Sirt2 is a target for the treatment of neurological, metabolic, and age-related diseases including cancer. Here we report a series of Sirt2 inhibitors based on the 1,2,4-oxadiazole scaffold. These compounds are potent Sirt2 inhibitors active at single-digit μM level by using the Sirt2 substrate α-tubulin-acetylLys40 peptide and inactive up to 100 μM against Sirt1, -3, and -5 (deacetylase and desuccinylase activities). Their mechanism of inhibition is uncompetitive toward both the peptide substrate and NAD(+), and the crystal structure of a 1,2,4-oxadiazole analog in complex with Sirt2 and ADP-ribose reveals its orientation in a still unexplored subcavity useful for further inhibitor development. Tested in leukemia cell lines, 35 and 39 indu...
SummarySirtuins are NAD+-dependent protein deacetylases and are emerging as molecular targets for th...
Sirtuins are a highly conserved class of NAD+-dependent lysine deacylases. The human isotype Sirt2 h...
SummarySIRT2 deacetylates specific acetyllysine residues in diverse proteins and is implicated in a ...
Sirt2 is a target for the treatment of neurological, metabolic, and age-related diseases including c...
Sirt2 is a target for the treatment of neurological, metabolic, and age-related diseases including c...
Sirt2 is a target for the treatment of neurological, metabolic, and age-related diseases including c...
Sirtuins (SIRTs) are a class of NAD(+)-dependent protein histone deacetylases (HDACs) that catalyse ...
A novel series of indazole tethered oxadiazoles (OTDs) derivatives were synthesized, characterized a...
284 pagesSIRT2 regulates various biological pathways through lysine deacetylation and de-fatty acyla...
284 pagesSIRT2 regulates various biological pathways through lysine deacetylation and de-fatty acyla...
Sirtuins are a highly conserved class of NAD(+)-dependent lysine deacylases. The human isotype Sirt...
SIRT2 is a member of NAD+-dependent sirtuins and its inhibition has been proposed as a promising the...
SummarySIRT2 deacetylates specific acetyllysine residues in diverse proteins and is implicated in a ...
Inhibitors of human NAD+-dependent protein deacetylases possess great value for deciphering the biol...
Sirtuin 2 (SIRT2) is one of the sirtuins, a family of NAD<sup>+</sup>-dependent deacetylases that ac...
SummarySirtuins are NAD+-dependent protein deacetylases and are emerging as molecular targets for th...
Sirtuins are a highly conserved class of NAD+-dependent lysine deacylases. The human isotype Sirt2 h...
SummarySIRT2 deacetylates specific acetyllysine residues in diverse proteins and is implicated in a ...
Sirt2 is a target for the treatment of neurological, metabolic, and age-related diseases including c...
Sirt2 is a target for the treatment of neurological, metabolic, and age-related diseases including c...
Sirt2 is a target for the treatment of neurological, metabolic, and age-related diseases including c...
Sirtuins (SIRTs) are a class of NAD(+)-dependent protein histone deacetylases (HDACs) that catalyse ...
A novel series of indazole tethered oxadiazoles (OTDs) derivatives were synthesized, characterized a...
284 pagesSIRT2 regulates various biological pathways through lysine deacetylation and de-fatty acyla...
284 pagesSIRT2 regulates various biological pathways through lysine deacetylation and de-fatty acyla...
Sirtuins are a highly conserved class of NAD(+)-dependent lysine deacylases. The human isotype Sirt...
SIRT2 is a member of NAD+-dependent sirtuins and its inhibition has been proposed as a promising the...
SummarySIRT2 deacetylates specific acetyllysine residues in diverse proteins and is implicated in a ...
Inhibitors of human NAD+-dependent protein deacetylases possess great value for deciphering the biol...
Sirtuin 2 (SIRT2) is one of the sirtuins, a family of NAD<sup>+</sup>-dependent deacetylases that ac...
SummarySirtuins are NAD+-dependent protein deacetylases and are emerging as molecular targets for th...
Sirtuins are a highly conserved class of NAD+-dependent lysine deacylases. The human isotype Sirt2 h...
SummarySIRT2 deacetylates specific acetyllysine residues in diverse proteins and is implicated in a ...