Institute of Pharmaceutical Biotechnology, School of Medicine, Zhejiang University, Hangzhou, 310058, China.
Zhejiang Provincial Key Laboratory for Microbial Biochemistry and Metabolic Engineering, Hangzhou, 310058, China.
Arch Microbiol. 2019 Dec;201(10):1459-1464. doi: 10.1007/s00203-019-01710-3. Epub 2019 Jul 30.
Streptomyces is currently the main producer of microbial pharmaceuticals from its secondary metabolites as natural products. It will be more beneficial if the promoters, which are particularly strong during the secondary metabolism of Streptomyces, are used to drive the efficient production of desired natural products with the coordination of bacterial growth. Here, in an industrial natamycin producer Streptomyces chattanoogensis L10, a strong promoter groESp was identified for this purpose based on the comparative proteomic analysis of the primary and secondary metabolism. With a constitutive promoter ermEp* as a control, the activity of groESp was weak in the primary metabolism, but about sixfold higher than ermEp* in the secondary metabolism, when the representative antibiotic natamycin was highly produced. Furthermore, when ScnRII, a pathway-specific positive regulator in natamycin biosynthesis, was expressed under groESp, the productivity of natamycin was about 20% higher in the secondary metabolism than that from ermEp*, but had no discrimination in the early 2 days. Thus, we showed that proteomics is an effective alternative way to identify promoters for the high yield of natamycin in S. chattanoogensis, and this strategy can be widely adaptable to other Streptomyces species for the full development of secondary metabolites with promising bioactivities.
链霉菌目前是微生物药物的主要生产者,其次级代谢产物为天然产物。如果能够利用链霉菌次级代谢过程中特别强的启动子,在细菌生长协调的情况下,驱动所需天然产物的高效生产,将会更加有利。为此,在工业生产纳他霉素的链霉菌 Chattanoogensis L10 中,我们基于初级代谢物和次级代谢物的比较蛋白质组学分析,确定了一个强启动子 groESp。以组成型启动子 ermEp作为对照,在初级代谢物中 groESp 的活性较弱,但在次级代谢物中,当代表性抗生素纳他霉素大量产生时,groESp 的活性比 ermEp高约 6 倍。此外,当纳他霉素生物合成途径特异性正调控因子 ScnRII 在 groESp 下表达时,纳他霉素的生产力在次级代谢物中比 ermEp*高约 20%,但在早期 2 天没有差异。因此,我们表明蛋白质组学是一种有效的替代方法,可以鉴定 Chattanoogensis 中纳他霉素高产的启动子,并且该策略可以广泛适用于其他链霉菌属物种,以充分开发具有潜在生物活性的次级代谢产物。