Department of Biological Sciences, Louisiana State University, Baton Rouge, Louisiana 70803, USA.
Protein Sci. 2011 Mar;20(3):621-9. doi: 10.1002/pro.588.
Bacteria that associate with living hosts require intricate mechanisms to detect and respond to host defenses. Part of the early host defense against invading bacteria is the production of reactive oxygen species, and xanthine oxidase is one of the main producers of such agents. The end-product of the enzymatic activity of xanthine oxidase, urate, was previously shown to be the natural ligand for Deinococcus radiodurans-encoded HucR and it was shown to attenuate DNA binding by Agrobacterium tumefaciens-encoded PecS and Burkholderia thailandensis-encoded MftR, all members of the multiple antibiotic resistance regulator (MarR) family. We here show that residues involved in binding urate and eliciting the DNA binding antagonism are conserved in a specific subset of MarR homologs. Although HucR controls endogenous urate levels by regulating a uricase gene, almost all other homologs are predicted to respond to exogenous urate levels and to regulate a transmembrane transport protein belonging to either the drug metabolite transporter (DMT) or the major facilitator superfamily (MFS), as further evidenced by the presence of conserved binding sites for the cognate transcription factor within the respective promoter regions. These data suggest the use of orthologous genes for different regulatory purposes. We propose the designation UrtR (urate responsive transcriptional regulator) for this distinct subfamily of MarR homologs based on their common mechanism of urate-mediated attenuation of DNA binding.
与活体宿主相关的细菌需要复杂的机制来检测和响应宿主防御。宿主防御入侵细菌的早期措施之一是产生活性氧物种,而黄嘌呤氧化酶是此类物质的主要产生者之一。黄嘌呤氧化酶的酶促活性的终产物尿酸,先前被证明是 Deinococcus radiodurans 编码的 HucR 的天然配体,并且被证明可以减弱 Agrobacterium tumefaciens 编码的 PecS 和 Burkholderia thailandensis 编码的 MftR 的 DNA 结合,所有这些都是多重抗生素抗性调节剂 (MarR) 家族的成员。我们在这里表明,参与结合尿酸并引发 DNA 结合拮抗作用的残基在 MarR 同源物的一个特定亚类中是保守的。尽管 HucR 通过调节尿酸酶基因来控制内源性尿酸水平,但几乎所有其他同源物都被预测会对外源性尿酸水平做出反应,并调节属于药物代谢物转运蛋白 (DMT) 或主要易化因子超家族 (MFS) 的跨膜转运蛋白,这进一步证明了在各自的启动子区域内存在保守的同源转录因子结合位点。这些数据表明,为了不同的调节目的,可以使用同源基因。基于它们通过尿酸介导的 DNA 结合抑制的共同机制,我们建议将该 MarR 同源物的独特亚家族命名为 UrtR(尿酸反应性转录调节因子)。