Specific inhibitory conformation of dipeptides for chymotrypsin

Based on the analyzed conformation of a chymotrypsin inhibitor H-▿Phe-Phe-OMe, we have designed a series of diastereomeric phenylalanylphenylalanine methyl esters and derivatives as possible inhibitors. Among the peptides synthesized, H-D-Phe-L-Phe-OMe was found to be very resistant to chymotrypsin...

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Veröffentlicht in:Biochemical and biophysical research communications 1990-02, Vol.166 (3), p.1460-1466
Hauptverfasser: Shimohigashi, Yasuyuki, Ogawa, Tomohisa, Kodama, Hiroaki, Sakamoto, Hiroshi, Yoshitomi, Haruko, Waki, Michinori, Ohno, Motonori
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Sprache:eng
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Zusammenfassung:Based on the analyzed conformation of a chymotrypsin inhibitor H-▿Phe-Phe-OMe, we have designed a series of diastereomeric phenylalanylphenylalanine methyl esters and derivatives as possible inhibitors. Among the peptides synthesized, H-D-Phe-L-Phe-OMe was found to be very resistant to chymotrypsin in spite of its L-Phe-OMe structure at the C-terminus. It inhibited the enzyme fairly strongly and competitively with Ki = 9.0 × 10−5 M in the assay using Ac-Tyr-OEt as a substrate. The measurements of the NOEs in high-resolution1H-NMR analyses indicated the presence of the hydrophobic core built by the intramolecular interaction between the D-Phe-phenyl and ester-methyl groups. It was suggested that this core interacts with the chymotrypsin S2 site (Trp215) and Phe2 with the S1 site. The backbone structure of this dipeptide was assumed to be in an inhibitory conformation that fits the active center of the enzyme.
ISSN:0006-291X
1090-2104
DOI:10.1016/0006-291X(90)91031-M