There is growing evidence that the metabolic network is an integral regulator of cellular physiology. Dynamic changes in metabolite concentrations, metabolic flux, or network topology act as reporters of biological or environmental signals, and are required for the cell to trigger an appropriate biological reaction. Changes in the metabolic network are recognized by specific sensory macromolecules and translated into a transcriptional or translational response. The protein family of sirtuins, discovered more than 30 years ago as regulators of silent chromatin, seems to fulfill the role of a metabolic sensor during aging and conditions of caloric restriction. The archetypal sirtuin, yeast silentinformationregulator2 (SIR2), is an NAD(+) depe...
The sirtuins are a family of highly evolutionary conserved NAD+-dependent deacetylases (SIRT1, 2, 3,...
Sirtuins are known to slow aging in simple eukaryotes; however, viewing mammalian sirtuins as antiag...
Genome-metabolism interactions enable cell growth. To probe the extent of these interactions and del...
There is growing evidence that the metabolic network is an integral regulator of cellularphysiology....
There is growing evidence that the metabolic network is an integral regulator of cellular physiology...
International audienceRecently the function of the sirtuin family, named after their homology to the...
International audienceRecently the function of the sirtuin family, named after their homology to the...
International audienceRecently the function of the sirtuin family, named after their homology to the...
Sirtuins have emerged in recent years as critical regulators of metabolism, influencing numerous fac...
Sirtuin 1 (SIRT1), the mammalian ortholog of yeast Sir2p, is a highly conserved NAD +-dependent prot...
Sirtuins are nicotinamide adenine dinucleotide (NAD)-dependent protein deacetylases that link protei...
SummarySilent information regulator 2 (Sir2) proteins, or sirtuins, are protein deacetylases/mono-AD...
Sirtuins are a family of highly conserved NAD+-dependent proteins and this dependency links Sirtuins...
Yeast Sir2 is an NAD-dependent histone deacetylase related to oxidative stress and aging. In a previ...
Available in PMC 2015 March 01.Sirtuins such as SIRT1 are conserved protein NAD[superscript +]-depen...
The sirtuins are a family of highly evolutionary conserved NAD+-dependent deacetylases (SIRT1, 2, 3,...
Sirtuins are known to slow aging in simple eukaryotes; however, viewing mammalian sirtuins as antiag...
Genome-metabolism interactions enable cell growth. To probe the extent of these interactions and del...
There is growing evidence that the metabolic network is an integral regulator of cellularphysiology....
There is growing evidence that the metabolic network is an integral regulator of cellular physiology...
International audienceRecently the function of the sirtuin family, named after their homology to the...
International audienceRecently the function of the sirtuin family, named after their homology to the...
International audienceRecently the function of the sirtuin family, named after their homology to the...
Sirtuins have emerged in recent years as critical regulators of metabolism, influencing numerous fac...
Sirtuin 1 (SIRT1), the mammalian ortholog of yeast Sir2p, is a highly conserved NAD +-dependent prot...
Sirtuins are nicotinamide adenine dinucleotide (NAD)-dependent protein deacetylases that link protei...
SummarySilent information regulator 2 (Sir2) proteins, or sirtuins, are protein deacetylases/mono-AD...
Sirtuins are a family of highly conserved NAD+-dependent proteins and this dependency links Sirtuins...
Yeast Sir2 is an NAD-dependent histone deacetylase related to oxidative stress and aging. In a previ...
Available in PMC 2015 March 01.Sirtuins such as SIRT1 are conserved protein NAD[superscript +]-depen...
The sirtuins are a family of highly evolutionary conserved NAD+-dependent deacetylases (SIRT1, 2, 3,...
Sirtuins are known to slow aging in simple eukaryotes; however, viewing mammalian sirtuins as antiag...
Genome-metabolism interactions enable cell growth. To probe the extent of these interactions and del...