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首页> 外文期刊>Biotechnology Progress >Precursor-directed biosynthesis of 6-deoxyerythronolide B analogs in Streptomyces coelicolor: understanding precursor effects
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Precursor-directed biosynthesis of 6-deoxyerythronolide B analogs in Streptomyces coelicolor: understanding precursor effects

机译:天蓝色链霉菌中6-脱氧赤藓醇B类似物的前体定向生物合成:了解前体效应

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摘要

A fermentation process employing precursor-directed biosynthesis is being developed for the manufacture of 6-deoxyerythronolide B (6-dEB) analogues. Through a plasmidbased system in Streptomyces coelicolor, 6-dEB synthesis is catalyzed by 6-dEB synthase (DEBS). 6-dEB synthesis is abolished by inactivation of the ketosynthase (KS) 1 domain of DEBS but can be restored by providing synthetic activated diketides. Because of its inherent catalytic flexibility, the KS1-deficient DEBS is capable of utilizing unnatural diketides to form various 13-substituted 6-dEBs. Here we characterize process variables associated with diketide feeding in shake-flask experiments. 13-R-6-dEB production was found to depend strongly on diketide feed concentrations, on the growth phase of cultures at feeding time, and on the R-group present in the diketide moiety. In all cases a major portion of the fed diketides was degraded by the cells.
机译:正在开发一种采用前体定向生物合成的发酵工艺来生产6-脱氧赤藓醇B(6-dEB)类似物。通过天蓝色链霉菌中基于质粒的系统,6-dEB合酶(DEBS)催化6-dEB的合成。 DEBS的酮合酶(KS)1结构域失活,废除了6-dEB合成,但可以通过提供合成的活化二酮来恢复。由于其固有的催化灵活性,缺KS1的DEBS能够利用非天然的二酮化合物形成各种13位取代的6-dEB。在这里,我们在摇瓶实验中表征与双酮化合物进料相关的过程变量。发现13-R-6-dEB的产生强烈依赖于双酮化合物的进料浓度,饲喂时培养物的生长阶段以及双酮化合物中存在的R-基团。在所有情况下,进食的二酮化合物的大部分被细胞降解。

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