The yeast Sir2 (silent information regulator-2) protein functions as an NAD+-dependent histone deacetylase to silence gene expression from the mating-type locus, tolomeres and rDNA and also promotes longevity and genome stability in response to calorie restriction. Homologues of yeast Sir2 have been identified in the three domains of bacteria, archaea and eukaryotes; in mammalian cells, Sir2 proteins also deacetylate non-histone proteins such as the p53 tumour suppressor protein, α-tubulin and forkhead transcription factors to mediate diverse biological processes including metabolism, cell motility and cancer. We have determined the X-ray crystal structure of a Sir2 homologue from yeast Hst2 (yHst2), in various liganded forms, in-cluding th...
Reversible lysine acetylation is a mechanism organisms use to regulate essential cellular activities...
Reversible lysine acetylation is a mechanism organisms use to regulate essential cellular activities...
Hypoacetylated histones are a hallmark of heterochromatin in organisms ranging from yeast to humans....
AbstractSir2 proteins are NAD+-dependant protein deactylases that have been implicated in playing ro...
AbstractSir2 proteins are NAD+-dependant protein deactylases that have been implicated in playing ro...
Abstract: The silent information regulator (Sir2) family of protein deacetylases (Sirtuins) are nico...
AbstractThe SIR2 protein family comprises a novel class of nicotinamide-adenine dinucleotide (NAD)-d...
SIR2 and its homologues are newly identified nicotinamide adenine dinucleotide (NAD)-dependent histo...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2001.Includes bibliographi...
The SIR2 protein family comprises a novel class of nicotinamide-adenine dinucleotide (NAD)-dependent...
SIR2 and its homologues are newly identified nicotinamide adenine dinucleotide (NAD)-dependent histo...
The budding yeast Sir2 (silent information regulator 2) protein is the founding member of the sirtui...
Silent information regulator 2 (Sir2) proteins, or sirtuins, are protein deacetylases dependent on n...
Sirtuins, class III histone deacetylases, are proteins homologous to the yeast protein Sir2p. Mammal...
AbstractHypoacetylated histones are a hallmark of heterochromatin in organisms ranging from yeast to...
Reversible lysine acetylation is a mechanism organisms use to regulate essential cellular activities...
Reversible lysine acetylation is a mechanism organisms use to regulate essential cellular activities...
Hypoacetylated histones are a hallmark of heterochromatin in organisms ranging from yeast to humans....
AbstractSir2 proteins are NAD+-dependant protein deactylases that have been implicated in playing ro...
AbstractSir2 proteins are NAD+-dependant protein deactylases that have been implicated in playing ro...
Abstract: The silent information regulator (Sir2) family of protein deacetylases (Sirtuins) are nico...
AbstractThe SIR2 protein family comprises a novel class of nicotinamide-adenine dinucleotide (NAD)-d...
SIR2 and its homologues are newly identified nicotinamide adenine dinucleotide (NAD)-dependent histo...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2001.Includes bibliographi...
The SIR2 protein family comprises a novel class of nicotinamide-adenine dinucleotide (NAD)-dependent...
SIR2 and its homologues are newly identified nicotinamide adenine dinucleotide (NAD)-dependent histo...
The budding yeast Sir2 (silent information regulator 2) protein is the founding member of the sirtui...
Silent information regulator 2 (Sir2) proteins, or sirtuins, are protein deacetylases dependent on n...
Sirtuins, class III histone deacetylases, are proteins homologous to the yeast protein Sir2p. Mammal...
AbstractHypoacetylated histones are a hallmark of heterochromatin in organisms ranging from yeast to...
Reversible lysine acetylation is a mechanism organisms use to regulate essential cellular activities...
Reversible lysine acetylation is a mechanism organisms use to regulate essential cellular activities...
Hypoacetylated histones are a hallmark of heterochromatin in organisms ranging from yeast to humans....