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氯过氧化物酶,一种双面酶。

Chloroperoxidase, a janus enzyme.

作者信息

Manoj Kelath Murali, Hager Lowell P

机构信息

Department of Biochemistry, University of Illinois at Urbana-Champaign, 6000 South Mathews Avenue, Urbana, Illinois 61801, USA.

出版信息

Biochemistry. 2008 Mar 4;47(9):2997-3003. doi: 10.1021/bi7022656. Epub 2008 Jan 26.

Abstract

Chloroperoxidase is a versatile fungal heme-thiolate protein that catalyzes a variety of one-electron and two-electron oxidations. We report here that the alkylation of an essential histidine residue showed no effect on the one-electron peroxidations but inhibited two-electron oxidations. The pH profiles of different peroxidative substrates showed optimal activities at varying pH values for the same enzyme. 2-Allylphenol and substituted ortho-phenolics showed efficient peroxidations. Also, substrates excluded from the active site (or with no favorable positioning at the heme center or heme edge) were converted in the peroxidation reaction. While hydrogen peroxide serves as the superior activator in the two-electron oxidations, small alkylhydroperoxides give much better rates for peroxidation reactions. All the above observations indicate that one-electron oxidations are mechanistically quite different from the two-electron oxidations catalyzed by chloroperoxidase. We propose that the peroxidatic substrates interact predominantly outside the heme active site, presumably at the surface of the enzyme.

摘要

氯过氧化物酶是一种多功能的真菌血红素硫醇盐蛋白,可催化多种单电子和双电子氧化反应。我们在此报告,一个关键组氨酸残基的烷基化对单电子过氧化反应没有影响,但会抑制双电子氧化反应。不同过氧化底物的pH曲线表明,对于同一种酶,在不同的pH值下具有最佳活性。2-烯丙基苯酚和取代邻酚类表现出高效的过氧化反应。此外,被排除在活性位点之外(或在血红素中心或血红素边缘没有有利定位)的底物在过氧化反应中也会发生转化。虽然过氧化氢在双电子氧化反应中是更好的激活剂,但小烷基过氧化氢在过氧化反应中具有更高的速率。上述所有观察结果表明,单电子氧化反应在机制上与氯过氧化物酶催化的双电子氧化反应有很大不同。我们提出,过氧化底物主要在血红素活性位点之外相互作用,大概是在酶的表面。

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