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Structure of the Human Fatty Acid Synthase KS-MAT Didomain as a Framework for Inhibitor Design
Authors:Günter Pappenberger
Institution:F. Hoffmann La-Roche, Basel, CH-4070 Basel, Switzerland
Abstract:The human fatty acid synthase (FAS) is a key enzyme in the metabolism of fatty acids and a target for antineoplastic and antiobesity drug development. Due to its size and flexibility, structural studies of mammalian FAS have been limited to individual domains or intermediate-resolution studies of the complete porcine FAS. We describe the high-resolution crystal structure of a large part of human FAS that encompasses the tandem domain of β-ketoacyl synthase (KS) connected by a linker domain to the malonyltransferase (MAT) domain. Hinge regions that allow for substantial flexibility of the subdomains are defined. The KS domain forms the canonical dimer, and its substrate-binding site geometry differs markedly from that of bacterial homologues but is similar to that of the porcine orthologue. The didomain structure reveals a possible way to generate a small and compact KS domain by omitting a large part of the linker and MAT domains, which could greatly aid in rapid screening of KS inhibitors. In the crystal, the MAT domain exhibits two closed conformations that differ significantly by rigid-body plasticity. This flexibility may be important for catalysis and extends the conformational space previously known for type I FAS and 6-deoxyerythronolide B synthase.
Keywords:ACP  acyl carrier protein  CoA  coenzyme A  DDM  d-maltopyranoside" target="_blank">n-dodecyl-β-d-maltopyranoside  DEBS  6-deoxyerythronolide B synthase  DH  β-hydroxyacyl ACP dehydratase  ER  enoyl-ACP reductase  FAS  fatty acid synthase  hFAS  human FAS  mFAS  mammalian FAS  KR  β-ketoacyl ACP reductase  KS  β-ketoacyl synthase  LD  linker domain  MAT  malonyl/acetyl ACP transferase  TCEP  tris-(2-carboxyethyl)-phosphine hydrochloride
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