Design of small molecule inhibitors of acetyl-CoA carboxylase 1 and 2 showing reduction of hepatic malonyl-CoA levels in vivo in obese Zucker rats
作者:Christoffer Bengtsson、Stefan Blaho、David Blomberg Saitton、Kay Brickmann、Johan Broddefalk、Öjvind Davidsson、Tomas Drmota、Rutger Folmer、Kenth Hallberg、Stefan Hallén、Ragnar Hovland、Emre Isin、Petra Johannesson、Bengt Kull、Lars-Olof Larsson、Lars Löfgren、Kristina E. Nilsson、Tobias Noeske、Nick Oakes、Alleyn T. Plowright、Volker Schnecke、Pernilla Ståhlberg、Pernilla Sörme、Hong Wan、Eric Wellner、Linda Öster
DOI:10.1016/j.bmc.2011.04.014
日期:2011.5
Inhibition of acetyl-CoA carboxylases has the potential for modulating long chain fatty acid biosynthesis and mitochondrial fatty acid oxidation. Hybridization of weak inhibitors of ACC2 provided a novel, moderately potent but lipophilic series. Optimization led to compounds 33 and 37, which exhibit potent inhibition of human ACC2, 10-fold selectivity over inhibition of human ACC1, good physical and
抑制乙酰辅酶A羧化酶具有调节长链脂肪酸生物合成和线粒体脂肪酸氧化的潜力。ACC2弱抑制剂的杂交提供了一个新颖的,中等效力但亲脂的系列。优化产生化合物33和37,它们显示出对人ACC2的有效抑制作用,选择性比对人ACC1的抑制作用高10倍,具有良好的物理和体外ADME性质以及良好的生物利用度。X射线晶体学表明该系列结合在ACC2的CT域中,并揭示了两个关键的氢键相互作用。两个33倍37下部的水平在体内在肥胖Zucker大鼠肝丙二酰-CoA。