SIRT1, a NAD+-dependent protein deacetylase, is an important regulator in cellular stress response and energy metabolism. While the list of SIRT1 substrates is growing, how the activity of SIRT1 is regulated remains unclear. We have previously reported that SIRT1 is activated by phosphorylation at a conserved Thr522 residue in response to environmental stress. Here we demonstrate that phosphorylation of Thr522 activates SIRT1 through modulation of its oligomeric status. We provide evidence that nonphosphorylated SIRT1 protein is aggregation-prone in vitro and in cultured cells. Conversely, phosphorylated SIRT1 protein is largely in the monomeric state and more active. Our findings reveal a novel mechanism for environmental regulation of SIR...
SummaryThe NAD+-dependent protein deacetylase SIRT1 regulates energy metabolism, responses to stress...
Sirtuins are a conserved family of NAD-dependent protein deacylases. Initially proposed as histone d...
The biological function of most proteins relies on reversible post-translational modifications, amon...
SIRT1, a NAD+-dependent protein deacetylase, is an important regulator in cellular stress response a...
SIRT1, a NAD +-dependent protein deacetylase, is an important regulator in cellular stress response ...
SIRT1, a NAD +-dependent protein deacetylase, is an important regulator in cellular stress response ...
SIRT1, a NAD+-dependent protein deacetylase, is an important regulator in cellular stress response a...
SIRT1, a NAD+-dependent protein deacetylase, is an important regulator in cellular stress response a...
SIRT1 is a NAD+ dependent deacetylase that targets many histone and non histone proteins, thereby re...
SIRT1 is a NAD+ dependent deacetylase that targets many histone and non histone proteins, thereby re...
SIRT1 is a NAD+ dependent deacetylase that targets many histone and non histone proteins, thereby re...
Sirt1 is an NAD(+)-dependent protein deacetylase that regulates many physiological functions, includ...
The present review intends to summarize the, yet preliminary, but very important emerging data under...
The NAD+-dependent protein deacetylase SIRT1 regulates transcriptional responses and enzymatic funct...
The NAD+-dependent protein deacetylase SIRT1 regulates transcriptional responses and enzymatic funct...
SummaryThe NAD+-dependent protein deacetylase SIRT1 regulates energy metabolism, responses to stress...
Sirtuins are a conserved family of NAD-dependent protein deacylases. Initially proposed as histone d...
The biological function of most proteins relies on reversible post-translational modifications, amon...
SIRT1, a NAD+-dependent protein deacetylase, is an important regulator in cellular stress response a...
SIRT1, a NAD +-dependent protein deacetylase, is an important regulator in cellular stress response ...
SIRT1, a NAD +-dependent protein deacetylase, is an important regulator in cellular stress response ...
SIRT1, a NAD+-dependent protein deacetylase, is an important regulator in cellular stress response a...
SIRT1, a NAD+-dependent protein deacetylase, is an important regulator in cellular stress response a...
SIRT1 is a NAD+ dependent deacetylase that targets many histone and non histone proteins, thereby re...
SIRT1 is a NAD+ dependent deacetylase that targets many histone and non histone proteins, thereby re...
SIRT1 is a NAD+ dependent deacetylase that targets many histone and non histone proteins, thereby re...
Sirt1 is an NAD(+)-dependent protein deacetylase that regulates many physiological functions, includ...
The present review intends to summarize the, yet preliminary, but very important emerging data under...
The NAD+-dependent protein deacetylase SIRT1 regulates transcriptional responses and enzymatic funct...
The NAD+-dependent protein deacetylase SIRT1 regulates transcriptional responses and enzymatic funct...
SummaryThe NAD+-dependent protein deacetylase SIRT1 regulates energy metabolism, responses to stress...
Sirtuins are a conserved family of NAD-dependent protein deacylases. Initially proposed as histone d...
The biological function of most proteins relies on reversible post-translational modifications, amon...