replicative aging

12. pH neutralization protects against reduction in replicative lifespan following chronological aging in yeast

13. Sir2 deletion prevents lifespan extension in 32 long-lived mutants

14. Elevated proteasome capacity extends replicative lifespan in Saccharomyces cerevisiae

15. A genomic analysis of chronological longevity factors in budding yeast

16. Quantitative evidence for early life fitness defects from 32 longevity-associated alleles in yeast

17. Quantifying Yeast Chronological Life Span by Outgrowth of Aged Cells

18. A molecular mechanism of chronological aging in yeast

19. A Genomic Approach to Yeast Chronological Aging

20. A method for high-throughput quantitative analysis of yeast chronological life span

21. Inactivation of Yeast Isw2 Chromatin Remodeling Enzyme Mimics Longevity Effect of Calorie Restriction via Induction of Genotoxic Stress Response

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