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Identification and Characterization of Xiamycin A and Oxiamycin Gene Cluster Reveals an Oxidative Cyclization Strategy Tailoring Indolosesquiterpene Biosynthesis

机译:Identification and Characterization of Xiamycin a and Oxiamycin Gene Cluster Reveals an Oxidative Cyclization strategy Tailoring Indolosesquiterpene Biosynthesis

摘要

Xiamycin A (XMA) and oxiamycin (OXM) are bacterial indolosesquiterpenes featuring rare pentacyclic ring systems and are isolated from a marine-derived Streptomyces sp. SCSIO 02999. The putative biosynthetic gene cluster for XMA/OXM was identified by a partial genome sequencing approach. Eighteen genes were proposed to be involved in XMA/OXM biosynthesis, including five genes for terpene synthesis via a non-mevalonate pathway, eight genes encoding oxidoreductases, and five genes for regulation and resistance. Targeted disruptions of 13 genes within the xia gene cluster were carried out to probe their encoded functions in XMA/OXM biosynthesis. The disruption of xiaK, encoding an aromatic ring hydroxylase, led to a mutant producing indosespene and a minor amount of XMA. Feeding of indosespene to XMA/OXM nonproducing mutants revealed indosespene as a common precursor for XMA/OXM biosynthesis. Most notably, the flavin dependent oxygenase XiaI was biochemically characterized in vitro to convert indosespene to XMA, revealing an unusual oxidative cyclization strategy tailoring indolosesquiterpene biosynthesis.
机译:夏霉素A(XMA)和阿霉素(OXM)是具有罕见五环系统的细菌吲哚倍半萜,并从海洋衍生的链霉菌种中分离得到。 SCSIO 02999.通过部分基因组测序方法鉴定了XMA / OXM的假定生物合成基因簇。提议有18个基因参与XMA / OXM生物合成,包括5个通过非甲羟戊酸途径合成萜烯的基因,8个编码氧化还原酶的基因和5​​个调控和抗性的基因。对xia基因簇内的13个基因进行有针对性的破坏,以探究其在XMA / OXM生物合成中的编码功能。编码芳香环羟化酶的xiaK的破坏导致产生吲哚并烯和少量XMA的突变体。将吲哚糖烯喂入不产生XMA / OXM的突变体表明,吲哚糖烯是XMA / OXM生物合成的常见前体。最值得注意的是,黄素依赖性加氧酶XiaI在体外进行了生化表征,可将吲哚并烯转化为XMA,揭示了调节吲哚倍半萜生物合成的不寻常的氧化环化策略。

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