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A bacterial negative transcription regulator binding on an inverted repeat in the promoter for epothilone biosynthesis

机译:细菌负转录调控因子结合在启动子上的埃博霉素生物合成的反向重复

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摘要

Background Microbial secondary metabolism is regulated by a complex and mostly-unknown network of global and pathway-specific regulators. A dozen biosynthetic gene clusters for secondary metabolites have been reported in myxobacteria, but a few regulation factors have been identified. Results We identified a transcription regulator Esi for the biosynthesis of epothilones. Inactivation of esi promoted the epothilone production, while overexpression of the gene suppressed the production. The regulation was determined to be resulted from the transcriptional changes of epothilone genes. Esi was able to bind, probably via the N-terminus of the protein, to an inverted repeat sequence in the promoter of the epothilone biosynthetic gene cluster. The Esi-homologous sequences retrieved from the RefSeq database are all of the Proteobacteria. However, the Esi regulation is not universal in myxobacteria, because the esi gene exists only in a few myxobacterial genomes. Conclusions Esi binds to the epothilone promoter and down-regulates the transcriptional level of the whole gene cluster to affect the biosynthesis of epothilone. This is the first transcription regulator identified for epothilone biosynthesis.
机译:背景技术微生物的次级代谢是由一个复杂的,且鲜为人知的全球性和通路特异性调节剂网络调节的。在粘细菌中已经报道了许多次生代谢产物的生物合成基因簇,但是已经确定了一些调控因子。结果我们确定了转录调控因子Esi用于埃博霉素的生物合成。 esi的失活促进了埃博霉素的产生,而基因的过表达抑制了埃博霉素的产生。确定该调节是由于埃博霉素基因的转录变化引起的。 Esi可能通过蛋白质的N端与埃坡霉素生物合成基因簇的启动子中的反向重复序列结合。从RefSeq数据库检索到的Esi同源序列均为变形杆菌。但是,Esi调节在粘细菌中并不普遍,因为esi基因仅存在于少数粘细菌基因组中。结论Esi与埃博霉素启动子结合并下调整个基因簇的转录水平,从而影响埃博霉素的生物合成。这是鉴定为埃博霉素生物合成的第一个转录调节因子。

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