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酶促提高巯基氧化酶的催化速率。

Enzymatic enhancement of the catalytic rate of sulfhydryl oxidase.

作者信息

Koszalka G W, Swaisgood H E, Horton H R

机构信息

Department of Food Science, North Carolina State University, Raleigh 27695-7624.

出版信息

Biochim Biophys Acta. 1987 Sep 24;915(2):321-9. doi: 10.1016/0167-4838(87)90316-5.

Abstract

The rate of oxidation of glutathione by solubilized sulfhydryl oxidase was significantly enhanced in the presence of horseradish peroxidase (donor:hydrogen-peroxide oxidoreductase, EC 1.11.1.7). This enhancement was proportional to the amount of active peroxidase in the assay, but could not be attributed solely to the oxidation of glutathione catalyzed by the peroxidase. A change in the Soret region of the horseradish peroxidase spectrum was observed when both glutathione and peroxidase were present. Moreover, addition of glutathione to a sulfhydryl oxidase/horseradish peroxidase mixture resulted in a rapid shift of the absorbance maximum from 403 nm to 417 nm. This shift indicates the oxidation of horseradish peroxidase. Spectra for three isozyme preparations of horseradish peroxidase, two acidic and one basic, all underwent this red-shift in the presence of sulfhydryl oxidase and glutathione. Cysteine and N-acetylcysteine could replace glutathione. Addition of catalase had no effect on the oxidation of peroxidase, indicating that the peroxide involved in the reaction was not derived from that released into the bulk solution by sulfhydryl oxidase-catalyzed thiol oxidation. Further evidence for a direct transfer of the hydrogen peroxide moiety was obtained by addition of glutaraldehyde to a sulfhydryl oxidase/horseradish peroxidase/N-acetylcysteine mixture. Size exclusion chromatography revealed the formation of a high-molecular-weight species with peroxidase activity, which was completely resolved from native horseradish peroxidase. Formation of this species was absolutely dependent on the presence of both the cysteine-containing substrate and sulfhydryl oxidase. The observed enhancement of sulfhydryl oxidase catalytic activity by the addition of horseradish peroxidase supports a bi uni ping-pong mechanism proposed previously for sulfhydryl oxidase.

摘要

在辣根过氧化物酶(供体:过氧化氢氧化还原酶,EC 1.11.1.7)存在的情况下,溶解的巯基氧化酶对谷胱甘肽的氧化速率显著提高。这种提高与测定中活性过氧化物酶的量成正比,但不能完全归因于过氧化物酶催化的谷胱甘肽氧化。当谷胱甘肽和过氧化物酶同时存在时,观察到辣根过氧化物酶光谱的Soret区域发生了变化。此外,向巯基氧化酶/辣根过氧化物酶混合物中添加谷胱甘肽会导致吸光度最大值从403nm迅速转移到417nm。这种转移表明辣根过氧化物酶被氧化。辣根过氧化物酶的三种同工酶制剂(两种酸性和一种碱性)的光谱在巯基氧化酶和谷胱甘肽存在的情况下都发生了这种红移。半胱氨酸和N-乙酰半胱氨酸可以替代谷胱甘肽。添加过氧化氢酶对过氧化物酶的氧化没有影响,这表明反应中涉及的过氧化物不是由巯基氧化酶催化的硫醇氧化释放到本体溶液中的过氧化物。通过向巯基氧化酶/辣根过氧化物酶/N-乙酰半胱氨酸混合物中添加戊二醛,获得了过氧化氢部分直接转移的进一步证据。尺寸排阻色谱显示形成了一种具有过氧化物酶活性的高分子量物质,它与天然辣根过氧化物酶完全分离。这种物质的形成绝对依赖于含半胱氨酸的底物和巯基氧化酶的同时存在。添加辣根过氧化物酶观察到的巯基氧化酶催化活性增强支持了先前提出的巯基氧化酶双向乒乓机制。

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