Pharmaceutical Biology, Pharmaceutical Institute, Eberhard-Karls-Universität Tübingen, Auf der Morgenstelle 8, 72076 Tübingen, Germany.
Appl Microbiol Biotechnol. 2010 Jun;87(1):261-9. doi: 10.1007/s00253-009-2435-4. Epub 2010 Feb 2.
The biosynthetic gene cluster of the aminocoumarin antibiotic novobiocin comprises 20 coding sequences. Sixteen of them code for essential enzymes for novobiocin formation, transcribed in the form of a single 18-kb polycistronic mRNA. In the present study, we replaced the genuine promoter of this operon by the tetracycline-inducible promoter tcp830 and at the same time deleting the two pathway-specific positive regulator genes of novobiocin biosynthesis. The heterologous producer Streptomyces coelicolor M512 harboring the modified gene cluster produced, upon addition of 2 mg L(-1) of the inducer compound anhydrotetracyline, 3.4-fold more novobiocin than strains carrying the unmodified cluster. A second tcp830 promoter was inserted in the middle of the 18-kb operon in order to ensure adequate transcription of the rearmost genes. However, this did not lead to a further increase of novobiocin formation, showing that a single tcp830 promoter was sufficient to achieve high transcription of all 16 genes of the operon. A high induction of novobiocin formation was achieved within a wide range of anhydrotetracyline concentrations (0.25-2.0 mg L(-1)). Growth of the strains was not affected by these concentrations. The inducer compound could be added either at the time of inoculation or at any other time up to mid-growth phase, always achieving a similar final antibiotic production. Therefore, the tcp830 promoter presents a robust, easy-to-use system for the inducible expression of biosynthetic gene clusters in heterologous hosts, independent from the genuine regulatory network.
氨基香豆素抗生素新生霉素的生物合成基因簇包含 20 个编码序列。其中 16 个编码新生霉素形成所必需的酶,以单个 18kb 多顺反子 mRNA 的形式转录。在本研究中,我们用四环素诱导型启动子 tcp830 替换了该操纵子的天然启动子,同时删除了新生霉素生物合成的两个途径特异性正调控基因。含有经修饰基因簇的异源产色链霉菌 M512 在添加 2mg/L 的诱导剂化合物脱羟四环素后,产生的新生霉素比携带未修饰基因簇的菌株多 3.4 倍。为了确保最后几个基因的转录充分,在 18kb 操纵子的中间插入了第二个 tcp830 启动子。然而,这并没有导致新生霉素产量的进一步增加,表明单个 tcp830 启动子足以实现操纵子中所有 16 个基因的高转录。在广泛的脱羟四环素浓度(0.25-2.0mg/L)范围内,新生霉素的形成都得到了很高的诱导。这些浓度不会影响菌株的生长。可以在接种时或任何其他时间(直至中期生长阶段)添加诱导剂化合物,始终可以达到类似的最终抗生素产量。因此,tcp830 启动子为异源宿主中生物合成基因簇的诱导表达提供了一个稳健、易于使用的系统,与天然调控网络无关。