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Characterization of three pathway-specific regulators for high production of monensin in Streptomyces cinnamonensis

机译:三种途径特异性调节剂的特征在于肉桂酸盐中高产宫蛋白

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Monensin, a polyether ionophore antibiotic, is produced by Streptomyces cinnamonensis and worldwide used as a coccidiostat and growth-promoting agent in the field of animal feeding. The monensin biosynthetic gene cluster (mon) has been reported. In this study, the potential functions of three putatively pathway-specific regulators (MonH, MonRI, and MonRII) were clarified. The results from gene inactivation, complementation, and overexpression showed that MonH, MonRI, and MonRII positively regulate monensin production. Both MonH and MonRI are essential for monensin biosynthesis, while MonRII is non-essential and could be completely replaced by additional expression of monRI. Transcriptional analysis of the mon cluster by semi-quantitative reverse transcription polymerase chain reaction (RT-PCR) and electrophoresis mobility shift assays (EMSAs) revealed a co-regulatory cascade process. MonH upregulates the transcription of monRII, and MonRII in turn enhances the transcription of monRI. MonRII is an autorepressor, while MonRI is an autoactivator. MonH activates the transcription of monCII-monE, and upregulates the transcription of monT that is repressed by MonRII. monAX and monD are activated by MonRI, and upregulated by MonRII. Co-regulation of those post-polyketide synthase (post-PKS) genes by MonH, MonRI, and MonRII would contribute to high production of monensin. These results shed new light on the transcriptional regulatory cascades of antibiotic biosynthesis in Streptomyces.
机译:Monensin,一种聚醚离子核心抗生素,由Streptomyces肉桂肌肉和全球使用,作为动物饲养领域的Coccidoostat和生长促进剂。据报道了蒙斯蛋白生物合成基因簇(MON)。在这项研究中,澄清了三种途径特异性调节剂(Monh,Monri和Monrii)的潜在功能。基因失活,互补和过表达的结果表明,Monh,Monri和Monrii积极调节宫蛋白的产生。 Monh和Monri都对于Monensin生物合成至关重要,而Monrii是非必需的,并且可以通过蒙里的额外表达完全取代。半定量逆转录聚合酶链反应(RT-PCR)和电泳迁移率移位测定(EMSAS)的转录分析显示了共调节级联方法。蒙特上调蒙里西的转录,蒙里西反过来增强了蒙里的转录。蒙里西是一名自动投票机,而蒙里是一个独立运动员。 MONH激活MONCII-MONE的转录,并提出由MONRII压抑的MONT的转录。 Monax和Mond被蒙里的激活,并通过蒙里西上调。通过Monh,Monri和Monrii对那些聚酮合成酶(后PKS)基因的共调节,将有助于高产宫霉素。这些结果在链霉菌中的转录调节性级联的转录调节级联。

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