THE SYNTHESIS OF N‐BENZYLOXYCARBONYL‐L‐PROLYL‐DEHYDROPHENYLALANYL‐L‐HISTIDYL‐L‐LEUCINE
Sho Konno, C. H. STAMMER
Abstract
Sho Konno, C. H. STAMMER
Abstract
The direct oxidation of a dipeptide azlactone (1) by DDG affords an optically active unsaturated dipeptide azlactone (2). It was shown that the double bond had the Z-configuration and that no racemization of the proline moiety occurred during the oxidation. The dehydrotripeptide, Z-Pro-delta-Phe-Phe OH (9b) was prepared by direct coupling of azlactone (2) with phenylalanine tetramethyl-guanidinium salt and was shown to be stable to chymotrypsin. The tetrapeptide, Z-Pro-delta-Phe-His-Leu OH (11), was prepared directly from the azlactone (2) and by saponification of the tetrapeptide ester (10) prepared by mixed anhydride coupling of Z-Pro-deltaPhe OH (7) with the dipeptide ester. The dehydropeptide (11) inhibits angiotensin I converting enzyme (IC50, 1X10-4 M).
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The direct oxidation of a dipeptide azlactone (1) by DDG affords an optically active unsaturated dipeptide azlactone (2). It was shown that the double bond had the Z-configuration and that no racemization of the proline moiety occurred during the oxidation. The dehydrotripeptide, Z-Pro-delta-Phe-Phe OH (9b) was prepared by direct coupling of azlactone (2) with phenylalanine tetramethyl-guanidinium salt and was shown to be stable to chymotrypsin. The tetrapeptide, Z-Pro-delta-Phe-His-Leu OH (11), was prepared directly from the azlactone (2) and by saponification of the tetrapeptide ester (10) prepared by mixed anhydride coupling of Z-Pro-deltaPhe OH (7) with the dipeptide ester. The dehydropeptide (11) inhibits angiotensin I converting enzyme (IC50, 1X10-4 M).
Key concepts: Dipeptide, Tetrapeptide, Racemization, Chemistry, Stereochemistry, Moiety, Phenylalanine, Amino acid