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1. Evidence that conserved essential genes are enriched for pro-longevity factors.

2. Evolution of natural lifespan variation and molecular strategies of extended lifespan in yeast.

3. Molecular signatures of aneuploidy-driven adaptive evolution.

4. Sulfate assimilation regulates hydrogen sulfide production independent of lifespan and reactive oxygen species under methionine restriction condition in yeast.

5. Age-associated molecular changes are deleterious and may modulate life span through diet.

6. Adaptive aneuploidy protects against thiol peroxidase deficiency by increasing respiration via key mitochondrial proteins.

7. Evidence that mutation accumulation does not cause aging in Saccharomyces cerevisiae.

8. Thiol peroxidase deficiency leads to increased mutational load and decreased fitness in Saccharomyces cerevisiae.

9. Thiol peroxidases mediate specific genome-wide regulation of gene expression in response to hydrogen peroxide.

10. Genome-wide identification of genes that play a role in boron stress response in yeast.

11. Boron stress activates the general amino acid control mechanism and inhibits protein synthesis.

12. Compartmentalization and regulation of mitochondrial function by methionine sulfoxide reductases in yeast.

13. Identification of a novel system for boron transport: Atr1 is a main boron exporter in yeast.

14. Functional analysis of free methionine-R-sulfoxide reductase from Saccharomyces cerevisiae.

15. Boron toleransı sırasında arpada (Hordeum vulgare) görülen proteomik değişimler ve vakuol proton translokasyon ATPaz alt birim E’nin rolü

16. Proteomic changes during boron tolerance in barley (Hordeum vulgare) and the role of vacuolar proton-translocating ATPase subunit E.

17. Functional Analysis of Free Methionine-R-sulfoxide Reductase from Saccharomyces cerevisiae.

18. Characterization of a cDNA from Beta maritima that confers nickel tolerance in yeast

19. Genome-wide identification of genes that play a role in boron stress response in yeast

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