首页> 外文期刊>Molecular Microbiology >New Listeria monocytogenes prfA* mutants, transcriptional properties of PrfA* proteins and structure-function of the virulence regulator PrfA.
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New Listeria monocytogenes prfA* mutants, transcriptional properties of PrfA* proteins and structure-function of the virulence regulator PrfA.

机译:新的单核细胞增生李斯特菌prfA *突变体,PrfA *蛋白质的转录特性和毒力调节剂PrfA的结构功能。

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Summary PrfA, a transcription factor structurally related to Crp/Fnr, activates Listeria monocytogenes virulence genes during intracellular infection. We report two new PrfA* mutations causing the constitutive overexpression of the PrfA regulon. Leu-140Phe lies in alphaD adjacent to the DNA-binding motif in the C-terminal domain, like a previously characterized PrfA* mutation (Gly-145Ser). Ile-45Ser, in contrast, maps to the N-terminal beta-roll, a structure similar to that of the Crp cAMP binding site. The in vitro transcriptional properties of recombinant PrfA*(I45S) and PrfA*(G145S) were compared to those of PrfA(WT) at two differentially regulated PrfA-dependent promoters, PplcA and PactA. The two PrfA* mutations increased the affinity for the target DNA to a different extent, and the differences in DNA binding (PrfA*(G145S) > PrfA*(I45S) > PrfA(WT)) correlated with proportional differences in transcriptional activity. The use of the PrfA* proteins revealed that PplcA had a greater affinity for, and was more sensitive to, PrfA than PactA. RNA polymerase (RNAP) initiated transcription independently of PrfA at PplcA, but not at PactA, consistent with bandshift experiments suggesting that PplcA has a greater affinity for RNAP than PactA. Thus, differences in affinity for both PrfA and RNAP appear to determine the different expression pattern of PrfA-regulated promoters. Modelling of the PrfA* mutations in the crystal structure of PrfA and comparison with structure-function analyses of Crp, in which similar mutations lead to constitutively active (cAMP-independent) Crp* proteins, suggested that PrfA shares with Crp an analogous mechanism of cofactor-mediated allosteric shift. Our data support a regulatory model in which changes in PrfA-dependent gene expression are primarily accounted for by changes in PrfA activity.
机译:总结PrfA是一种结构上与Crp / Fnr相关的转录因子,可在细胞内感染过程中激活单核细胞增生李斯特菌毒力基因。我们报告了两个新的PrfA *突变导​​致PrfA调节剂的组成型过表达。 Leu-140Phe像以前表征的PrfA *突变(Gly-145Ser)一样,位于C末端结构域中与DNA结合基序相邻的alphaD中。相反,Ile-45Ser映射到N末端β-roll,其结构类似于Crp cAMP结合位点。将重组PrfA *(I45S)和PrfA *(G145S)的体外转录特性与PrfA(WT)在两个差异调节的PrfA依赖性启动子PplcA和PactA处的转录特性进行了比较。这两个PrfA *突变在不同程度上增加了与靶DNA的亲和力,并且DNA结合的差异(PrfA *(G145S)> PrfA *(I45S)> PrfA(WT))与转录活性的比例差异相关。 PrfA *蛋白的使用表明,PplcA对PrfA的亲和力比对PactA的敏感性更高。 RNA聚合酶(RNAP)在PplcA处独立于PrfA而不是在PactA处起始转录,这与带移实验一致,表明PplcA对RNAP的亲和力高于PactA。因此,对PrfA和RNAP的亲和力差异似乎决定了PrfA调控的启动子的不同表达模式。 PrfA *晶体结构中PrfA *突变的建模以及与Crp的结构功能分析的比较,其中相似的突变导致组成型活性(独立于cAMP的)Crp *蛋白,这表明PrfA与Crp共享辅因子的类似机制介导的变构转变。我们的数据支持一种调节模型,其中PrfA依赖性基因表达的变化主要由PrfA活性的变化来解释。

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