Relative structure-inhibition analyses of the N-benzoyl and N-(phenylsulfonyl) amino acid aldose reductase inhibitors

Journal of Medicinal Chemistry
1991.0

Abstract

A number of N-benzoyl amino acids were synthesized and tested to compare structure-inhibition relationships with the isosteric N-(phenylsulfonyl) amino acid (PS-amino acid) aldose reductase inhibitors. Inhibition analyses with these series reveals that their kinetic mechanisms of inhibition are similar, but that significant differences in structure-inhibition relationships exist. For example, while the PS-alanines and PS-2-phenylglycines produce enantioselective inhibition (S greater than R), no consistent pattern of enantioselectivity is observed with the isosteric N-benzoylalanines and 2-phenylglycines. Also, N-methyl and N-phenyl substitution in the PS-amino acid series does not substantially alter inhibitory activity, while similar substitutions in the N-benzoyl series (particularly N-phenyl) results in a significant increase in inhibitory activity. Proton NMR analysis of the N-benzoylsarcosines reveals that these compounds exist as a mixture of rotamers in solutions including the enzyme assay buffer and that the preferred conformer is one in which the carboxymethyl moiety is trans to the aromatic ring. Similar analyses with the N-benzoyl-N-phenylglycines demonstrate that these derivatives exist exclusively in the trans rotameric conformation in solution. No such N-substituent effects on conformation were observed in the PS-amino acid series. These results suggest that the differences in structure-inhibition trends between these structurally related series may result from the effect of substituents on preferred conformation.

Knowledge Graph

Similar Paper

Relative structure-inhibition analyses of the N-benzoyl and N-(phenylsulfonyl) amino acid aldose reductase inhibitors
Journal of Medicinal Chemistry 1991.0
Synthesis and in vitro aldose reductase inhibitory activity of compounds containing an N-acylglycine moiety
Journal of Medicinal Chemistry 1989.0
A new series of N2-substituted-5-(p-toluenesulfonylamino)phthalimide analogues as α-glucosidase inhibitors
Bioorganic & Medicinal Chemistry Letters 2013.0
Cysteine Derivatives as Inhibitors for Carboxypeptidase A:  Synthesis and Structure−Activity Relationships
Journal of Medicinal Chemistry 2002.0
2-Aryl benzimidazoles: Synthesis, In vitro α-amylase inhibitory activity, and molecular docking study
European Journal of Medicinal Chemistry 2018.0
Stereoisomers of allenic amines as inactivators of monoamine oxidase type B. Stereochemical probes of the active site
Journal of Medicinal Chemistry 1988.0
Synthesis and structure-activity relations of bestatin analogs, inhibitors of aminopeptidase B
Journal of Medicinal Chemistry 1977.0
Rational Design of an Indolebutanoic Acid Derivative as a Novel Aldose Reductase Inhibitor Based on Docking and 3D QSAR Studies of Phenethylamine Derivatives
Journal of Medicinal Chemistry 2003.0
N-Alkylated Nitrogen-in-the-Ring Sugars: Conformational Basis of Inhibition of Glycosidases and HIV-1 Replication
Journal of Medicinal Chemistry 1995.0
Conformationally defined adrenergic agents. 13. Conformational and steric aspects of the inhibition of phenylethanolamine N-methyltransferase by benzylamines
Journal of Medicinal Chemistry 1988.0