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The Gac-Rsm and SadB Signal Transduction Pathways Converge on AlgU to Downregulate Motility in Pseudomonas fluorescens

机译:海关总署Rsm和saDB信号转导通路汇聚algU下调能动性在荧光假单胞菌

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摘要

Flagella mediated motility in Pseudomonas fluorescens F113 is tightly regulated. We have previously shown that motility is repressed by the GacA/GacS system and by SadB through downregulation of the fleQ gene, encoding the master regulator of the synthesis of flagellar components, including the flagellin FliC. Here we show that both regulatory pathways converge in the regulation of transcription and possibly translation of the algU gene, which encodes a sigma factor. AlgU is required for multiple functions, including the expression of the amrZ gene which encodes a transcriptional repressor of fleQ. Gac regulation of algU occurs during exponential growth and is exerted through the RNA binding proteins RsmA and RsmE but not RsmI. RNA immunoprecipitation assays have shown that the RsmA protein binds to a polycistronic mRNA encoding algU, mucA, mucB and mucD, resulting in lower levels of algU. We propose a model for repression of the synthesis of the flagellar apparatus linking extracellular and intracellular signalling with the levels of AlgU and a new physiological role for the Gac system in the downregulation of flagella biosynthesis during exponential growth.
机译:葡萄鞭菌介导的荧光荧光荧光笔F113的动力被紧密调节。我们之前已经表明,通过GACA / GACS系统和SADB通过FLEQ基因的下调来压抑的动力,编码鞭毛组分合成的主调节器,包括鞭毛蛋白流体。在这里,我们表明,两种调节途径都会在转录的调节中会聚,并可能翻译AlGu基因,其编码ΣIAGMA因子。多种功能需要Algu,包括编码Fleq的转录压缩机的AMRZ基因的表达。 GAC的AlGu调节在指数增长期间发生,并通过RNA结合蛋白RSMA和RSME施加而不是RSMI。 RNA免疫沉淀测定表明RSMA蛋白与编码AlGu,Muca,Mucb和MucD的多顺声mRNA结合,导致较低的AlgG。我们提出了一种模型,用于抑制与AlGu的水平的鞭毛仪的合成,将细胞外和细胞内信号传导与GAC系统在指数增长期间鞭毛生物合成的下调中的GAC系统的新生理作用。

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