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Function of Cytochrome P450 Enzymes RosC and RosD in the Biosynthesis of Rosamicin Macrolide Antibiotic Produced by Micromonospora rosaria

机译:细胞色素P450酶RosC和RosD在小蔷薇产生的罗莎霉素大环内酯类抗生素生物合成中的作用

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摘要

The cytochrome P450 enzyme-encoding genes rosC and rosD were cloned from the rosamicin biosynthetic gene cluster of Micromonospora rosaria IFO13697. The functions of RosC and RosD were demonstrated by gene disruption and complementation with M. rosaria and bioconversion of rosamicin biosynthetic intermediates with Escherichia coli expressing RosC and RosD. It is proposed that M. rosaria IFO13697 has two pathway branches that lead from the first desosaminyl rosamicin intermediate, 20-deoxo-20-dihydro-12,13-deepoxyrosamicin, to rosamicin.
机译:从玫瑰单孢菌IFO13697的rosamicin生物合成基因簇中克隆了细胞色素P450酶编码基因rosC和rosD。 RosC和RosD的功能已通过基因解离和与蔷薇分枝杆菌的互补和玫瑰酸霉素生物合成中间体与表达RosC和RosD的大肠杆菌的生物转化得到证明。提出蔷薇分支杆菌IFO13697具有两个途径分支,其从第一个脱氨氨基迷迭香中间体,即20-脱氧-20-二氢-12,13-深氧迷迭香通往迷迭香。

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