NONPEPTIDIC INHIBITORS OF HUMAN-LEUKOCYTE ELASTASE .3. DESIGN, SYNTHESIS, X-RAY CRYSTALLOGRAPHIC ANALYSIS, AND STRUCTURE-ACTIVITY-RELATIONSHIPS FOR A SERIES OF ORALLY-ACTIVE 3-AMINO-6-PHENYLPYRIDIN-2-ONE TRIFLUOROMETHYL KETONES

Citation
Pr. Bernstein et al., NONPEPTIDIC INHIBITORS OF HUMAN-LEUKOCYTE ELASTASE .3. DESIGN, SYNTHESIS, X-RAY CRYSTALLOGRAPHIC ANALYSIS, AND STRUCTURE-ACTIVITY-RELATIONSHIPS FOR A SERIES OF ORALLY-ACTIVE 3-AMINO-6-PHENYLPYRIDIN-2-ONE TRIFLUOROMETHYL KETONES, Journal of medicinal chemistry, 37(20), 1994, pp. 3313-3326
Citations number
37
Categorie Soggetti
Chemistry Medicinal
ISSN journal
00222623
Volume
37
Issue
20
Year of publication
1994
Pages
3313 - 3326
Database
ISI
SICI code
0022-2623(1994)37:20<3313:NIOHE.>2.0.ZU;2-8
Abstract
A series of nonpeptidic inhibitors of human leukocyte elastase (HLE) i s reported. These trifluoromethyl ketone-based inhibitors contain a 3- amino-6-phenylpyridone group as a central template. The effect of vary ing the N-3 substituent in these inhibitors on in vitro potency, physi cal properties, and oral activity in a hamster based, HLE-induced lung damage model is described. The variety of substituents at this positi on that have little effect on in vitro potency supports the idea that this region of the molecule does not interact strongly with the enzyme . One exception to this generality is 13k, which is substituted with a (4-acetamidophenyl)sulfonyl group. This compound has a K-i of 0.7 nM and is, in vitro, the most potent inhibitor in the series. In contrast , variation of the N-3 substituent was found to have a dramatic effect on activity after oral administration. Several analogs, including the parent amine, 7, formamide, 2u, benzyl sulfamide, 13e, and benzyl sul fonamide, 13f, show significant activity when administered at an oral dose of 2.5 mg/kg. Support for the modeling-based design concepts was obtained through in vitro SAR results and X-ray crystallographic analy sis of the complex between 13d and porcine pancreatic elastase (PPE), a closely related enzyme.