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首页> 外文期刊>Molecular Microbiology >Mechanism of hcnA mRNA recognition in the Gac/Rsm signal transduction pathway of Pseudomonas fluorescens.
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Mechanism of hcnA mRNA recognition in the Gac/Rsm signal transduction pathway of Pseudomonas fluorescens.

机译:hcnA mRNA在荧光假单胞菌Gac / Rsm信号转导通路中的识别机制。

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摘要

In the plant-beneficial bacterium Pseudomonas fluorescens CHA0, the expression of antifungal exoproducts is controlled by the GacS/GacA two-component system. Two RNA binding proteins (RsmA, RsmE) ensure effective translational repression of exoproduct mRNAs. At high cell population densities, GacA induces three small RNAs (RsmX, RsmY, RsmZ) which sequester both RsmA and RsmE, thereby relieving translational repression. Here we systematically analyse the features that allow the RNA binding proteins to interact strongly with the 5' untranslated leader mRNA of the P. fluorescens hcnA gene (encoding hydrogen cyanide synthase subunit A). We obtained evidence for three major RsmA/RsmE recognition elements in the hcnA leader, based on directed mutagenesis, RsmE footprints and toeprints, and in vivo expression data. Two recognition elements were found in two stem-loop structures whose existence in the 5' leader region was confirmed by lead(II) cleavage analysis. The third recognition element, which overlapped the hcnA Shine-Dalgarno sequence, was postulated to adopt either an open conformation, which would favour ribosome binding, or a stem-loop structure, which may form upon interaction with RsmA/RsmE and would inhibit access of ribosomes. Effective control of hcnA expression by the Gac/Rsm system appears to result from the combination of the three appropriately spaced recognition elements.
机译:在植物有益细菌荧光假单胞菌CHA0中,抗真菌外产物的表达受GacS / GacA两组分系统控制。两种RNA结合蛋白(RsmA,RsmE)可确保外切产物mRNA的有效翻译抑制。在高细胞种群密度下,GacA诱导了三个小RNA(RsmX,RsmY,RsmZ),这些小RNA隔离RsmA和RsmE,从而减轻了翻译抑制。在这里,我们系统地分析了允许RNA结合蛋白与荧光假单胞菌hcnA基因(编码氰化氢合酶亚基A)的5'非翻译前导mRNA强烈相互作用的特征。基于定向诱变,RsmE足迹和脚印以及体内表达数据,我们获得了hcnA领导者中三个主要RsmA / RsmE识别元件的证据。在两个茎环结构中发现了两个识别元件,通过lead(II)裂解分析证实了它们在5'前导区的存在。假定与hcnA Shine-Dalgarno序列重叠的第三个识别元件采用开放构象(有利于核糖体结合)或茎-环结构(可能与RsmA / RsmE相互作用形成并抑制其进入)。核糖体。 Gac / Rsm系统对hcnA表达的有效控制似乎是由于三个适当间隔的识别元件的组合。

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