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金属离子在Mn2+取代的氨基酰化酶I中作用的核磁共振弛豫研究

Nuclear magnetic relaxation studies of the role of the metal ion in Mn2(+)-substituted aminoacylase I.

作者信息

Heese D, Berger S, Röhm K H

机构信息

Institut für Physiologische Chemie, Philipps-Universität, Marburg, Federal Republic of Germany.

出版信息

Eur J Biochem. 1990 Feb 22;188(1):175-80. doi: 10.1111/j.1432-1033.1990.tb15385.x.

Abstract

Substitution of the essential Zn2+ ions of porcine kidney aminoacylase I (EC 3.5.1.14) by Mn2+ did not markedly affect the kinetic properties of the enzyme. Using Mn2+ as a paramagnetic probe, we were able to study the conformations of bound ligands by measuring the enhancement of ligand proton relaxation in 1H NMR. In addition, the effects of inhibitors on the paramagnetic enhancement of water proton relaxation rates were examined. The results of both approaches, in agreement with kinetic evidence, suggest that the metal center of aminoacylase I is too distant from the ligand binding site to allow direct participation of the metal in substrate binding or catalysis. We, therefore, propose that the metal ion of aminoacylase I plays a purely structural role.

摘要

用Mn2+取代猪肾氨基酰化酶I(EC 3.5.1.14)的必需Zn2+离子,对该酶的动力学性质没有显著影响。利用Mn2+作为顺磁探针,我们能够通过测量1H NMR中配体质子弛豫的增强来研究结合配体的构象。此外,还研究了抑制剂对水质子弛豫速率顺磁增强的影响。两种方法的结果与动力学证据一致,表明氨基酰化酶I的金属中心离配体结合位点太远,无法使金属直接参与底物结合或催化。因此,我们提出氨基酰化酶I的金属离子仅起结构作用。

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