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来自耳蜗梭菌的依赖辅酶B12的谷氨酸变位酶中蛋白质组分S的一个组氨酸残基与钴原子的配位作用。

Coordination of a histidine residue of the protein-component S to the cobalt atom in coenzyme B12-dependent glutamate mutase from Clostridium cochlearium.

作者信息

Zelder O, Beatrix B, Kroll F, Buckel W

机构信息

Laboratorium für Mikrobiologie, Fachbereich Biologie, Philipps-Universität, Marburg, Germany.

出版信息

FEBS Lett. 1995 Aug 7;369(2-3):252-4. doi: 10.1016/0014-5793(95)00762-x.

Abstract

Electron paramagnetic resonance (EPR) spectroscopy of glutamate mutase from Clostridium cochlearium was performed in order to test the idea, that a histidine residue of component S replaces the dimethylbenzimidazole ligand of the Co-atom during binding of coenzyme B12 to the enzyme. The shapes and the superhyperfine splitting of the gz-lines of the Co(II) EPR spectra were used as indicators of the interaction of the axial base nitrogen with the Co-atom. A mixture of completely 15N-labelled component S, unlabelled component E, coenzyme B12 and glutamate gave slightly sharper gz-lines than that with unlabelled component S. A more dramatic change was observed in the Co(II) spectrum of the inactivated enzyme containing tightly bound cob(II)alamin, in which unlabelled component S caused a threefold superhyperfine-splitting of the gz-line, whereas the 15N-labelled protein only caused a twofold splitting, as expected for a direct interaction of a nitrogen of the enzyme with the Co-atom. By using a sample of 15N-labelled component S, in which only the histidines were 14N-labelled, the EPR spectra showed no difference to those with unlabelled component S. The experiments indeed demonstrate a replacement of the dimethylbenzimidazole ligand in coenzyme B12 by a histidine when bound to glutamate mutase. The most likely candidate is H16, which is conserved among the carbon skeleton rearranging mutases and methionine synthase.

摘要

为了验证在辅酶B12与来自耳蜗梭菌的谷氨酸变位酶结合过程中,组分S的一个组氨酸残基取代了钴原子的二甲基苯并咪唑配体这一想法,对该酶进行了电子顺磁共振(EPR)光谱分析。钴(II)EPR光谱的gz线的形状和超超精细分裂被用作轴向碱基氮与钴原子相互作用的指标。完全15N标记的组分S、未标记的组分E、辅酶B12和谷氨酸的混合物产生的gz线比未标记组分S的略微更尖锐。在含有紧密结合的钴胺素(cob(II)alamin)的失活酶的钴(II)光谱中观察到了更显著的变化,其中未标记的组分S导致gz线出现三倍超超精细分裂,而15N标记的蛋白质仅导致两倍分裂,这与酶的一个氮原子与钴原子的直接相互作用预期的情况一致。通过使用仅组氨酸为14N标记的15N标记组分S样品,EPR光谱与未标记组分S的光谱没有差异。这些实验确实证明了辅酶B12中的二甲基苯并咪唑配体在与谷氨酸变位酶结合时被一个组氨酸取代。最有可能的候选者是H16,它在碳骨架重排变位酶和甲硫氨酸合酶中是保守的。

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