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脱辅基过氧化物酶的吲哚乙酸氧化酶活性

Indoleacetic acid oxidase activity of apoperoxidase.

作者信息

Siegel B Z, Galston A W

出版信息

Science. 1967 Sep 29;157(3796):1557-9. doi: 10.1126/science.157.3796.1557.

Abstract

The conventional activity of electrophoretically purified horseradish peroxidase toward guaiacol, pyrogallol, 2,6-dimethoxyphenol, and benzidine is abolished by removal of the heme prosthetic group with a mixture of cold acetone and hydrogen chloride. The apoenzyme, though devoid of peroxidase activity, retains its activity as an indoleacetic acid oxidase when it is supplied with 10(-5) mole of manganous ion and 2,4-dachlorophenol per liter. This oxidase activity is cyanide-sensitive; azide also inhibits under specific conditions of both pH and cofactor concentration. Partial restoration of the peroxidase activity by recombination of apoprotein with heme produces no effect on the oxidase activity, except that cofactors are no longer absolutely required. Therefore, it appears that the activity of peroxidase as an indoleacetic acid oxidase need not directly involve the heme prosthetic group, or that manganous ions and dichlorophenol can substitute for the heme group in the reaction between indoleacetic acid and oxidase.

摘要

用冷丙酮和氯化氢的混合物除去血红素辅基后,电泳纯化的辣根过氧化物酶对愈创木酚、连苯三酚、2,6 -二甲氧基苯酚和联苯胺的常规活性丧失。脱辅基酶虽然没有过氧化物酶活性,但当每升供应10⁻⁵摩尔锰离子和2,4 -二氯苯酚时,它作为吲哚乙酸氧化酶仍保留其活性。这种氧化酶活性对氰化物敏感;在特定的pH和辅因子浓度条件下,叠氮化物也有抑制作用。脱辅基蛋白与血红素重组使过氧化物酶活性部分恢复,这对氧化酶活性没有影响,只是不再绝对需要辅因子。因此,似乎过氧化物酶作为吲哚乙酸氧化酶的活性不一定直接涉及血红素辅基,或者在吲哚乙酸与氧化酶的反应中,锰离子和二氯苯酚可以替代血红素基团。

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