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Functional Similarities between the Listeria monocytogenes Virulence Regulator PrfA and Cyclic AMP Receptor Protein: the PrfA* (Gly145Ser) Mutation Increases Binding Affinity for Target DNA

机译:李斯特菌单核细胞增生毒力调节剂PRFA和环形放大物受体蛋白质之间的功能相似性:PRFA *(GLY145SER)突变增加对靶DNA的结合亲和力

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摘要

Most Listeria monocytogenes virulence genes are positively regulated by the PrfA protein, a transcription factor sharing sequence similarities with cyclic AMP (cAMP) receptor protein (CRP). Its coding gene, prfA, is regulated by PrfA itself via an autoregulatory loop mediated by the upstream PrfA-dependent plcA promoter. We have recently characterized prfA* mutants from L. monocytogenes which, as a result of a single amino acid substitution in PrfA, Gly145Ser, constitutively overexpress prfA and the genes of the PrfA virulence regulon. Here, we show that about 10 times more PrfA protein is produced in a prfA* strain than in the wild type. Thus, the phenotype of prfA* mutants is presumably due to the synthesis of a PrfA protein with higher promoter-activating activity (PrfA*), which keeps its intracellular levels constantly elevated by positive feedback. We investigated the interaction of PrfA and PrfA* (Gly145Ser) with target DNA. Gel retardation assays performed with a DNA fragment carrying the PrfA binding site of the plcA promoter demonstrated that the PrfA* mutant form is much more efficient than wild-type PrfA at forming specific DNA-protein complexes. In footprinting experiments, the two purified PrfA forms interacted with the same nucleotides at the target site, although the minimum amount required for protection was 6 to 7 times lower with PrfA*. These results show that the primary functional consequence of the Gly145Ser mutation is an increase in the affinity of PrfA for its target sequence. Interestingly, similar mutations at the equivalent position in CRP result in a transcriptionally active, CRP* mutant form which binds with high affinity to target DNA in the absence of the activating cofactor, cAMP. Our observations suggest that the structural similarities between PrfA and CRP are also functionally relevant and support a model in which the PrfA protein, like CRP, shifts from transcriptionally inactive to active conformations by interaction with a cofactor.
机译:大多数李斯特菌素单核细胞增生的毒力基因由PRFA蛋白质阳性调节,与环形放大器(CAMP)受体蛋白(CRP)共享序列相似性。其编码基因PRFA由PRFA本身通过由上游PRFA依赖性PLCA启动子介导的自身调节环路调节。我们最近表征了来自L.单核细胞增生的PRFA *突变体,其由于PRFA,GLY145SER中的单个氨基酸取代,组成型过滤PRFA和PRFA毒力调节件的基因。在这里,我们表明PRFA蛋白质在PRFA *应变中产生了大约10倍的PRFA蛋白质。因此,PRFA *突变体的表型可能是由于具有较高启动子激活活性(PRFA *)的PRFA蛋白的合成,这使其细胞内水平不断地通过阳性反馈升高。我们研究了PRFA和PRFA *(GLY145SER)与靶DNA的相互作用。用携带PLCA启动子的PRFA结合位点的DNA片段进行的凝胶延迟测定证明了PRFA *突变形式比形成特定DNA蛋白复合物的野生型PRFA更有效。在足迹实验中,两种纯化的PRFA形式与靶位部位的相同核苷酸相互作用,尽管保护所需的最小量为PRFA *的最小量为6至7倍。这些结果表明,GLY145SER突变的主要功能后果是PRFA对其靶序列的亲和力的增加。有趣的是,CRP中等同位置的类似突变导致转录活性的CRP *突变形式,其在不存在激活的辅因子阵营的情况下与靶DNA的高亲和力结合。我们的观察结果表明,PRFA和CRP之间的结构相似性也在功能上相关,并且支持其中PRFA蛋白,如CRP,通过与辅因子的相互作用而转移到主动构象的模型。

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