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铁氰化物对亚硫酸盐氧化酶中钼蝶呤的氧化作用。对电子传递活性的影响。

Oxidation of molybdopterin in sulfite oxidase by ferricyanide. Effect on electron transfer activities.

作者信息

Gardlik S, Rajagopalan K V

机构信息

Department of Biochemistry, Duke University Medical Center, Durham, North Carolina 27710.

出版信息

J Biol Chem. 1991 Mar 15;266(8):4889-95.

PMID:2002036
Abstract

The attenuation of the sulfite:cytochrome c activity of sulfite oxidase upon treatment with ferricyanide was demonstrated to be the result of oxidation of the pterin ring of the molybdenum cofactor in the enzyme. Oxidation of molybdopterin (MPT) was detected in several ways. Ferricyanide treatment not only abolished the ability of sulfite oxidase to serve as a source of MPT to reconstitute the aponitrate reductase in extracts of the Neurospora crassa mutant nit-1 but also eliminated the ability of sulfite oxidase to reduce dichlorobenzenoneindophenol after anaerobic denaturation. Additionally, the absorption spectrum of anaerobically denatured ferricyanide-treated molybdenum fragment of rat liver sulfite oxidase was typical of fully oxidized pterins. Ferricyanide treatment had no effect on the protein of sulfite oxidase or on the sulfhydryl-containing side chain of MPT. Quantitation of the ferricyanide reaction showed that 2 mol of ferricyanide were reduced per mol of MPT oxidized, yielding a fully oxidized pterin. These results corroborate the previously reported conclusion that the native state of reduction of MPT in sulfite oxidase is at the dihydro level (Gardlik, S., and Rajagopalan, K.V. (1990) J. Biol. Chem. 265, 13047-13054). As a result of oxidation of the pterin ring, the affinity of MPT for molybdenum is decreased, leading to eventual loss of molybdenum. Because the loss of molybdenum is slow, a population of sulfite oxidase molecules can exist in which molybdenum is complexed to oxidized MPT. These molecules retain sulfite:O2 activity, a function apparently dependent solely on the molybdenum-thiolate complex, yet have greatly decreased sulfite:cytochrome c activity, a function requiring heme as well as the molybdenum center of holoenzyme. These observations suggest that the pterin ring of MPT participates in enzyme function, possibly in electron transfer, directly in catalysis, or by controlling the oxidation/reduction potential of molybdenum.

摘要

用铁氰化物处理后,亚硫酸盐氧化酶的亚硫酸盐:细胞色素c活性的衰减被证明是该酶中钼辅因子的蝶呤环氧化的结果。钼蝶呤(MPT)的氧化通过多种方式检测到。铁氰化物处理不仅消除了亚硫酸盐氧化酶作为MPT来源以重构粗糙脉孢菌突变体nit-1提取物中的脱辅基硝酸还原酶的能力,还消除了亚硫酸盐氧化酶在厌氧变性后还原二氯苯醌吲哚酚的能力。此外,经铁氰化物处理的大鼠肝脏亚硫酸盐氧化酶的厌氧变性钼片段的吸收光谱是完全氧化蝶呤的典型光谱。铁氰化物处理对亚硫酸盐氧化酶的蛋白质或MPT含巯基侧链没有影响。铁氰化物反应的定量分析表明,每摩尔被氧化的MPT会使2摩尔铁氰化物还原,生成完全氧化的蝶呤。这些结果证实了先前报道的结论,即亚硫酸盐氧化酶中MPT的天然还原状态处于二氢水平(加德利克,S.,和拉贾戈帕兰,K.V.(1990年)《生物化学杂志》265,13047 - 13054)。由于蝶呤环的氧化,MPT对钼的亲和力降低,导致最终钼的丢失。因为钼的丢失很慢,所以可以存在一群亚硫酸盐氧化酶分子,其中钼与氧化的MPT络合。这些分子保留了亚硫酸盐:O2活性,这一功能显然仅依赖于钼 - 硫醇盐络合物,但亚硫酸盐:细胞色素c活性大大降低,这一功能既需要血红素也需要全酶的钼中心。这些观察结果表明,MPT的蝶呤环参与酶的功能,可能参与电子传递、直接参与催化或通过控制钼的氧化/还原电位。

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