Rhee Jee Eun, Jeong Hee Gon, Lee Jeong Hyun, Choi Sang Ho
Department of Food Science and Technology, School of Agricultural Biotechnology, Center for Agricultural Biomaterials, Seoul National University, Seoul, 151-742, South Korea.
J Bacteriol. 2006 Sep;188(18):6490-7. doi: 10.1128/JB.00533-06.
A mutant of Vibrio vulnificus that was more sensitive to low pH was screened from a library of mutants constructed by random transposon mutagenesis. By use of a transposon-tagging method, an open reading frame encoding a LysR homologue, AphB, was identified and cloned from V. vulnificus. The deduced amino acid sequence of AphB from V. vulnificus was 80% identical to that reported from V. cholerae. A mutational analysis demonstrated that the gene product of aphB contributes to acid tolerance of V. vulnificus. The lysine decarboxylase activity and cellular level of the cadA transcript were decreased in the aphB mutant, indicating that AphB exerts its effect on the acid tolerance of V. vulnificus by enhancing the expression of cadBA. Western blot analyses demonstrated that the cellular level of CadC, a transcription activator of the cadBA operon, was significantly reduced by aphB mutation, and a primer extension analysis revealed that the cadC promoter (P(cadC)) activity was under the positive control of AphB. A direct interaction between AphB and the P(cadC) DNA was demonstrated by gel mobility shift assays. The AphB binding site mapped by deletion analyses of the P(cadC) regulatory region and confirmed by a DNase I protection assay was centered at the 61.5 bp upstream of the transcription start site. Accordingly, these results demonstrate that AphB and CadC function sequentially in a regulatory cascade to activate cadBA expression and that AphB activates the expression of cadC by directly binding to an upstream region of P(cadC).
从通过随机转座子诱变构建的突变体文库中筛选出了一株对低pH更敏感的创伤弧菌突变体。利用转座子标签法,从创伤弧菌中鉴定并克隆了一个编码LysR同源物AphB的开放阅读框。创伤弧菌AphB推导的氨基酸序列与霍乱弧菌报道的序列有80%的同一性。突变分析表明,aphB的基因产物有助于创伤弧菌的耐酸性。在aphB突变体中,赖氨酸脱羧酶活性和cadA转录本的细胞水平降低,表明AphB通过增强cadBA的表达对创伤弧菌的耐酸性发挥作用。蛋白质免疫印迹分析表明,aphB突变显著降低了cadBA操纵子转录激活因子CadC的细胞水平,引物延伸分析显示cadC启动子(P(cadC))活性受AphB的正调控。凝胶迁移率变动分析证明了AphB与P(cadC) DNA之间存在直接相互作用。通过对P(cadC)调控区的缺失分析定位并经DNase I保护试验证实的AphB结合位点位于转录起始位点上游61.5 bp处。因此,这些结果表明,AphB和CadC在一个调控级联中依次发挥作用以激活cadBA的表达,并且AphB通过直接结合到P(cadC)的上游区域来激活cadC的表达。