CALORIMETRIC INVESTIGATIONS OF BINDING OF INHIBITORS TO ALPHA-CHYMOTRYPSIN .I. ENTHALPY OF DILUTION OF ALPHA-CHYMOTRYPSIN AND OF PROFLAVIN, AND ENTHALPY OF BINDING OF INDOLE . N-ACETYL-D-TRYPTOPHAN, AND PROFLAVIN TO ALPHA-CHYMOTRYPSIN

被引:50
作者
SHIAO, DDF
STURTEVANT, JM
机构
[1] Department of Chemistry, Department of Molecular Biophysics, Yale University, New Haven
关键词
D O I
10.1021/bi00840a039
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
A flow microcalorimeter has been employed to measure the enthalpies of binding of indole, N-acetyl-D-tryptophan, and proflavin to α-chymotrypsin at pH 7.8 and also the heats of dilution of α-chymotrypsin and proflavin at the same pH. The following points are discussed. (1) The studies of the heats of dilution of α-chymotrypsin as a function of enzyme concentration lead to the suggestion that monomer-dimer equilibrium of this enzyme exists at pH 7.8. The calculated thermodynamic functions for this equilibrium are consistent with the view that the dimeric forms of the enzyme can be identified as the enzyme-substrate intermediates preceding the autolysis reaction. (2) The heat effects due to the dilution of proflavin are shown to be consistent with the assumption that the self-association of this compound can be adequately represented by a series of equilibria involving dimer, trimer, and other higher polymers. The large negative enthalpy of polymerization (-4.0 kcal/mole) shows that the self-association of proflavin is accompanied by an unfavorable entropy change. (3) The apparent heats of binding of inhibitors to α-chymotrypsin were observed to be strongly dependent on enzyme concentration. These observations lead to the suggestion that the dimeric forms of the enzyme are incapable of binding inhibitors. (4) The enthalpies of binding of indole, N-acetyl-D-tryptophan, and proflavin to α-chymotrypsin were observed to be -15.2, -19.0, and -11.3 kcal/mole, respectively, at pH 7.8. On the basis of these numbers it is concluded that conformational changes in the enzyme are induced by the binding of inhibitors. © 1969, American Chemical Society. All rights reserved.
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页码:4910 / +
页数:1
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共 38 条
[1]   ON INTERACTION OF ACTIVE SITE OF ALPHA-CHYMOTRYPSIN WITH CHROMOPHORES - PROFLAVIN BINDING AND ENZYME CONFORMATION DURING CATALYSIS [J].
BERNHARD, SA ;
LEE, BF ;
TASHJIAN, ZH .
JOURNAL OF MOLECULAR BIOLOGY, 1966, 18 (03) :405-&
[2]   ROLE OF A BURIED ACID GROUP IN MECHANISM OF ACTION OF CHYMOTRYPSIN [J].
BLOW, DM ;
BIRKTOFT, JJ ;
HARTLEY, BS .
NATURE, 1969, 221 (5178) :337-&
[3]   MICROCALORIMETRIC AND KINETIC STUDIES OF THE ALPHA-CHYMOTRYPSIN-HYDROCINNAMIC ESTER - HYDROCINNAMIC ACID SYSTEM [J].
CANADY, WJ ;
LAIDLER, KJ .
CANADIAN JOURNAL OF CHEMISTRY-REVUE CANADIENNE DE CHIMIE, 1958, 36 (09) :1289-1296
[4]   ULTRAVIOLET SPECTRAL CHANGES RELATED TO THE ENZYMIC ACTIVITY OF CHYMOTRYPSIN [J].
CHERVENKA, CH .
BIOCHIMICA ET BIOPHYSICA ACTA, 1959, 31 (01) :85-95
[5]   THERMODYNAMIC STUDY OF AN ENZYME SUBSTRATE COMPLEX OF CHYMOTRYPSIN .1. [J].
DOHERTY, DG ;
VASLOW, F .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1952, 74 (04) :931-936
[7]   ENTHALPY OF SELF-ASSOCIATION OF PURINE DERIVATIVES IN WATER [J].
GILL, SJ ;
DOWNING, M ;
SHEATS, GF .
BIOCHEMISTRY, 1967, 6 (01) :272-&
[8]   THE EFFECTS OF DIVALENT CATIONS ON THE ENZYMATIC ACTIVITIES OF TRYPSIN AND OF ALPHA-CHYMOTRYPSIN [J].
GREEN, MM ;
GLADNER, JA ;
CUNNINGHAM, LW ;
NEURATH, H .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1952, 74 (08) :2122-2123
[9]  
HEIN GE, 1962, J AM CHEM SOC, V84, P4495, DOI 10.1021/ja00882a025
[10]  
HYMES AJ, 1969, J BIOL CHEM, V244, P637