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羧肽酶A中锌离子的流动态路易斯酸度

Fluxionate Lewis acidity of the Zn2+ ion in carboxypeptidase A.

作者信息

Mock W L, Freeman D J, Aksamawati M

机构信息

Department of Chemistry, University of Illinois, Chicago 60607-7061.

出版信息

Biochem J. 1993 Jan 1;289 ( Pt 1)(Pt 1):185-93. doi: 10.1042/bj2890185.

Abstract

Competitive inhibition constants Ki for a series of phenol-ring-substituted derivatives of alpha-(2-hydroxyphenyl)benzenepropanoic acid have been ascertained by observing their influence on the catalytic hydrolysis of a peptide substrate by the zinc enzyme carboxypeptidase A. The pH-dependence of Ki shows that binding is maximal between two pKa values: one is that of the phenol group of the inhibitor, and the other uniformly has a value of 6, the pKa of a Zn(2+)-bound water molecule on the enzyme in the absence of substrate or inhibitor. This is the dependence expected if phenolate binds to the Zn2+ displacing its bound H2O/HO-. A log-log plot of the dissociation constants for the productive forms of inhibitor plus enzyme versus the acid dissociation constants of the phenolic residues in the inhibitors yields a straight line with a slope of +0.76. This number indicates that the active-site metal ion has special capacity for dispersing negative charge, such as builds up on the oxygen atom of a carboxamide group undergoing nucleophilic addition.

摘要

通过观察一系列α-(2-羟基苯基)苯丙酸的酚环取代衍生物对锌酶羧肽酶A催化肽底物水解的影响,确定了其竞争性抑制常数Ki。Ki对pH的依赖性表明,结合在两个pKa值之间达到最大值:一个是抑制剂酚基团的pKa值,另一个值始终为6,即无底物或抑制剂时酶上与Zn(2+)结合的水分子的pKa值。如果酚盐结合到Zn2+上取代其结合的H2O/HO-,这就是预期的依赖性。抑制剂加酶的活性形式的解离常数与抑制剂中酚残基的酸解离常数的对数-对数图给出了一条斜率为+0.76的直线。这个数字表明活性位点金属离子具有分散负电荷的特殊能力,比如在经历亲核加成的羧酰胺基团的氧原子上积累的负电荷。

相似文献

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A probe of the active site acidity of carboxypeptidase A.羧肽酶A活性位点酸度的探究。
Biochemistry. 1986 May 20;25(10):2920-7. doi: 10.1021/bi00358a028.

本文引用的文献

1
The pH dependence of peptide hydrolysis by nitrocarboxypeptidase A.硝基羧肽酶A催化肽水解的pH依赖性
Arch Biochem Biophys. 1980 Sep;203(2):542-52. doi: 10.1016/0003-9861(80)90211-8.
2
Hydrolysis of a thiopeptide by cadmium carboxypeptidase A.镉羧肽酶A对硫肽的水解作用。
Biochem Biophys Res Commun. 1981 Sep 16;102(1):389-96. doi: 10.1016/0006-291x(81)91533-3.
5
The metallobiochemistry of zinc enzymes.锌酶的金属生物化学
Adv Enzymol Relat Areas Mol Biol. 1984;56:283-430. doi: 10.1002/9780470123027.ch5.
8
The mechanism of the aminolysis of acetate esters.乙酸酯氨解的机理。
J Am Chem Soc. 1974 Oct 30;96(22):7018-31. doi: 10.1021/ja00829a034.
9
A probe of the active site acidity of carboxypeptidase A.羧肽酶A活性位点酸度的探究。
Biochemistry. 1986 May 20;25(10):2920-7. doi: 10.1021/bi00358a028.

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