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大肠杆菌细胞色素bo3中“过氧”中间体的鉴定。

Identification of a "peroxy" intermediate in cytochrome bo3 of Escherichia coli.

作者信息

Morgan J E, Verkhovsky M I, Puustinen A, Wikström M

机构信息

Helsinki Bioenergetics Group, Department of Medical Chemistry, University of Helsinki, Finland.

出版信息

Biochemistry. 1995 Dec 5;34(48):15633-7. doi: 10.1021/bi00048a005.

Abstract

The respiratory heme-copper oxidases catalyze the reduction of dioxygen to water and link this chemistry to proton translocation. The main subgroups of the enzyme family are the cytochrome c oxidases and the quinol oxidases. For the cytochrome c oxidases, several key intermediates have been described in the oxygen reaction. Two of these (suggested to be "peroxy" and "ferryl" species) are also produced in the reaction of the oxidized enzyme with hydrogen peroxide. However, only a single product (a "ferryl" species) has been reported for the reaction of hydrogen peroxide with the quinol oxidase cytochrome bo3 from Escherichia coli. The same "ferryl" species has also been reported to be produced when two-electron reduced cytochrome bo3 reacts with oxygen, whereas this reaction leads to the "peroxy" intermediate in the cytochrome c oxidases. Consequently, the oxygen reaction has been considered to be different in the two enzyme subgroups. Here we show that both the peroxide reaction and the reaction of the two-electron reduced enzyme with oxygen actually result in primary formation of a hitherto unreported "peroxy" species in cytochrome bo3. This intermediate subsequently relaxes into the "ferryl" species which has been described previously. We conclude that the oxygen reaction is similar in the cytochrome c and quinol oxidases.

摘要

呼吸血红素 - 铜氧化酶催化将氧气还原为水,并将此化学反应与质子转运相联系。该酶家族的主要亚群是细胞色素c氧化酶和喹啉氧化酶。对于细胞色素c氧化酶,在氧反应中已描述了几种关键中间体。其中两种(推测为“过氧”和“高铁”物种)也在氧化酶与过氧化氢的反应中产生。然而,对于过氧化氢与来自大肠杆菌的喹啉氧化酶细胞色素bo3的反应,仅报道了一种产物(一种“高铁”物种)。当双电子还原的细胞色素bo3与氧气反应时,也报道会产生相同的“高铁”物种,而该反应在细胞色素c氧化酶中会导致“过氧”中间体的形成。因此,人们认为这两种酶亚群中的氧反应是不同的。在此我们表明,过氧化氢反应以及双电子还原酶与氧气的反应实际上都会在细胞色素bo3中首先形成一种迄今未报道的“过氧”物种。该中间体随后会松弛为先前已描述的“高铁”物种。我们得出结论,细胞色素c氧化酶和喹啉氧化酶中的氧反应是相似的。

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