SIRT2
锡尔图因
配体(生物化学)
细胞生物学
药物发现
生物
化学
NAD+激酶
生物化学
受体
酶
作者
Tobias Rumpf,Matthias Schiedel,Berin Karaman,Claudia Roessler,Brian J. North,Attila Lehotzky,Judit Oláh,Kathrin I. Ladwein,Matthias Schmidt,M. Gajer,M. Pannek,Clemens Steegborn,David Sinclair,S. Gerhardt,Judit Ovádi,Mike Schutkowski,Wolfgang Sippl,Oliver Einsle,Manfred Jung
摘要
Abstract Sirtuins are a highly conserved class of NAD + -dependent lysine deacylases. The human isotype Sirt2 has been implicated in the pathogenesis of cancer, inflammation and neurodegeneration, which makes the modulation of Sirt2 activity a promising strategy for pharmaceutical intervention. A rational basis for the development of optimized Sirt2 inhibitors is lacking so far. Here we present high-resolution structures of human Sirt2 in complex with highly selective drug-like inhibitors that show a unique inhibitory mechanism. Potency and the unprecedented Sirt2 selectivity are based on a ligand-induced structural rearrangement of the active site unveiling a yet-unexploited binding pocket. Application of the most potent Sirtuin-rearranging ligand, termed SirReal2, leads to tubulin hyperacetylation in HeLa cells and induces destabilization of the checkpoint protein BubR1, consistent with Sirt2 inhibition in vivo . Our structural insights into this unique mechanism of selective sirtuin inhibition provide the basis for further inhibitor development and selective tools for sirtuin biology.
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