Jafri S, Urbanowski M L, Stauffer G V
Department of Microbiology, University of Iowa, Iowa City 52242.
J Bacteriol. 1995 Feb;177(3):524-9. doi: 10.1128/jb.177.3.524-529.1995.
The DNA-binding protein MetR belongs to the LysR family of transcriptional activators and is required for expression of the metE and metH promoters in Escherichia coli. However, it is not known if this activation is mediated by a direct interaction of MetR with RNA polymerase. In a search for RNA polymerase mutants defective in MetR-mediated activation of the metE gene, we isolated a mutation in the alpha subunit of RNA polymerase that decreases metE expression independently of the MetR protein. The mutation does not affect expression from the metH promoter, suggesting that the alpha subunit of RNA polymerase interacts differently at these two promoters. The mutation was mapped to codon 261 of the rpoA gene, resulting in a change from a glutamic acid residue to a lysine residue. Growth of the mutant is severely impaired in minimal medium even when supplemented with methionine and related amino acids, indicating a pleiotropic effect on gene expression. This rpoA mutation may identify either a site of contact with an as yet unidentified activator protein for metE expression or a site of involvement by the alpha subunit in sequence-specific recognition of the metE promoter.
DNA结合蛋白MetR属于转录激活因子的LysR家族,是大肠杆菌中metE和metH启动子表达所必需的。然而,尚不清楚这种激活是否由MetR与RNA聚合酶的直接相互作用介导。在寻找MetR介导的metE基因激活缺陷的RNA聚合酶突变体时,我们在RNA聚合酶的α亚基中分离到一个突变,该突变独立于MetR蛋白降低了metE的表达。该突变不影响metH启动子的表达,表明RNA聚合酶的α亚基在这两个启动子上的相互作用不同。该突变定位到rpoA基因的第261密码子,导致谷氨酸残基变为赖氨酸残基。即使添加了蛋氨酸和相关氨基酸,突变体在基本培养基中的生长也严重受损,表明对基因表达有多效性影响。这个rpoA突变可能确定了与尚未鉴定的metE表达激活蛋白的接触位点,或者是α亚基参与metE启动子序列特异性识别的位点。