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突变分析表明,荧光假单胞菌产生聚酮类抗生素莫匹罗星需要所有的修饰区域基因:假单胞酸B的生物合成先于假单胞酸A。

Mutational analysis reveals that all tailoring region genes are required for production of polyketide antibiotic mupirocin by pseudomonas fluorescens: pseudomonic acid B biosynthesis precedes pseudomonic acid A.

作者信息

Hothersall Joanne, Wu Ji'en, Rahman Ayesha S, Shields Jennifer A, Haddock James, Johnson Nicola, Cooper Sian M, Stephens Elton R, Cox Russell J, Crosby John, Willis Christine L, Simpson Thomas J, Thomas Christopher M

机构信息

School of Biosciences, University of Birmingham, Edgbaston, Birmingham B15 2TT, United Kingdom.

出版信息

J Biol Chem. 2007 May 25;282(21):15451-61. doi: 10.1074/jbc.M701490200. Epub 2007 Mar 23.

Abstract

The Pseudomonas fluorescens mupirocin biosynthetic cluster encodes six proteins involved in polyketide biosynthesis and 26 single polypeptides proposed to perform largely tailoring functions. In-frame deletions in the tailoring open reading frames demonstrated that all are required for mupirocin production. A bidirectional promoter region was identified between mupF, which runs counter to other open reading frames and its immediate neighbor macpC, implying the 74-kb cluster consists of two transcriptional units. mupD/E and mupJ/K must be cotranscribed as pairs for normal function implying co-assembly during translation. MupJ and K belong to a widely distributed enzyme pair implicated, with MupH, in methyl addition. Deletion of mupF, a putative ketoreductase, produced a mupirocin analogue with a C-7 ketone. Deletion of mupC, a putative dienoyl CoA reductase, generated an analogue whose structure indicated that MupC is also implicated in control of the oxidation state around the tetrahydropyran ring of monic acid. Double mutants with DeltamupC and DeltamupO, DeltamupU, DeltamupV, or DeltamacpE produced pseudomonic acid B but not pseudomonic acid A, as do the mupO, U, V, and macpE mutants, indicating that MupC must work after MupO, U, and V.

摘要

荧光假单胞菌莫匹罗星生物合成基因簇编码6种参与聚酮生物合成的蛋白质和26种被认为主要执行修饰功能的单一多肽。对修饰开放阅读框进行框内缺失研究表明,所有这些基因对于莫匹罗星的产生都是必需的。在与其他开放阅读框方向相反的mupF与其紧邻的macpC之间鉴定出一个双向启动子区域,这意味着这个74 kb的基因簇由两个转录单元组成。mupD/E和mupJ/K必须成对共转录才能正常发挥功能,这意味着在翻译过程中会共同组装。MupJ和K属于一个广泛分布的酶对,与MupH一起参与甲基化添加。缺失假定的酮还原酶mupF会产生一种带有C-7酮的莫匹罗星类似物。缺失假定的二烯酰辅酶A还原酶mupC会产生一种类似物,其结构表明MupC也参与控制单酸四氢吡喃环周围的氧化态。与DeltamupC和DeltamupO、DeltamupU、DeltamupV或DeltamacpE的双突变体产生假单胞酸B但不产生假单胞酸A,mupO、U、V和macpE突变体也是如此,这表明MupC必须在MupO、U和V之后发挥作用。

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