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Regulation of Cyclic Lipopeptide Biosynthesis in Pseudomonas fluorescens by the ClpP Protease▿ †

机译:ClpP蛋白酶对荧光假单胞菌中环脂肽生物合成的调控▿

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摘要

Cyclic lipopeptides produced by Pseudomonas species exhibit potent surfactant and broad-spectrum antibiotic properties. Their biosynthesis is governed by large multimodular nonribosomal peptide synthetases, but little is known about the genetic regulatory network. This study provides, for the first time, evidence that the serine protease ClpP regulates the biosynthesis of massetolides, cyclic lipopeptides involved in swarming motility, biofilm formation, and antimicrobial activity of Pseudomonas fluorescens SS101. The results show that ClpP affects the expression of luxR(mA), the transcriptional regulator of the massetolide biosynthesis genes massABC, thereby regulating biofilm formation and swarming motility of P. fluorescens SS101. Transcription of luxR(mA) was significantly repressed in the clpP mutant, and introduction of luxR(mA) restored, in part, massetolide biosynthesis and swarming motility of the clpP mutant. Site-directed mutagenesis and expression analyses indicated that the chaperone subunit ClpX and the Lon protease are not involved in regulation of massetolide biosynthesis and are transcribed independently of clpP. Addition of Casamino Acids enhanced the transcription of luxR(mA) and massABC in the clpP mutant, leading to a partial rescue of massetolide production and swarming motility. The results further suggested that, at the transcriptional level, ClpP-mediated regulation of massetolide biosynthesis operates independently of regulation by the GacA/GacS two-component system. The role of amino acid metabolism and the putative mechanisms underlying ClpP-mediated regulation of cyclic lipopeptide biosynthesis, swarming motility, and growth in P. fluorescens are discussed.
机译:假单胞菌种产生的环状脂肽表现出有效的表面活性剂和广谱抗生素特性。它们的生物合成受大型多模块非核糖体肽合成的支配,但对遗传调控网络知之甚少。这项研究首次提供了丝氨酸蛋白酶ClpP调控马来酸内酯,参与脂类假单胞菌(Pseudomonas fluorescens)SS101的群体运动,生物膜形成和抗菌活性的环状脂肽的生物合成的证据。结果表明,ClpP影响了大环内酯生物合成基因massABC的转录调节子luxR(mA)的表达,从而调节了荧光假单胞菌SS101的生物膜形成和成群运动。在clpP突变体中luxR(mA)的转录被显着抑制,并且luxR(mA)的引入部分恢复了Massetolide的生物合成和clpP突变体的运动。定点诱变和表达分析表明,伴侣亚基ClpX和Lon蛋白酶不参与对大环内酯生物合成的调节,并且独立于clpP转录。酪蛋白氨基酸的添加增强了clpP突变体中luxR(mA)和massABC的转录,从而部分挽救了马赛屈内酯的产生并促进了运动。结果进一步表明,在转录水平上,ClpP介导的大环内酯生物合成调控独立于GacA / GacS两组分系统的调控而运作。讨论了氨基酸代谢的作用和潜在的机制,ClpP介导的环脂肽生物合成调节,群运动和荧光假单胞菌生长的基础。

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