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A Serratia marcescens PigP Homolog Controls Prodigiosin Biosynthesis, Swarming Motility and Hemolysis and Is Regulated by cAMP-CRP and HexS

机译:粘质沙雷氏菌的PigP同源物控制着Prodigiosin的生物合成,成群运动和溶血作用,并由cAMP-CRP和HexS调节

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摘要

Swarming motility and hemolysis are virulence-associated determinants for a wide array of pathogenic bacteria. The broad host-range opportunistic pathogen Serratia marcescens produces serratamolide, a small cyclic amino-lipid, that promotes swarming motility and hemolysis. Serratamolide is negatively regulated by the transcription factors HexS and CRP. Positive regulators of serratamolide production are unknown. Similar to serratamolide, the antibiotic pigment, prodigiosin, is regulated by temperature, growth phase, HexS, and CRP. Because of this co-regulation, we tested the hypothesis that a homolog of the PigP transcription factor of the atypical Serratia species ATCC 39006, which positively regulates prodigiosin biosynthesis, is also a positive regulator of serratamolide production in S. marcescens. Mutation of pigP in clinical, environmental, and laboratory strains of S. marcescens conferred pleiotropic phenotypes including the loss of swarming motility, hemolysis, and severely reduced prodigiosin and serratamolide synthesis. Transcriptional analysis and electrophoretic mobility shift assays place PigP in a regulatory pathway with upstream regulators CRP and HexS. The data from this study identifies a positive regulator of serratamolide production, describes novel roles for the PigP transcription factor, shows for the first time that PigP directly regulates the pigment biosynthetic operon, and identifies upstream regulators of pigP. This study suggests that PigP is important for the ability of S. marcescens to compete in the environment. © 2013 Shanks et al.
机译:成群运动和溶血是多种致病细菌的毒力相关决定因素。寄主范围广泛的机会性病原体粘质沙雷氏菌会产生小环氨基脂质serratamolide,这是一种促进大量运动和溶血的环氨基脂质。 Serratamolide受转录因子HexS和CRP负调控。沙雷莫胺生产的正调节剂尚不清楚。与舍拉莫利类似,抗生素色素prodigiosin受温度,生长期,HexS和CRP的调节。由于这种共同调节,我们测试了以下假设:非典型沙雷氏菌物种ATCC 39006的PigP转录因子的同系物正调节prodigiosin的生物合成,同时也是苦苣菜中Serratamolide产生的正调节剂。猪伤寒沙门氏菌的临床,环境和实验室菌株中的PigP突变赋予多效性表型,包括成群运动力丧失,溶血和严重降低的prodigiosin和serratamolide合成。转录分析和电泳迁移率变动分析将PigP置于上游调节剂CRP和HexS的调节途径中。这项研究的数据确定了serratamolide产生的正调节剂,描述了PigP转录因子的新作用,首次显示了PigP直接调节色素生物合成操纵子,并确定了PigP的上游调节剂。这项研究表明,PigP对于粘质链球菌在环境中的竞争能力很重要。 ©2013 Shanks等。

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