Yeast Sir2 is an NAD-dependent histone deacetylase related to oxidative stress and aging. In a previous study, we showed that Sir2 is regulated by S-glutathionylation of key cysteine residues located at the catalytic domain. Mutation of these residues results in strains with increased resistance to disulfide stress. In the present study, these mutant cells were highly resistant to acetic acid and had an increased chronological life span. Mutant cells had increased acetyl-CoA synthetase activity, which converts acetic acid generated by yeast metabolism to acetyl.CoA. This could explain the acetic acid resistance and lower levels of this toxic acid in the extracellular media during aging. Increased acetyl-CoA levels would raise lipid droplets...
Sirtuin enzymes depend on NAD+ to catalyze protein deacetylation. Therefore, the lowering of NAD+ du...
There is growing evidence that the metabolic network is an integral regulator of cellular physiology...
The influence of redox homeostasis on aging and DNA stability is a complex one. To address how thiol...
The regulatory mechanisms of yeast Sir2, the founding member of the sirtuin family involved in oxida...
AbstractYeast chronological aging is regarded as a model for aging of mammalian post-mitotic cells. ...
Sirtuin enzymes depend on NAD⁺ to catalyze protein deacetylation. Therefore, the lowering of NAD⁺ du...
The yeast sirtuin (Sir2) is a histone deacetylase that modulates yeast replicative life span by supp...
AbstractYeast chronological aging is regarded as a model for aging of mammalian post-mitotic cells. ...
2013-02-20Increased dosage of Sir2, a conserved histone deacetylase, extends replicative life span i...
Sirtuins are a conserved family of NAD-dependent protein deacylases. Initially proposed as histone d...
Silent information regulator 2 (Sir2) is a conserved NAD+-dependent histone deacetylase crucial for ...
Silent information regulator 2 (Sir2) is a conserved NAD+-dependent histone deacetylase crucial for ...
Sirtuins are a conserved family of NAD-dependent protein deacylases. Initially proposed as histone d...
SummarySir2 is a conserved deacetylase that modulates life span in yeast, worms, and flies and stres...
Silent information regulator 2 (Sir2) is a conserved NAD+-dependent histone deacetylase crucial for ...
Sirtuin enzymes depend on NAD+ to catalyze protein deacetylation. Therefore, the lowering of NAD+ du...
There is growing evidence that the metabolic network is an integral regulator of cellular physiology...
The influence of redox homeostasis on aging and DNA stability is a complex one. To address how thiol...
The regulatory mechanisms of yeast Sir2, the founding member of the sirtuin family involved in oxida...
AbstractYeast chronological aging is regarded as a model for aging of mammalian post-mitotic cells. ...
Sirtuin enzymes depend on NAD⁺ to catalyze protein deacetylation. Therefore, the lowering of NAD⁺ du...
The yeast sirtuin (Sir2) is a histone deacetylase that modulates yeast replicative life span by supp...
AbstractYeast chronological aging is regarded as a model for aging of mammalian post-mitotic cells. ...
2013-02-20Increased dosage of Sir2, a conserved histone deacetylase, extends replicative life span i...
Sirtuins are a conserved family of NAD-dependent protein deacylases. Initially proposed as histone d...
Silent information regulator 2 (Sir2) is a conserved NAD+-dependent histone deacetylase crucial for ...
Silent information regulator 2 (Sir2) is a conserved NAD+-dependent histone deacetylase crucial for ...
Sirtuins are a conserved family of NAD-dependent protein deacylases. Initially proposed as histone d...
SummarySir2 is a conserved deacetylase that modulates life span in yeast, worms, and flies and stres...
Silent information regulator 2 (Sir2) is a conserved NAD+-dependent histone deacetylase crucial for ...
Sirtuin enzymes depend on NAD+ to catalyze protein deacetylation. Therefore, the lowering of NAD+ du...
There is growing evidence that the metabolic network is an integral regulator of cellular physiology...
The influence of redox homeostasis on aging and DNA stability is a complex one. To address how thiol...