首页> 外文期刊>The Journal of Antibiotics: An International Journal >Thioesterases and the Premature Termination of Polyketide Chain Elongation in Rifamycin B Biosynthesis by Amycolatopsis mediterranei S699
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Thioesterases and the Premature Termination of Polyketide Chain Elongation in Rifamycin B Biosynthesis by Amycolatopsis mediterranei S699

机译:硫酯酶和地中海曲霉S699在利福霉素B生物合成中聚酮化合物链延长的提前终止

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摘要

The role of two thioesterase genes in the premature release of polyketide synthase intermediates during rifamycin biosynthesis in the Amycolatopsis mediterranei S699 strain was investigated. Creatyion of an in-frame deletionin the rifR gene led to a 30approx60% decrease in the production of both rifamycin B by the S699 strain or a series of tetra- to decaketide shunt products of polyketide chain assembly by the rifF strain.Since a similar percentage decrease was seen in both genetic backgrounds, we conclude that the RifR thioesterase 2 is not involved in premature release of the carbon chain assembly intermediates. Similarly, fusion of the Saccharopolyspora erythraea DEBS3 thioesterase 1 domain to the C-terminus of the RifE PKS subunit did not result in a noticeable increase in the amount of the undecaketide intermediate formed nor in the amounts of the tetra- to decaketide shunt products. Hence, premature release of the carbon chain assembly intermediates is an unusual property of the Rif PKS itself.
机译:研究了两个硫酯酶基因在地中海霉菌S699菌株利福霉素生物合成过程中聚酮化合物合酶中间体的过早释放中的作用。在rifR基因中框内缺失的产生导致S699菌株的利福霉素B或rifF菌株的一系列聚酮化合物链组装的四至去十倍体分流产物的生产减少了30%约60%。在两个遗传背景中均可见到减少,我们得出结论,RifR硫酯酶2不参与碳链组装中间体的过早释放。同样,糖多孢菌红斑DEBS3硫酯酶1结构域与RifE PKS亚基的C末端融合不会导致所形成的去脱糖中间体的量或四至去脱糖分流产物的量均没有明显增加。因此,碳链组装中间体的过早释放是Rif PKS本身的不寻常特性。

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