Marcin Wolański, Michał Krawiec, Kay Nieselt, Tobias Schwarz, Dilek Dere, Bernhard Krismer, Carolina Cano-Prieto, Harald Gross, Jolanta Zakrzewska-Czerwińska
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引用次数: 0
摘要
Brasilicardin A (BraA)是由绿芽诺卡菌(Nocardia terpenica)产生的次级代谢物,由于其强大的免疫抑制活性和低细胞毒性,是一种很有前景的药物。目前,半合成方法可以生产完整的化合物,但在化学半合成步骤中使用的BraA中间体的异源生物合成有限,导致该化合物只能达到实验室规模的数量。更好地了解brasilicardin生物合成基因簇Bra-BGC中涉及的基因表达调控途径,是进一步提高生产滴度的先决条件。然而,到目前为止,对Bra-BGC的转录调控只进行了肤浅的分析。在本研究中,我们全面分析了Bra-BGC附近编码的几个未被研究的转录调控因子KstR、SdpR和OmpR的功能,并深入研究了先前描述的簇状激活因子br12的作用。我们发现Bra12和新的调节因子SdpR结合了位于BraA生物合成必需基因启动子区域的几个DNA序列。随后,我们展示了一个复杂的调控网络,通过这个网络,两个调控因子都可以控制这些基因启动子的活性,从而控制Bra-BGC中的基因表达。此外,利用异种生产菌株日本Amycolatopsis japonicum,我们发现Bra12和SdpR调节因子在巴西木苷同属物的生物合成中发挥相反的作用。最后,我们提出了Bra-BGC中多水平基因表达调控的综合模型,并提出了局部编码转录调控因子的作用。•多个调节因子结合在brasilicardin基因簇内。•Bra12和SdpR是巴西绿素生物合成的关键调控因子。•bra0 - 1基因间区可能是一个关键的调控“热点”。
Multiple regulators control the biosynthesis of brasilicardin in Nocardia terpenica.
Brasilicardin A, BraA, is a secondary metabolite produced by the bacterium Nocardia terpenica, and a promising drug due to its potent immunosuppressive activity and low cytotoxicity. Currently, a semisynthetic approach confers the production of a complete compound but suffers from limited heterologous biosynthesis of BraA intermediates used in the chemical semi-synthesis steps leading to only lab-scale quantities of the compound. A better understanding of the gene expression regulatory pathways involved within the brasilicardin biosynthetic gene cluster, Bra-BGC, is a prerequisite to improving production titers further. However, the transcriptional regulation of the Bra-BGC has only been superficially analyzed, till now. In this study, we comprehensively analyze the functions of several unstudied transcriptional regulators, KstR, SdpR, and OmpR, encoded within the close vicinity of the Bra-BGC, and delve into the role of the previously described cluster-situated activator Bra12. We present that Bra12 and the novel regulator SdpR bind several DNA sequences located in the promoter regions of the genes essential for BraA biosynthesis. Subsequently, we demonstrate the complex regulatory network through which both regulators can control the activity of those gene promoters and thus gene expression in Bra-BGC. Furthermore, using the heterologous producer strain Amycolatopsis japonicum, we present that Bra12 and SdpR regulators play opposite roles in brasilicardin congener biosynthesis. Finally, we propose a comprehensive model of multilevel gene expression regulation in Bra-BGC and propose the roles of locally encoded transcriptional regulators. KEY POINTS: • Multiple regulators bind within the brasilicardin gene cluster. • Bra12 and SdpR are key regulators of brasilicardin biosynthesis. • The bra0 - 1 intergenic region is likely a key regulatory "hot-spot."
期刊介绍:
Applied Microbiology and Biotechnology focusses on prokaryotic or eukaryotic cells, relevant enzymes and proteins; applied genetics and molecular biotechnology; genomics and proteomics; applied microbial and cell physiology; environmental biotechnology; process and products and more. The journal welcomes full-length papers and mini-reviews of new and emerging products, processes and technologies.