Department of Biological Sciences, Louisiana State University, Baton Rouge, Louisiana, USA.
J Bacteriol. 2013 Nov;195(21):4954-65. doi: 10.1128/JB.00854-13. Epub 2013 Aug 30.
Many transcriptional regulators control gene activity by responding to specific ligands. Members of the multiple-antibiotic resistance regulator (MarR) family of transcriptional regulators feature prominently in this regard, and they frequently function as repressors in the absence of their cognate ligands. Plant pathogens such as Dickeya dadantii encode a MarR homolog named PecS that controls expression of a gene encoding the efflux pump PecM in addition to other virulence genes. We report here that the soil bacterium Streptomyces coelicolor also encodes a PecS homolog (SCO2647) that regulates a pecM gene (SCO2646). S. coelicolor PecS, which exists as a homodimer, binds the intergenic region between pecS and pecM genes with high affinity. Several potential PecS binding sites were found in this intergenic region. The binding of PecS to its target DNA can be efficiently attenuated by the ligand urate, which also quenches the intrinsic fluorescence of PecS, indicating a direct interaction between urate and PecS. In vivo measurement of gene expression showed that activity of pecS and pecM genes is significantly elevated after exposure of S. coelicolor cultures to urate. These results indicate that S. coelicolor PecS responds to the ligand urate by attenuated DNA binding in vitro and upregulation of gene activity in vivo. Since production of urate is associated with generation of reactive oxygen species by xanthine dehydrogenase, we propose that PecS functions under conditions of oxidative stress.
许多转录调控因子通过响应特定配体来控制基因活性。多抗生素耐药调节因子(MarR)家族的转录调控因子成员在这方面表现突出,它们在没有同源配体的情况下通常作为抑制剂发挥作用。植物病原体如 Dickeya dadantii 编码了一种 MarR 同源物,称为 PecS,它除了控制其他毒力基因外,还控制编码外排泵 PecM 的基因的表达。我们在这里报告,土壤细菌链霉菌也编码了一种 PecS 同源物(SCO2647),它调节 pecM 基因(SCO2646)。S. coelicolor PecS 以同源二聚体的形式存在,与 pecS 和 pecM 基因之间的基因间区具有高亲和力结合。在这个基因间区发现了几个潜在的 PecS 结合位点。配体尿酸可以有效地削弱 PecS 与其靶 DNA 的结合,尿酸也可以猝灭 PecS 的固有荧光,这表明尿酸和 PecS 之间存在直接相互作用。体内基因表达的测量表明,S. coelicolor 培养物暴露于尿酸后,pecS 和 pecM 基因的活性显著升高。这些结果表明,S. coelicolor PecS 通过体外 DNA 结合的减弱和体内基因活性的上调来响应配体尿酸。由于尿酸的产生与黄嘌呤脱氢酶产生的活性氧有关,我们提出 PecS 在氧化应激条件下发挥作用。