Helmholtz-Institute for Pharmaceutical Research Saarland, Saarland University Campus, Building C2.3, 66123, Saarbrücken, Germany.
Department of Pharmaceutical Biotechnology, Helmholtz-Institute for Pharmaceutical Research Saarland, Actinobacteria Metabolic Engineering Group, Saarland University, UdS Campus, C2 3, 66123, Saarbrücken, Germany.
Appl Microbiol Biotechnol. 2016 Nov;100(21):9175-9186. doi: 10.1007/s00253-016-7721-3. Epub 2016 Jul 13.
The biosynthetically well-studied landomycin A cluster has been used to demonstrate the unbalancing of gene transcription as an efficient method for the generation of new compounds. Landomycin A structural genes were decoupled from the native regulators LanI and LanK and placed under the control of a single synthetic promoter and expressed in a heterologous host Streptomyces albus J1074. In contrast to their native quantitative and temporal regulation, these genes were transcribed as a single polycistronic mRNA leading to the production of four novel and two known compounds. No glycosylated landomycins were detected though the entire biosynthetic cluster was transcribed, showing the crucial role of the balanced gene expression for the production of landomycin A. Two new compounds, fridamycin F and G, isolated in this study were shown to originate from the interplay between the expressed biosynthetic pathway and metabolic network of the heterologous host. Structure activity studies of the isolated compounds as well as results of transcriptome sequencing are discussed in this article.
生物合成研究充分的兰地霉素 A 簇已被用于证明基因转录的失衡是产生新化合物的有效方法。将兰地霉素 A 结构基因与天然调控因子 LanI 和 LanK 分离,并置于单个合成启动子的控制下,在异源宿主白色链霉菌 J1074 中表达。与它们的天然定量和时间调节不同,这些基因作为单个多顺反子 mRNA 转录,导致产生四种新化合物和两种已知化合物。尽管整个生物合成簇都被转录,但没有检测到糖基化的兰地霉素,表明平衡的基因表达对于兰地霉素 A 的产生至关重要。在这项研究中分离得到的两种新化合物,弗里达霉素 F 和 G,表明它们源自表达的生物合成途径与异源宿主代谢网络之间的相互作用。本文讨论了分离化合物的结构活性研究以及转录组测序的结果。