PEPTIDE ALDEHYDES AND NITRILES AS TRANSITION-STATE ANALOG INHIBITORS OF CYSTEINE PROTEASES

被引:60
作者
DUFOUR, E [1 ]
STORER, AC [1 ]
MENARD, R [1 ]
机构
[1] NATL RES COUNCIL CANADA,BIOTECHNOL RES CTR,MONTREAL,PQ H4P 2R2,CANADA
关键词
D O I
10.1021/bi00028a024
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Enzymes efficiently catalyze reactions by stabilizing inherently unstable transition states. For cysteine proteases, part of the stabilization is provided by a region of the enzyme termed the oxyanion hole. Site-directed mutagenesis has been used to investigate further the role of the oxyanion hole of papain in the binding of putative transition stare analog inhibitors of cysteine proteases. The dissociation constants K-i(obs) for inhibition of wild-type and mutant enzymes (Glnl9Ala, Glnl9Glu, and Glnl9His) by the aldehyde Ac-Phe-Gly-CHO and the nitrile MeOCO-Phe-Gly-CN have been determined in the pH range 3.5-9.0. For the peptide nitrite inhibitor, mutation of Gln19 was found to cause important increases in K-i(obs) and thioimidate adducts with the papain mutants Glnl9Ala and Glnl9Glu are less stable by 1.4-2.6 kcal/mol. However, for the peptide aldehyde inhibitor, the mutations resulted in a small but significant increase in stability of the tetrahedral hemithioacetal adduct (0.4-1.2 kcal/mol). In that respect, the hemithioacetal formed between papain and a peptide aldehyde cannot be considered a good model of the transition state for cysteine protease-catalyzed reactions. The influence of the mutations on the pH dependency of inhibition also indicates that with respect to oxyanion hole interaction, the inhibition of papain by peptide nitriles is a process closer to that of substrate hydrolysis than is the inhibition by the corresponding peptide aldehydes. The nature of the intermediates and transition states in hydrolysis reactions catalyzed by cysteine proteases, as well, as the use of enzyme-inhibitor adducts as their models, is discussed.
引用
收藏
页码:9136 / 9143
页数:8
相关论文
共 47 条
[1]   BIOLOGICAL ACTIVITIES OF LEUPEPTINS [J].
AOYAGI, T ;
MIYATA, S ;
NANBO, M ;
KOJIMA, F ;
MATSUZAKI, M ;
ISHIZUKA, M ;
TAKEUCHI, T ;
UMEZAWA, H .
JOURNAL OF ANTIBIOTICS, 1969, 22 (11) :558-+
[2]  
Aoyagi T, 1975, PROTEASES BIOL CONTR, P429
[3]   STRUCTURAL AND MECHANISTIC ASPECTS OF 3C PROTEASES FROM THE PICORNAVIRUS FAMILY [J].
ARAD, D ;
KREISBERG, R ;
SHOKHEN, M .
JOURNAL OF CHEMICAL INFORMATION AND COMPUTER SCIENCES, 1993, 33 (03) :345-349
[4]   A SIMULATION OF THE SULFUR ATTACK IN THE CATALYTIC PATHWAY OF PAPAIN USING MOLECULAR MECHANICS AND SEMIEMPIRICAL QUANTUM-MECHANICS [J].
ARAD, D ;
LANGRIDGE, R ;
KOLLMAN, PA .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1990, 112 (02) :491-502
[5]   INHIBITION OF PAPAIN BY N-ACYL-AMINOACETALDEHYDES AND N-ACYL-AMINOPROPANONES - EVIDENCE FOR HEMITHIOACETAL FORMATION BY A CROSS-SATURATION TECHNIQUE IN NMR-SPECTROSCOPY [J].
BENDALL, MR ;
CARTWRIGHT, IL ;
LOWE, G ;
NURSE, D ;
CLARK, PI .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1977, 79 (01) :201-209
[6]  
BRISSON JR, 1986, J BIOL CHEM, V261, P9087
[7]   EQUILIBRIUM STUDIES OF WATER AND THIOL ADDITION TO KETONES - SUBSTITUENT AND SOLVENT EFFECTS FOR METHYL KETONES [J].
BURKEY, TJ ;
FAHEY, RC .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1983, 105 (04) :868-871
[8]   TIGHT-BINDING INHIBITORS .1. KINETIC-BEHAVIOR [J].
CHA, S .
BIOCHEMICAL PHARMACOLOGY, 1975, 24 (23) :2177-2185
[9]   THE 1.8 A STRUCTURE OF THE COMPLEX BETWEEN CHYMOSTATIN AND STREPTOMYCES-GRISEUS PROTEASE-A - A MODEL FOR SERINE PROTEASE CATALYTIC TETRAHEDRAL INTERMEDIATES [J].
DELBAERE, LTJ ;
BRAYER, GD .
JOURNAL OF MOLECULAR BIOLOGY, 1985, 183 (01) :89-103
[10]   THE DETERMINATION OF ENZYME INHIBITOR CONSTANTS [J].
DIXON, M .
BIOCHEMICAL JOURNAL, 1953, 55 (01) :170-171