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Design and synthesis of 3-pyridylacetamide derivatives as dipeptidyl peptidase IV (DPP-4) inhibitors targeting a bidentate interaction with Arg125
Authors:Miyamoto Yasufumi  Banno Yoshihiro  Yamashita Tohru  Fujimoto Tatsuhiko  Oi Satoru  Moritoh Yusuke  Asakawa Tomoko  Kataoka Osamu  Takeuchi Koji  Suzuki Nobuhiro  Ikedo Koji  Kosaka Takuo  Tsubotani Shigetoshi  Tani Akiyoshi  Funami Miyuki  Amano Michiko  Yamamoto Yoshio  Aertgeerts Kathleen  Yano Jason  Maezaki Hironobu
Institution:a Pharmaceutical Research Division, Takeda Pharmaceutical Company Limited, 17-85, Jusohonmachi 2-Chome, Yodogawa-ku, Osaka 532-8686, Japan
b Takeda San Diego, Inc., 10410, Science Center Drive, San Diego, CA 92121, USA
Abstract:We have previously discovered nicotinic acid derivative 1 as a structurally novel dipeptidyl peptidase IV (DPP-4) inhibitor. In this study, we obtained the X-ray co-crystal structure between nicotinic acid derivative 1 and DPP-4. From these X-ray co-crystallography results, to achieve more potent inhibitory activity, we targeted Arg125 as a potential amino acid residue because it was located near the pyridine core, and some known DPP-4 inhibitors were reported to interact with this residue. We hypothesized that the guanidino group of Arg125 could interact with two hydrogen-bond acceptors in a bidentate manner. Therefore, we designed a series of 3-pyridylacetamide derivatives possessing an additional hydrogen-bond acceptor that could have the desired bidentate interaction with Arg125. We discovered the dihydrochloride of 1-{5-(aminomethyl)-2-methyl-4-(4-methylphenyl)-6-(2-methylpropyl)pyridin-3-yl]acetyl}-l-prolinamide (13j) to be a potent and selective DPP-4 inhibitor that could interact with the guanidino group of Arg125 in a unique bidentate manner.
Keywords:DPP-4  Dipeptidyl peptidase IV  GLP-1  Glucagon-like peptide 1  SAR  Structure-activity relationship  AcOH  Acetic acid  DIBAL-H  Diisobutylaluminum hydride  Boc  tert-Butoxy carbonyl  TMSCN  Trimethylsilyl cyanide  TBAF  Tetrabutylammonium fluoride  mCPBA  m-Chloroperoxybenzoic acid  ADME  Absorption  distribution  metabolism and elimination  B  A    Bioavailability  MRT  Mean residence time
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