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The clavulanic acid biosynthetic cluster of Streptomyces clavuligerus: genetic organization of the region upstream of the car gene

机译:链霉菌Clavuligerus的克拉维酸生物合成簇:汽车基因上游地区的遗传组织

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The genetic organization of the region upstream of the car gene of the clavulanic acid biosynthetic gene cluster of Streptomyces clavuligerus has been determined. Sequence analysis of a 12·1?kb region revealed the presence of 10 ORFs whose putative functions, according to database searches, are discussed. Three co-transcriptional units are proposed: ORF10–11, ORF12–13 and ORF15–16–17–18. Potential transcriptional terminators were identified downstream of ORF11 (fd) and ORF15. Targeted disruption of ORF10 (cyp) gave rise to transformants unable to produce clavulanic acid, but with a considerably higher production of cephamycin C. Transformants inactivated at ORF14 had a remarkably lower production of clavulanic acid and similar production of cephamycin C. Significant improvements of clavulanic acid production, associated with a drop in cephamycin C biosynthesis, were obtained with transformants of S. clavuligerus harbouring multiple copies of plasmids carrying different constructions from the ORF10–14 region. This information can be used to guide strain improvement programs, blending random mutagenesis and molecular cloning, to optimize the yield of clavulanic acid.
机译:已经确定了克拉维酸克拉维菌克拉维生物植物苜蓿克拉维酸生物合成基因组的轨道基因上游的区域的遗传组织。讨论了12·1?KB区域的序列分析显示,存在10个ORF的推定函数的推定功能。提出了三个共转录单位:ORF10-11,ORF12-13和ORF15-16-17-18。鉴定潜在的转录终止子在ORF11(FD)和ORF15的下游。靶向破坏ORF10(CYP)产生无法产生克拉维酸的转化体,但在ORF14在ORF14灭活的转化体具有相当高的Cephamycin C的产生显着降低了克拉维霉素C的显着降低与Cephamycin C生物合成液滴相关的酸产生,得到了含有多种携带来自ORF10-14区域的不同结构的质粒的多个质粒的转化体。该信息可用于引导应变改善计划,混合随机诱变和分子克隆,以优化克拉维酸的产率。

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