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Identification of a small molecule signaling factor that regulates the biosynthesis of the antifungal polycyclic tetramate macrolactam HSAF in Lysobacter enzymogenes

机译:鉴定调节溶菌酶基因中抗真菌多环四酸酯大内酰胺HSAF的生物合成的小分子信号传导因子

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Lysobacter species are emerging as new sources of antibiotics. The regulation of these antibiotics is not well understood. Here, we identified a small molecule metabolite (LeDSF3) that regulates the biosynthesis of the antifungal antibiotic heat-stable antifungal factor (HSAF), a polycyclic tetramate macrolactam with a structure and mode of action distinct from the existing antifungal drugs. LeDSF3 was isolated from the culture broth of Lysobacter enzymogenes, and its chemical structure was established by NMR and MS. The purified compound induced green fluorescence in a reporter strain of Xanthomonas campestris, which contained a gfp gene under the control of a diffusible signaling factor (DSF)-inducible promoter. Exogenous addition of LeDSF3 in L. enzymogenes cultures significantly increased the HSAF yield, the transcription of HSAF biosynthetic genes, and the antifungal activity of the organism. The LeDSF3-regulated HSAF production is dependent on the two-component regulatory system RpfC/RpfG. Moreover, LeDSF3 upregulated the expression of the global regulator cAMP receptor-like protein (Clp). The disruption of clp led to no HSAF production. Together, the results show that LeDSF3 is a fatty acid-derived, diffusible signaling factor positively regulating HSAF biosynthesis and that the signaling is mediated by the RfpC/RpfG-Clp pathway. These findings may facilitate the antibiotic production through applied genetics and molecular biotechnology in Lysobacter, a group of ubiquitous yet underexplored microorganisms.
机译:溶菌属细菌正在作为抗生素的新来源出现。这些抗生素的调节尚不清楚。在这里,我们确定了一个小分子代谢产物(LeDSF3),它调节着抗真菌抗生素热稳定抗真菌因子(HSAF)的生物合成,该多环四酸酯大内酰胺具有不同于现有抗真菌药物的结构和作用方式。从溶菌酶基因的培养液中分离出LeDSF3,并通过NMR和MS确定其化学结构。纯化的化合物在Xanthomonas campestris的报告株中诱导绿色荧光,该报告株在可扩散信号因子(DSF)诱导型启动子的控制下包含gfp基因。 LeDSF3外源添加到L.酶基因培养物中可显着提高HSAF产量,HSAF生物合成基因的转录以及该生物体的抗真菌活性。 LeDSF3调节的HSAF生产取决于两组分调节系统RpfC / RpfG。此外,LeDSF3上调了全局调节子cAMP受体样蛋白(Clp)的表达。 clp的中断导致没有HSAF产生。总之,结果表明,LeDSF3是一种脂肪酸衍生的,可扩散的信号传导因子,可正向调节HSAF生物合成,并且该信号传导由RfpC / RpfG-Clp途径介导。这些发现可通过应用溶菌和遗传生物技术促进溶杆菌属中的抗生素生产,溶杆菌属是一类普遍存在但尚未开发的微生物。

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