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参与放线紫红素生物合成的黄素:NADH氧化还原酶的鉴定。重组酶的纯化与特性分析。

Identification of a flavin:NADH oxidoreductase involved in the biosynthesis of actinorhodin. Purification and characterization of the recombinant enzyme.

作者信息

Kendrew S G, Harding S E, Hopwood D A, Marsh E N

机构信息

Department of Biochemistry, University of Cambridge, United Kingdom.

出版信息

J Biol Chem. 1995 Jul 21;270(29):17339-43. doi: 10.1074/jbc.270.29.17339.

Abstract

The biosynthesis of the polyketide antibiotic actinorhodin by Streptomyces coelicolor involves the oxidative dimerization and hydroxylation of a precursor, most likely dihydrokalafungin, as the final steps in its formation. Mutations in the actVB gene block these last steps, and the mutants secrete kalafungin as a shunt product. To investigate the role of the actVB gene in these transformation, we have overexpressed the gene in Escherichia coli and purified and characterized the recombinant protein. ActVB was shown to catalyze the reduction of FMN by NADH to give NAD and FMNH2, which, unusually, is released into solution. The protein contains no chromogenic cofactors and exhibits no requirements for added metal ions. The reaction obeys simple kinetics and proceeds through the formation of a ternary complex; Km values for FMN and NADH are 1.5 and 7.3 microM, respectively, and kcat is about 5 s-1. FAD and riboflavin are also substrates for the enzyme, although they have much higher Km values. The subunit structure of the enzyme was investigated by analytical ultracentrifugation, which showed the protein to exist in rapid equilibrium between monomer and dimer forms. The possible role of this oxidoreductase in the oxidative chemistry of actinorhodin biosynthesis is discussed.

摘要

天蓝色链霉菌合成聚酮类抗生素放线紫红素的过程中,其最后几步涉及一种前体(很可能是二氢卡拉芬净)的氧化二聚化和羟基化。actVB基因突变会阻断这些最后步骤,突变体分泌卡拉芬净作为旁路产物。为了研究actVB基因在这些转化过程中的作用,我们在大肠杆菌中过表达了该基因,并对重组蛋白进行了纯化和表征。结果表明,ActVB能催化NADH将FMN还原为NAD和FMNH2,不同寻常的是,FMNH2会释放到溶液中。该蛋白不含显色辅因子,且对添加的金属离子无需求。该反应遵循简单的动力学,通过形成三元复合物进行;FMN和NADH的Km值分别为1.5和7.3 microM,kcat约为5 s-1。FAD和核黄素也是该酶的底物,尽管它们的Km值要高得多。通过分析超速离心研究了该酶的亚基结构,结果表明该蛋白以单体和二聚体形式在快速平衡中存在。讨论了这种氧化还原酶在放线紫红素生物合成氧化化学中的可能作用。

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