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铜取代羧肽酶A对寡肽和缩肽的活性。

Activity of copper-substituted carboxypeptidase A toward oligopeptides and depsipeptides.

作者信息

Schäffer A, Auld D S

出版信息

Biochemistry. 1986 May 6;25(9):2476-9. doi: 10.1021/bi00357a028.

Abstract

Cu(II)-substituted carboxypeptidase A catalyzes the hydrolysis of oligopeptides and their depsipeptide (ester) analogues. Stopped-flow fluorescence assays demonstrate that relative to the zinc enzyme the Cu enzyme can have kcat/Km values up to 24% toward esters but only up to 2.5% toward the corresponding peptides. Adding Zn(II) to the copper enzyme reveals a slow exchange process that correlates with an increase in peptidase activity and with changes in the Cu(II) electron paramagnetic resonance spectra. Low concentrations of 1,10-phenanthroline (OP) (0.1-2.5 microM) markedly increase activity toward furanacryloyl-Phe-Phe (up to 8% of the zinc enzyme), but higher concentrations inhibit, resulting in complete inhibition at 0.8 mM OP. The non-metal-binding, hydrophobic analogues m- and p-phenanthroline are only activators of peptide hydrolysis, even at 1 mM. Activation is likely due to a modifier binding to a hydrophobic locus and either displacing an inhibitory peptide binding mode or inducing a conformational change in the active site.

摘要

铜(II)取代的羧肽酶A催化寡肽及其缩肽(酯)类似物的水解。停流荧光分析表明,相对于锌酶,铜酶对酯的催化常数与米氏常数的比值(kcat/Km)最高可达24%,但对相应肽的该比值仅高达2.5%。向铜酶中添加锌(II)会揭示一个缓慢的交换过程,该过程与肽酶活性的增加以及铜(II)电子顺磁共振光谱的变化相关。低浓度的1,10 - 菲咯啉(OP)(0.1 - 2.5 microM)显著提高对呋喃丙烯酰 - 苯丙氨酸 - 苯丙氨酸的活性(高达锌酶活性的8%),但较高浓度则会抑制,在0.8 mM OP时导致完全抑制。即使在1 mM时,非金属结合的疏水类似物间菲咯啉和对菲咯啉也只是肽水解的激活剂。激活可能是由于一种修饰剂与疏水位点结合,要么取代抑制性肽的结合模式,要么诱导活性位点的构象变化。

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