Grove Anne
Department of Biological Sciences, Louisiana State University, Baton Rouge, LA 70803, USA.
Mol Biosyst. 2010 Nov;6(11):2133-42. doi: 10.1039/c0mb00086h. Epub 2010 Aug 23.
The genus Burkholderia includes a large number of species, some of which are serious human pathogens. A genomic locus is conserved that consists of a gene encoding a member of the multiple antibiotic resistance regulator (MarR) family of transcriptional regulators and a divergently oriented gene encoding a major facilitator transport protein (MFTP), a predicted membrane efflux pump. Homology modeling shows that the MarR homolog conserves the location of four conserved amino acid residues previously shown to bind the ligand urate in the Deinococcus radiodurans-encoded MarR homolog HucR. Analysis of the B. thailandensis-encoded homolog shows that its specific DNA binding to two adjacent sites in the intergenic region between the genes encoding the transcription factor and the MFTP is attenuated by urate and to a lesser extent by xanthine and hypoxanthine, but not by adenine or the product of urate degradation, allantoin. These data suggest the existence of a four amino acid urate-binding signature in a subset of MarR homologs, and that homologs bearing this signature will respond to the ligand urate by attenuated DNA binding. The location of binding sites predicts regulation of the MFTP and prompts a proposal to name the cognate transcription factor MftR (major facilitator transport regulator).
伯克霍尔德菌属包含大量菌种,其中一些是严重的人类病原体。一个基因组位点是保守的,它由一个编码转录调节因子多重抗生素抗性调节因子(MarR)家族成员的基因和一个反向排列的编码主要易化转运蛋白(MFTP,一种预测的膜外排泵)的基因组成。同源建模显示,该MarR同源物保留了四个保守氨基酸残基的位置,这些残基先前已被证明在耐辐射球菌编码的MarR同源物HucR中与配体尿酸盐结合。对泰国伯克霍尔德菌编码的同源物的分析表明,其与转录因子和MFTP编码基因之间基因间区域中两个相邻位点的特异性DNA结合被尿酸盐减弱,被黄嘌呤和次黄嘌呤减弱的程度较小,但不被腺嘌呤或尿酸盐降解产物尿囊素减弱。这些数据表明在一部分MarR同源物中存在一个四氨基酸尿酸盐结合特征,并且带有该特征的同源物将通过减弱DNA结合来响应配体尿酸盐。结合位点的位置预测了MFTP的调节,并促使人们提议将同源转录因子命名为MftR(主要易化转运调节因子)。