Sukchawalit R, Loprasert S, Atichartpongkul S, Mongkolsuk S
Laboratory of Biotechnology, Chulabhorn Research Institute, Lak Si, Bangkok 10210, Thailand.
J Bacteriol. 2001 Aug;183(15):4405-12. doi: 10.1128/JB.183.15.4405-4412.2001.
Analysis of the sequence immediate upstream of ohr revealed an open reading frame, designated ohrR, with the potential to encode a 17-kDa peptide with moderate amino acid sequence homology to the MarR family of negative regulators of gene expression. ohrR was transcribed as bicistronic mRNA with ohr, while ohr mRNA was found to be 95% monocistronic and 5% bicistronic with ohrR. Expression of both genes was induced by tert-butyl hydroperoxide (tBOOH) treatment. High-level expression of ohrR negatively regulated ohr expression. This repression could be overcome by tBOOH treatment. In vivo promoter analysis showed that the ohrR promoter (P1) has organic peroxide-inducible, strong activity, while the ohr promoter (P2) has constitutive, weak activity. Only P1 is autoregulated by OhrR. ohr primer extension results revealed three major primer extension products corresponding to the 5' ends of ohr mRNA, and their levels were strongly induced by tBOOH treatment. Sequence analysis of regions upstream of these sites showed no typical Xanthomonas promoter. Instead, the regions can form a stem-loop secondary structure with the 5' ends of ohr mRNA located in the loop section. The secondary structure resembles the structure recognized and processed by RNase III enzyme. These findings suggest that the P1 promoter is responsible for tBOOH-induced expression of the ohrR-ohr operon. The bicistronic mRNA is then processed by RNase III-like enzymes to give high levels of ohr mRNA, while ohrR mRNA is rapidly degraded.
对ohr上游紧邻的序列进行分析,发现了一个开放阅读框,命名为ohrR,它有可能编码一个17 kDa的肽段,该肽段与基因表达负调控的MarR家族在氨基酸序列上有一定的同源性。ohrR与ohr转录为双顺反子mRNA,而ohr mRNA被发现95%是单顺反子,5%是与ohrR的双顺反子。用叔丁基过氧化氢(tBOOH)处理可诱导这两个基因的表达。ohrR的高水平表达对ohr表达起负调控作用。这种抑制作用可通过tBOOH处理来克服。体内启动子分析表明,ohrR启动子(P1)具有有机过氧化物诱导的强活性,而ohr启动子(P2)具有组成型的弱活性。只有P1受OhrR的自动调节。ohr引物延伸结果显示有三个主要的引物延伸产物对应于ohr mRNA的5'端,并且它们的水平在tBOOH处理后被强烈诱导。这些位点上游区域的序列分析未发现典型的黄单胞菌启动子。相反,这些区域可与位于环区的ohr mRNA的5'端形成茎环二级结构。该二级结构类似于被RNase III酶识别和加工的结构。这些发现表明P1启动子负责tBOOH诱导的ohrR-ohr操纵子的表达。然后双顺反子mRNA被类似RNase III的酶加工,产生高水平的ohr mRNA,而ohrR mRNA则迅速降解。