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首页> 外文期刊>Biochemistry >Reactivity of Deoxy- and Oxyferrous Dehaloperoxidase B from Amphitrite ornata: Identification of Compound II and Its Ferrous-Hydroperoxide Precursor
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Reactivity of Deoxy- and Oxyferrous Dehaloperoxidase B from Amphitrite ornata: Identification of Compound II and Its Ferrous-Hydroperoxide Precursor

机译:圆形角闪石中脱氧和含氧的脱卤过氧化物酶B的反应活性:化合物II及其氢氧化亚铁的前体的鉴定

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摘要

Dehaloperoxidase (DHP) from the terebellid polychaete Amphitrite ornata is a bifunctional enzyme that possesses both hemoglobin and peroxidase activities. The bifunctional nature of DHP as a globin peroxidase appears to be at odds with the traditional starting oxidation state for each individual activity. Namely, reversible oxygen binding is only mediated via a ferrous heme in globins, and peroxidase activity is initiated from ferric centers and to the exclusion of the oxyferrous oxidation state from the peroxidase cycle. Thus, to address what appears to be a paradox, herein we report the details of our investigations into the DHP catalytic cycle when initiated from the deoxy- and oxyferrous states using biochemical assays, stopped-flow UV-visible, and rapid-freeze-quench electron paramagnetic resonance spectroscopies, and anaerobic methods. We demonstrate the formation of Compound II directly from deoxyferrous DHP B upon its reaction with hydrogen peroxide and show that this occurs both in the presence and in the absence of trihalophenol. Prior to the formation of Compound II, we have identified a new species that we have preliminarily attributed to a ferrous-hydroperoxide precursor that undergoes heterolysis to generate the aforementioned ferryl intermediate. Taken together, the results demonstrate that the oxyferrous state in DHP is a peroxidase competent starting species, and an updated catalytic cycle for DHP is proposed in which the ferric oxidation state is not an obligatory starting point for the peroxidase catalytic cycle of dehaloperoxidase. 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.
机译:来自半球形多毛小A蛇Amphitrite ornata的脱卤过氧化物酶(DHP)是一种同时具有血红蛋白和过氧化物酶活性的双功能酶。 DHP作为球蛋白过氧化物酶的双功能性质似乎与每种单独活性的传统起始氧化态不一致。即,可逆的氧结合仅通过球蛋白中的亚铁血红素来介导,并且过氧化物酶活性从三价铁中心开始,并且从过氧化物酶循环中排除了氧化亚铁的氧化态。因此,为了解决似乎是自相矛盾的问题,我们在此报告了我们的DHP催化循环研究的详细信息,这些反应是使用生化分析,紫外可见流和快速冻结骤冷从脱氧和氧化亚铁态引发的。电子顺磁共振光谱学和厌氧方法。我们证明了脱氧DHP B与过氧化氢反应后直接从脱氧DHP B形成化合物II,并表明这在存在和不存在三卤酚的情况下均会发生。在形成化合物II之前,我们已经确定了一个新物种,我们将其初步归因于氢过氧化亚铁的前驱体,该前驱体经过杂化分解生成上述的Ferryl中间体。两者合计,结果表明,DHP中的氧化亚铁状态是一种过氧化物酶活性的起始物种,并提出了DHP的更新催化循环,其中铁的氧化态不是脱卤过氧化物酶的过氧化物酶催化循环的强制起点。本文提供的数据提供了过氧化物酶和氧气转运活性之间的联系,这进一步加深了我们对这种双功能酶如何在一个系统中结合其两个固有功能的理解。

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