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黄素在两种细菌丙酮酸氧化酶产生乙偶姻中的作用。

Role of flavin in acetoin production by two bacterial pyruvate oxidases.

作者信息

Bertagnolli B L, Hager L P

机构信息

Roger Adams Laboratory, Department of Biochemistry, University of Illinois, Champaign-Urbana 61801.

出版信息

Arch Biochem Biophys. 1993 Jan;300(1):364-71. doi: 10.1006/abbi.1993.1049.

Abstract

Escherichia coli pyruvate oxidase (POXEC) requires FAD both for the oxidative decarboxylation of pyruvate to acetate and CO2 and for the formation of acetoin from pyruvate and acetaldehyde. Prior work has shown that the catalytic activity (kcat/Km) for POXEC in the oxidative reaction is stimulated approximately 450-fold by amphiphilic activators. This paper shows that the acetoin reaction does not respond to activation. The FAD requirement for acetoin formation can be replaced by 5-deaza-FAD and 6-hydroxy-FAD, FAD analogs which form kinetically stable oxidized and reduced enzyme species, respectively. As would be expected, the 5-deaza- and 6-hydroxy-FAD enzymes are not active in the oxidative reaction. A second flavin pyruvate oxidase from Pediococcus pseudomonas (POXPP), which catalyzes the oxidative decarboxylation of pyruvate to CO2 and acetyl phosphate, also requires FAD for acetoin formation. POXPP has an oxidative rate comparable to that of POXEC, but in comparison to POXEC, POXPP catalyzes acetoin formation at a much reduced rate. Again, as was found with the POXEC, an FAD analog incapable of undergoing facile oxidation-reduction reactions also could replace the FAD requirement in the POXPP acetoin reaction. The results indicate that the role for FAD in acetoin formation with both enzymes is based on a structural requirement and that FAD does not participate in a redox function in the acetoin reaction.

摘要

大肠杆菌丙酮酸氧化酶(POXEC)在将丙酮酸氧化脱羧生成乙酸盐和二氧化碳以及由丙酮酸和乙醛生成乙偶姻的过程中都需要黄素腺嘌呤二核苷酸(FAD)。先前的研究表明,两亲性激活剂可使POXEC在氧化反应中的催化活性(kcat/Km)提高约450倍。本文表明乙偶姻反应对激活无响应。生成乙偶姻所需的FAD可被5-脱氮-FAD和6-羟基-FAD替代,这两种FAD类似物分别形成动力学稳定的氧化型和还原型酶物种。不出所料,5-脱氮-FAD和6-羟基-FAD酶在氧化反应中无活性。来自类球拟杆菌的第二种黄素丙酮酸氧化酶(POXPP)催化丙酮酸氧化脱羧生成二氧化碳和乙酰磷酸,生成乙偶姻也需要FAD。POXPP的氧化速率与POXEC相当,但与POXEC相比,POXPP催化乙偶姻生成的速率要低得多。同样,与POXEC的情况一样,一种不能进行 facile氧化还原反应的FAD类似物也可以替代POXPP乙偶姻反应中对FAD的需求。结果表明,FAD在两种酶生成乙偶姻过程中的作用基于结构需求,且FAD在乙偶姻反应中不参与氧化还原功能。

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