首页> 美国卫生研究院文献>Journal of Bacteriology >Posttranscriptional Repression of GacS/GacA-Controlled Genes by the RNA-Binding Protein RsmE Acting Together with RsmA in the Biocontrol Strain Pseudomonas fluorescens CHA0
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Posttranscriptional Repression of GacS/GacA-Controlled Genes by the RNA-Binding Protein RsmE Acting Together with RsmA in the Biocontrol Strain Pseudomonas fluorescens CHA0

机译:RNA结合蛋白RsmE与RsmA一起在生物控制菌株荧光假单胞菌CHA0中的GacS / GacA控制基因的转录后抑制。

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摘要

In the plant-beneficial soil bacterium Pseudomonas fluorescens CHA0, the production of biocontrol factors (antifungal secondary metabolites and exoenzymes) is controlled at a posttranscriptional level by the GacS/GacA signal transduction pathway involving RNA-binding protein RsmA as a key regulatory element. This protein is assumed to bind to the ribosome-binding site of target mRNAs and to block their translation. RsmA-mediated repression is relieved at the end of exponential growth by two GacS/GacA-controlled regulatory RNAs RsmY and RsmZ, which bind and sequester the RsmA protein. A gene (rsmE) encoding a 64-amino-acid RsmA homolog was identified and characterized in strain CHA0. Overexpression of rsmE strongly reduced the expression of target genes (hcnA, for a hydrogen cyanide synthase subunit; aprA, for the main exoprotease; and phlA, for a component of 2,4-diacetylphloroglucinol biosynthesis). Single null mutations in either rsmA or rsmE resulted in a slight increase in the expression of hcnA, aprA, and phlA. By contrast, an rsmA rsmE double mutation led to strongly increased and advanced expression of these target genes and completely suppressed a gacS mutation. Both the RsmE and RsmA levels increased with increasing cell population densities in strain CHA0; however, the amount of RsmA showed less variability during growth. Expression of rsmE was controlled positively by GacA and negatively by RsmA and RsmE. Mobility shift assays demonstrated specific binding of RsmE to RsmY and RsmZ RNAs. The transcription and stability of both regulatory RNAs were strongly reduced in the rsmA rsmE double mutant. In conclusion, RsmA and RsmE together account for maximal repression in the GacS/GacA cascade of strain CHA0.
机译:在植物有益的土壤细菌荧光假单胞菌CHA0中,生物控制因子(抗真菌的次级代谢产物和外酶)的产生在转录后水平上受到GacS / GacA信号转导途径的控制,该信号转导途径涉及RNA结合蛋白RsmA作为关键调控元件。假定该蛋白质与靶标mRNA的核糖体结合位点结合并阻断其翻译。 RsmA介导的阻遏在两个GacS / GacA控制的调节性RNA RsmY和RsmZ指数生长结束时释放,它们结合并螯合RsmA蛋白。已鉴定出编码64个氨基酸的RsmA同源物的基因(rsmE),并在CHA0菌株中进行了鉴定。 rsmE的过表达强烈降低了靶基因的表达(对于氰化氢合酶亚基为hcnA;对于主要外蛋白酶为aprA;对于2,4-二乙酰基间苯三酚生物合成的组分为phlA)。 rsmA或rsmE中的单个无效突变导致hcnA,aprA和phlA的表达略有增加。相比之下,rsmA rsmE双重突变导致这些靶基因的表达大大增加和提前表达,并完全抑制了gacS突变。随着菌株CHA0中细胞种群密度的增加,RsmE和RsmA的水平均增加。但是,RsmA的量在生长过程中显示出较小的变异性。 rsmE的表达受GacA阳性控制,受RsmA和RsmE阴性控制。迁移率变化分析证明RsmE与RsmY和RsmZ RNA特异性结合。在rsmA rsmE双重突变体中,两种调节性RNA的转录和稳定性均大大降低。总之,在菌株CHA0的GacS / GacA级联反应中,RsmA和RsmE共同发挥了最大的抑制作用。

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