SIRT2 is a member of NAD+-dependent sirtuins and its inhibition has been proposed as a promising therapeutic approach for treating human diseases, including neurodegenerative diseases, cancer, and infections. Expanding SIRT2 inhibitors based on the 3-aminobenzyloxy nicotinamide core structure, we have synthesized and evaluated constrained analogs and selected stereoisomers. Our structure-activity relationship (SAR) study has revealed that 2,3-constrained (S)-isomers possess enhanced in vitro enzymatic inhibitory activity against SIRT2 and retain excellent selectivity over SIRT1 and SIRT3, provided that a suitable ring A is used. This current study further explores SIRT2 inhibitors based on the 3-aminobenzyloxy nicotinamide scaffold and cont...
284 pagesSIRT2 regulates various biological pathways through lysine deacetylation and de-fatty acyla...
Reversible lysine acetylation is a mechanism organisms use to regulate essential cellular activities...
284 pagesSIRT2 regulates various biological pathways through lysine deacetylation and de-fatty acyla...
Sirtuin 2 (SIRT2) is one of the sirtuins, a family of NAD<sup>+</sup>-dependent deacetylases that ac...
The group of 5 [(amidobenzyl)oxy] nicotinamides (SIRT2) inhibitors. Despite structural similarity, ...
The sirtuins SIRT1, SIRT2, and SIRT3 are NAD<sup>+</sup> dependent deacetylases that are considered ...
Sirtuins (SIRTs) are a class of NAD(+)-dependent protein histone deacetylases (HDACs) that catalyse ...
Sirtuins (SIRTs) are NAD-dependent deacylases, known to be involved in a variety of pathophysiologic...
Sirtuins (SIRTs) are NAD-dependent deacylases, known to be involved in a variety of pathophysiologic...
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...
SIRT1 and SIRT2 are two NAD⁺-dependent deacetylases which negatively modulate the activity of p53, a...
Sirtuins are a highly conserved class of NAD(+)-dependent lysine deacylases. The human isotype Sirt...
NAD(+)-dependent sirtuin deacetylases have emerged as potential therapeutic targets for treatment of...
284 pagesSIRT2 regulates various biological pathways through lysine deacetylation and de-fatty acyla...
Reversible lysine acetylation is a mechanism organisms use to regulate essential cellular activities...
284 pagesSIRT2 regulates various biological pathways through lysine deacetylation and de-fatty acyla...
Sirtuin 2 (SIRT2) is one of the sirtuins, a family of NAD<sup>+</sup>-dependent deacetylases that ac...
The group of 5 [(amidobenzyl)oxy] nicotinamides (SIRT2) inhibitors. Despite structural similarity, ...
The sirtuins SIRT1, SIRT2, and SIRT3 are NAD<sup>+</sup> dependent deacetylases that are considered ...
Sirtuins (SIRTs) are a class of NAD(+)-dependent protein histone deacetylases (HDACs) that catalyse ...
Sirtuins (SIRTs) are NAD-dependent deacylases, known to be involved in a variety of pathophysiologic...
Sirtuins (SIRTs) are NAD-dependent deacylases, known to be involved in a variety of pathophysiologic...
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...
SIRT1 and SIRT2 are two NAD⁺-dependent deacetylases which negatively modulate the activity of p53, a...
Sirtuins are a highly conserved class of NAD(+)-dependent lysine deacylases. The human isotype Sirt...
NAD(+)-dependent sirtuin deacetylases have emerged as potential therapeutic targets for treatment of...
284 pagesSIRT2 regulates various biological pathways through lysine deacetylation and de-fatty acyla...
Reversible lysine acetylation is a mechanism organisms use to regulate essential cellular activities...
284 pagesSIRT2 regulates various biological pathways through lysine deacetylation and de-fatty acyla...