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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
Authors:Bengtsson Christoffer  Blaho Stefan  Saitton David Blomberg  Brickmann Kay  Broddefalk Johan  Davidsson Ojvind  Drmota Tomas  Folmer Rutger  Hallberg Kenth  Hallén Stefan  Hovland Ragnar  Isin Emre  Johannesson Petra  Kull Bengt  Larsson Lars-Olof  Löfgren Lars  Nilsson Kristina E  Noeske Tobias  Oakes Nick  Plowright Alleyn T  Schnecke Volker  Ståhlberg Pernilla  Sörme Pernilla  Wan Hong  Wellner Eric  Oster Linda
Institution:AstraZeneca Research and Development, M?lndal, Sweden.
Abstract: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 in vitro ADME properties and good bioavailability. X-ray crystallography has shown this series binding in the CT-domain of ACC2 and revealed two key hydrogen bonding interactions. Both 33 and 37 lower levels of hepatic malonyl-CoA in vivo in obese Zucker rats.
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