Mendes Marta V, Antón Nuria, Martín Juan F, Aparicio Jesús F
Insituto de Biotecnología INBIOTEC, Parque Científico de León, Avda. Real, no 1, 24006 León, Spain.
Biochem J. 2005 Feb 15;386(Pt 1):57-62. doi: 10.1042/BJ20040490.
The biosynthesis of the antifungal agent pimaricin by Streptomyces natalensis has been proposed to involve a cytochrome P450 encoded by the gene pimD. Pimaricin is derived from its immediate precursor de-epoxypimaricin by epoxidation of the C-4-C-5 double bond on the macrolactone ring. We have overproduced PimD with a N-terminal His6 affinity tag in Escherichia coli and purified the enzyme for kinetic analysis. The protein showed a reduced CO-difference spectrum with a Soret maximum at 450 nm, indicating that it is a cytochrome P450. Purified PimD was shown to catalyse the in vitro C-4-C-5 epoxidation of 4,5-de-epoxypimaricin to pimaricin. The enzyme was dependent on NADPH for activity with optimal pH at 7.5, and the temperature optimum was 30 degrees C. The kcat value for the epoxidation of de-epoxypimaricin was similar to the values reported for other macrolide oxidases. Enzyme activity was inhibited at high substrate concentration. This is the first time that a polyene macrolide P450 mono-oxygenase has been expressed heterologously and studied. The unique specificity of this epoxidase should be useful for the oxidative modification of novel polyene macrolide antibiotics.
纳塔尔链霉菌合成抗真菌剂匹马霉素的过程被认为涉及由基因pimD编码的细胞色素P450。匹马霉素由其直接前体去环氧匹马霉素通过大环内酯环上C-4-C-5双键的环氧化作用衍生而来。我们在大肠杆菌中过量表达了带有N端His6亲和标签的PimD,并纯化了该酶用于动力学分析。该蛋白显示出在450 nm处有最大Soret吸收峰的还原型CO差光谱,表明它是一种细胞色素P450。纯化后的PimD被证明能在体外催化4,5-去环氧匹马霉素的C-4-C-5环氧化生成匹马霉素。该酶的活性依赖于NADPH,最适pH为7.5,最适温度为30℃。去环氧匹马霉素环氧化的kcat值与其他大环内酯氧化酶报道的值相似。在高底物浓度下酶活性受到抑制。这是首次异源表达并研究多烯大环内酯P450单加氧酶。这种环氧化酶的独特特异性对于新型多烯大环内酯抗生素的氧化修饰应该是有用的。