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超氧化物歧化酶中组氨酸C-2质子的交换。一种确定蛋白质中组氨酸-金属配体的新方法。

The exchange of histidine C-2 protons in superoxide dismutases. A novel method for assigning histidine-metal ligands in proteins.

作者信息

Cass A E, Hill H A, Bannister J V, Bannister W H, Hasemann V, Johansen J T

出版信息

Biochem J. 1979 Oct 1;183(1):127-32. doi: 10.1042/bj1830127.

Abstract

The rates of exchange of the C-2 protons of histidine residues in copper-zinc superoxide dismutase are substantially decreased by metal ion binding. This observation was used to distinguish between ligand and non ligand histidine residues in bovine and yeast copper-zinc superoxide dismutases; the effect was shown to depend only on metal ion co-ordination and not as a consequence of concomitant changes in protein structure. Selective deuteration of the zinc-only proteins at pH (uncorrected pH-meter reading) 8.2 and 50 degrees C resulted in the distinction between copper and zinc ligand resonances in the 1H n.m.r. spectrum of the enzymes. This method is proposed as a generally applicable technique for identifying histidine residues as ligands in metalloproteins.

摘要

铜锌超氧化物歧化酶中组氨酸残基的C-2质子交换速率会因金属离子结合而大幅降低。这一观察结果被用于区分牛和酵母铜锌超氧化物歧化酶中的配体组氨酸残基和非配体组氨酸残基;结果表明,这种影响仅取决于金属离子配位,而非蛋白质结构的伴随变化。在pH值(未校正的pH计读数)8.2和50℃条件下对仅含锌的蛋白质进行选择性氘化,可在酶的1H核磁共振谱中区分铜和锌配体共振。该方法被提议作为一种普遍适用的技术,用于鉴定金属蛋白中作为配体的组氨酸残基。

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Hydrogen exchange and the dynamic structure of proteins.氢交换与蛋白质的动态结构
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