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Regulation of valanimycin biosynthesis in Streptomyces viridifaciens: characterization of VlmI as a Streptomyces antibiotic regulatory protein (SARP)

机译:拟南芥链霉菌中瓦拉霉素生物合成的调控:作为链霉菌抗生素调节蛋白(SARP)的VlmI的表征

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摘要

Streptomyces antibiotic regulatory proteins (SARPs) have been shown to activate transcription by binding to a tandemly arrayed set of heptameric direct repeats located around the −35 region of their cognate promoters. Experimental evidence is presented here showing that vlmI is a regulatory gene in the valanimycin biosynthetic gene cluster of Streptomyces viridifaciens and encodes a protein belonging to the SARP family. The organization of the valanimycin biosynthetic gene cluster suggests that the valanimycin biosynthetic genes are located on three potential transcripts, vlmHORBCD, vlmJKL and vlmA. Disruption of vlmI abolished valanimycin biosynthesis. Western blot analyses showed that VlmR and VlmA are absent from the vlmI mutant and that the production of VlmK is severely diminished. These results demonstrate that the expression of these genes from the three potential transcripts is under the positive control of VlmI. The vlmA–vlmH and vlmI–vlmJ intergenic regions both exhibit a pattern of heptameric direct repeats. Gel shift assays with VlmI overproduced in Escherichia coli as a C-terminal FLAG-tagged protein clearly demonstrated that VlmI binds to DNA fragments from both regions that contain these heptameric repeats. When a high-copy-number vlmI expression plasmid was introduced into Streptomyces coelicolor M512, which contains mutations in the undecylprodigiosin and actinorhodin activators redD and actII-orf4, undecylprodigiosin production was restored, showing that vlmI can complement a redD mutation. Introduction of the same vlmI expression plasmid into an S. viridifaciens vlmI mutant restored valanimycin production to wild-type levels.
机译:链霉菌抗生素调节蛋白(SARPs)已显示可通过与位于其同源启动子-35区域周围的一排排排列的七聚体直接重复序列结合来激活转录。这里提供的实验证据表明,vlmI是拟南芥链霉菌的瓦拉霉素生物合成基因簇中的调控基因,并且编码属于SARP家族的蛋白质。瓦拉霉素生物合成基因簇的组织表明,瓦拉霉素生物合成基因位于三个潜在的转录本上,vlmHORBCD,vlmJKL和vlmA。 vlmI的破坏消除了瓦拉霉素的生物合成。蛋白质印迹分析表明vlmI突变体中不存在VlmR和VlmA,并且严重降低了VlmK的产生。这些结果表明,来自三个潜在转录物的这些基因的表达处于VlmI的阳性控制之下。 vlmA–vlmH和vlmI–vlmJ基因间区域都显示出七聚体直接重复的模式。在大肠杆菌中过量生产的VlmI作为C端FLAG标签的蛋白进行的凝胶移位试验清楚地表明,VlmI与包含这些七聚体重复序列的两个区域的DNA片段结合。当将高拷贝数的vlmI表达质粒引入链霉菌M512中时,该蛋白中含有十一碳黄素原素和actinorhodin激活物redD和actII-orf4中的突变,十一碳黄素原素的生产得以恢复,表明vlmI可以补充redD突变。将相同的vlmI表达质粒导入至S. viridifaciens vlmI突变体可将瓦拉霉素的产量恢复至野生型水平。

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