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Biosynthesis of the Sesquiterpene Antibiotic Albaflavenone in Streptomyces coelicolor A3(2)*S⃞

机译:倍半萜烯抗生素黄烷酮的生物合成 天蓝色链霉菌 A3(2)*S⃞

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摘要

Cytochrome P450 170A1 (CYP170A1) is encoded by the sco5223 gene of the Gram-positive, soil-dwelling bacterium Streptomyces coelicolor A3(2) as part of a two-gene cluster with the sco5222 gene. The SCO5222 protein is a sesquiterpene synthase that catalyzes the cyclization of farnesyl diphosphate to the novel tricyclic hydrocarbon, epi-isozizaene (Lin, X., Hopson, R., and Cane, D. E. (2006) J. Am. Chem. Soc. 128, 6022–6023). The presence of CYP170A1 (sco5223) suggested that epiisozizaene might be further oxidized by the transcriptionally coupled P450. We have now established that purified CYP170A1 carries out two sequential allylic oxidations to convert epi-isozizaene to an epimeric mixture of albaflavenols and thence to the sesquiterpene antibiotic albaflavenone. Gas chromatography/mass spectrometry analysis of S. coelicolor culture extracts established the presence of albaflavenone in the wild-type strain, along with its precursors epi-isozizaene and the albaflavenols. Disruption of the CYP170A1 gene abolished biosynthesis of both albaflavenone and the albaflavenols, but not epi-isozizaene. The combined results establish for the first time the presence of albaflavenone in S. coelicolor and clearly demonstrate that the biosynthesis of this antibiotic involves the coupled action of epi-isozizaene synthase and CYP170A1.
机译:细胞色素P450 170A1(CYP170A1)由革兰氏阳性土壤居住细菌coelicolor A3(2)的sco5223基因编码,是与sco5222基因组成的两个基因簇的一部分。 SCO5222蛋白是倍半萜烯合酶,可催化法呢基二磷酸环化成新型三环烃Epi-isozizaene(Lin,X.,Hopson,R.,and Cane,DE(2006)J.Am.Chem.Soc.128 ,6022-6023)。 CYP170A1(sco5223)的存在表明,表异异氮烯可能会被转录偶联的P450进一步氧化。现在我们已经确定,纯化的CYP170A1进行两次连续的烯丙基氧化反应,将表异异氮烯转化为异黄酮醇的差向异构体混合物,然后转化为倍半萜类抗生素异黄酮酮。气相色链霉菌培养物提取物的气相色谱/质谱分析确定了野生型菌株中存在黄烷酮及其前体表异epi烯和黄烷醇。 CYP170A1基因的破坏取消了albaflavenone和albaflavenols的生物合成,但不消除Epi-isozizaene。合并的结果首次确定天蓝色链霉菌中存在黄酮黄酮,并且清楚地表明该抗生素的生物合成涉及表异异氮烯合酶和CYP170A1的偶联作用。

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