Departamento de Microbiología Molecular, Instituto de Biotecnología, Universidad Nacional Autónoma de México, Cuernavaca, Morelos, México.
PLoS One. 2013;8(2):e56977. doi: 10.1371/journal.pone.0056977. Epub 2013 Feb 25.
PerA is a key regulator of virulence genes in enteropathogenic E. coli. PerA is a member of the AraC/XylS family of transcriptional regulators that directly regulates the expression of the bfp and per operons in response to different environmental cues. Here, we characterized mutants in both the amino (NTD) and carboxy (CTD) terminal domains of PerA that affect its ability to activate the expression of the bfp and per promoters. Mutants at residues predicted to be important for DNA binding within the CTD had a significant defect in their ability to bind to the regulatory regions of the bfp and per operons and, consequently, in transcriptional activation. Notably, mutants in specific NTD residues were also impaired to bind to DNA suggesting that this domain is involved in structuring the protein for correct DNA recognition. Mutations in residues E116 and D168, located in the vicinity of the putative linker region, significantly affected the activation of the perA promoter, without affecting PerA binding to the per or bfp regulatory sequences. Overall these results provide additional evidence of the importance of the N-terminal domain in PerA activity and suggest that the activation of these promoters involves differential interactions with the transcriptional machinery. This study further contributes to the characterization of the functional domains of PerA by identifying critical residues involved in DNA binding, differential promoter activation and, potentially, in the possible response to environmental cues.
PerA 是肠致病性大肠杆菌毒力基因的关键调节因子。PerA 是 AraC/XylS 家族转录调节因子的成员,可直接响应不同的环境信号调节 bfp 和 per 操纵子的表达。在这里,我们对 PerA 的氨基(NTD)和羧基(CTD)末端结构域中的突变体进行了特征描述,这些突变体影响其激活 bfp 和 per 启动子表达的能力。预测在 CTD 内对 DNA 结合重要的残基突变体在结合 bfp 和 per 操纵子的调控区以及转录激活方面存在显著缺陷。值得注意的是,特定 NTD 残基的突变体也无法结合 DNA,表明该结构域参与了蛋白质的正确 DNA 识别结构。位于假定连接区附近的残基 E116 和 D168 的突变显著影响了 perA 启动子的激活,而不影响 PerA 与 per 或 bfp 调控序列的结合。总体而言,这些结果进一步证明了 N 端结构域在 PerA 活性中的重要性,并表明这些启动子的激活涉及与转录机制的差异相互作用。本研究通过鉴定参与 DNA 结合、差异启动子激活以及可能对环境信号反应的关键残基,进一步有助于 PerA 功能结构域的特征描述。