基因簇
异源表达
白色链霉菌
异源的
链霉菌
基因
糖基转移酶
生物
生物化学
生物合成
链霉菌科
糖基化
化学
放线菌
立体化学
遗传学
重组DNA
细菌
作者
Peng Shi,Yu Wang,Mengyujie Liu,Yaoyao Li,Jing Zhu,Yuemao Shen,Haoxin Wang
标识
DOI:10.1021/acs.jnatprod.3c00813
摘要
Tetrapetalones make up a unique class of pentaketide ansamycins that feature a tetracyclic skeleton and exhibit potent inhibitory activities against soybean lipoxygenase. However, a detailed biosynthetic route to tetrapetalones has not been published. Herein we report the activation of the tetrapetalones’ biosynthetic gene cluster (tpt) in Streptomyces sp. S10 by promoter engineering along with constitutive expression of pathway-specific regulator genes, leading to the discovery of seven new derivatives, tetrapetalones E–K (2–8), and the known tetrapetalone A (1). In vivo gene deletion experiments and heterologous expression of the minimized tpt cluster in Streptomyces albus J1074 suggest that the tetracyclic system of tetrapetalones is probably formed spontaneously, and the regioselective glycosylation of tetrapetalones at the C-9 hydroxy group with d-rhamnose or d-rhodinose was catalyzed by the glycosyltransferase Tpt14.
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