Journal of Medicinal Chemistry · 2001 · 38 citations · 12 references
Medicinal ChemistryNonpeptidic Difluoromethylene KetonesPharmaceutical ScienceBiochemistryHuman ChymaseStructure−activity RelationshipsBioanalysisMedicineNatural SciencesCompound 2UActive Chymase InhibitorPharmacotherapyClinical ChemistryDrug DevelopmentPharmacologyPharmaceutical ChemistryInhibitory ActivityDrug Discovery
Potent human chymase inhibitors with high enzymatic selectivity and satisfactory metabolic stability were obtained by replacing the Val-Pro (P3-P2) dipeptide portion of the previously described inhibitor 1 with a nonpeptidic pyrimidinone skeleton. The potency of the novel compounds was further enhanced by the introduction of carbamoyl-substituted difluoromethylene ketone moieties. The most potent chymase inhibitor of the newly created series was 2u (Y-40018), which had a K(i) of 2.62 nM. Compound 2u possessed high selectivity for human chymase since it lacked significant activity toward other representative human proteolytic enzymes. Moreover its strict specificity for human chymase suggested that 2u strongly inhibited human and canine chymases but not rat and mouse ones. Pharmacokinetic studies in rats and dogs indicated that 2u was absorbed rapidly after oral administration and had satisfactory bioavailability in these experimental animal species (rat, 17%; dog, 32%). In conclusion, 2u is a novel, potent, and orally active chymase inhibitor which would prove very useful in revealing the precise roles of the latter in various pathophysiological processes.
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Jouko Lohi, Juhani Saarinen, Petri T. Kovanen et al. · Journal of Biological Chemistry · 1995 · 394 citations · Full text
The structure of rat mast cell protease II at 1.9-angstrom resolution
S. James Remington, Richard G. Woodbury, R.A. Reynolds et al. · Biochemistry · 1988 · 112 citations