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分光光度法和机制研究从 Amphitrite ornata 脱卤过氧化物酶 B。

Spectroscopic and mechanistic investigations of dehaloperoxidase B from Amphitrite ornata.

机构信息

Department of Chemistry, North Carolina State University, Raleigh, North Carolina 27695-8204, USA.

出版信息

Biochemistry. 2010 Aug 10;49(31):6600-16. doi: 10.1021/bi100407v.

Abstract

Dehaloperoxidase (DHP) from the terebellid polychaete Amphitrite ornata is a bifunctional enzyme that possesses both hemoglobin and peroxidase activities. Of the two DHP isoenzymes identified to date, much of the recent focus has been on DHP A, whereas very little is known pertaining to the activity, substrate specificity, mechanism of function, or spectroscopic properties of DHP B. Herein, we report the recombinant expression and purification of DHP B, as well as the details of our investigations into its catalytic cycle using biochemical assays, stopped-flow UV-visible, resonance Raman, and rapid freeze-quench electron paramagnetic resonance spectroscopies, and spectroelectrochemistry. Our experimental design reveals mechanistic insights and kinetic descriptions of the dehaloperoxidase mechanism which have not been previously reported for isoenzyme A. Namely, we demonstrate a novel reaction pathway in which the products of the oxidative dehalogenation of trihalophenols (dihaloquinones) are themselves capable of inducing formation of oxyferrous DHP B, and an updated catalytic cycle for DHP is proposed. We further demonstrate that, unlike the traditional monofunctional peroxidases, the oxyferrous state in DHP is a peroxidase-competent starting species, which suggests that the ferric oxidation state may not be an obligatory starting point for the enzyme. The data presented herein provide a link between the peroxidase and oxygen transport activities which furthers our understanding of how this bifunctional enzyme is able to unite its two inherent functions in one system.

摘要

脱卤过氧化物酶(DHP)来自于矶沙蚕属多毛类环节动物 Amphitrite ornata,是一种具有血红蛋白和过氧化物酶活性的双功能酶。在迄今为止鉴定的两种 DHP 同工酶中,最近的研究重点主要集中在 DHP A 上,而对于 DHP B 的活性、底物特异性、作用机制或光谱特性知之甚少。本文报道了 DHP B 的重组表达和纯化,以及使用生化分析、停流紫外可见、共振拉曼、快速冷冻淬火电子顺磁共振和光谱电化学等方法研究其催化循环的详细情况。我们的实验设计揭示了以前未报道过的同工酶 A 的脱卤过氧化物酶机制的机制见解和动力学描述。也就是说,我们证明了一种新的反应途径,其中三卤酚(二卤醌)的氧化脱卤产物本身能够诱导氧合亚铁 DHP B 的形成,并提出了更新的 DHP 催化循环。我们进一步证明,与传统的单功能过氧化物酶不同,DHP 中的氧合亚铁状态是一种具有过氧化物酶活性的起始物质,这表明铁的氧化态可能不是酶的必需起始点。本文所提供的数据在过氧化物酶和氧气运输活性之间建立了联系,进一步加深了我们对这种双功能酶如何能够将其两个固有功能统一在一个系统中的理解。

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