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大鼠肾脏L-2-羟基酸氧化酶。与面包酵母黄素细胞色素b2的结构和机制比较。

Rat kidney L-2-hydroxyacid oxidase. Structural and mechanistic comparison with flavocytochrome b2 from baker's yeast.

作者信息

Urban P, Chirat I, Lederer F

机构信息

Unité Associée au Centre National de la Recherche Scientifique UA 122, Hôpital Necker, Paris, France.

出版信息

Biochemistry. 1988 Sep 20;27(19):7365-71. doi: 10.1021/bi00419a029.

Abstract

Hydroxyacid oxidase from rat kidney is an FMN-dependent enzyme that catalyzes the oxidation of L-alpha-hydroxy acids as well as, more slowly, that of L-alpha-amino acids. We report here a modified purification method for the enzyme, which is found to possess one cofactor per subunit of Mr 39,000. Determination of its N-terminal sequence suggests the protein is homologous to spinach glycolate oxidase and baker's yeast lactate dehydrogenase. In the presence of a hydroxy acid and of bromopyruvate, under anaerobic conditions, the enzyme is found to catalyze both transhydrogenation and reductive bromide ion elimination. It had previously been observed that hydroxyacid oxidase could not catalyze chloride elimination from chlorolactate in the presence of oxygen [Cromartie, T.H., & Walsh, C.T. (1975) Biochemistry 14, 3482-3490]. The behavior of this enzyme toward halogeno substrates is therefore similar to that of baker's yeast L-lactate dehydrogenase and in part different from that of Mycobacterium smegmatis lactate oxidase and porcine kidney D-amino-acid oxidase. These findings can be rationalized on the basis of a common mechanism for all these enzymes, implying formation of a carbanion as a first step, with different rate-limiting steps in the overall reaction.

摘要

大鼠肾脏中的羟基酸氧化酶是一种依赖黄素单核苷酸(FMN)的酶,它催化L-α-羟基酸的氧化反应,对L-α-氨基酸的催化氧化反应则较为缓慢。我们在此报告一种该酶的改良纯化方法,发现该酶每个分子量为39,000的亚基含有一个辅因子。对其N端序列的测定表明,该蛋白质与菠菜乙醇酸氧化酶和面包酵母乳酸脱氢酶同源。在厌氧条件下,当存在羟基酸和溴丙酮酸时,发现该酶能催化转氢作用和还原性溴离子消除反应。此前曾观察到,在有氧存在时,羟基酸氧化酶无法催化氯代乳酸中氯离子的消除反应[克罗马蒂,T.H.,& 沃尔什,C.T.(1975年)《生物化学》14,3482 - 3490]。因此,这种酶对卤代底物的行为与面包酵母L-乳酸脱氢酶相似,部分不同于耻垢分枝杆菌乳酸氧化酶和猪肾D-氨基酸氧化酶。基于所有这些酶的共同机制,这些发现可以得到合理的解释,这意味着第一步形成碳负离子,且在整个反应中有不同的限速步骤。

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