Lee S E, Shin S H, Kim S Y, Kim Y R, Shin D H, Chung S S, Lee Z H, Lee J Y, Jeong K C, Choi S H, Rhee J H
Department of Microbiology, Chosun University Medical School, Kwangju, Republic of Korea.
J Bacteriol. 2000 Jun;182(12):3405-15. doi: 10.1128/JB.182.12.3405-3415.2000.
In an attempt to dissect the virulence regulatory mechanism in Vibrio vulnificus, we tried to identify the V. cholerae transmembrane virulence regulator toxRS (toxRS(Vc)) homologs in V. vulnificus. By comparing the sequences of toxRS of V. cholerae and V. parahaemolyticus (toxRS(Vp)), we designed a degenerate primer set targeting well-conserved sequences. Using the PCR product as an authentic probe for Southern blot hybridization, a 1.6-kb BglII-HindIII fragment and a 1.2-kb HindIII fragment containing two complete open reading frames and one partial open reading frame attributable to toxR(Vv), toxS(Vv), and htpG(Vv) were cloned. ToxR(Vv) shared 55.0 and 63.0% sequence homology with ToxR(Vc) and ToxR(Vp), respectively. ToxS(Vv) was 71.5 and 65.7% homologous to ToxS(Vc) and ToxS(Vp), respectively. The amino acid sequences of ToxRS(Vv) showed transmembrane and activity domains similar to those observed in ToxRS(Vc) and ToxRS(Vp). Western blot analysis proved the expression of ToxR(Vv) in V. vulnificus. ToxRS(Vv) enhanced, in an Escherichia coli background, the expression of the V. vulnificus hemolysin gene (vvhA) fivefold. ToxRS(Vv) also activated the ToxR(Vc)-regulated ctx promoter incorporated into an E. coli chromosome. A toxR(Vv) null mutation decreased hemolysin production. The defect in hemolysin production could be complemented by a plasmid harboring the wild-type gene. The toxR(Vv) mutation also showed a reversed outer membrane protein expression profile in comparison to the isogenic wild-type strain. These results demonstrate that ToxR(Vv) may regulate the virulence expression of V. vulnificus.
为了剖析创伤弧菌的毒力调控机制,我们试图在创伤弧菌中鉴定霍乱弧菌跨膜毒力调节因子toxRS(toxRS(Vc))的同源物。通过比较霍乱弧菌和副溶血性弧菌(toxRS(Vp))的toxRS序列,我们设计了一套针对保守序列的简并引物。以PCR产物作为Southern杂交的真实探针,克隆了一个1.6 kb的BglII - HindIII片段和一个1.2 kb的HindIII片段,其中包含两个完整的开放阅读框和一个部分开放阅读框,分别归因于toxR(Vv)、toxS(Vv)和htpG(Vv)。ToxR(Vv)与ToxR(Vc)和ToxR(Vp)的序列同源性分别为55.0%和63.0%。ToxS(Vv)与ToxS(Vc)和ToxS(Vp)的同源性分别为71.5%和65.7%。ToxRS(Vv)的氨基酸序列显示出与ToxRS(Vc)和ToxRS(Vp)中观察到的类似的跨膜和活性结构域。蛋白质免疫印迹分析证明ToxR(Vv)在创伤弧菌中表达。在大肠杆菌背景下,ToxRS(Vv)使创伤弧菌溶血素基因(vvhA)的表达增强了五倍。ToxRS(Vv)还激活了整合到大肠杆菌染色体中的ToxR(Vc)调控的ctx启动子。toxR(Vv)缺失突变降低了溶血素的产生。溶血素产生的缺陷可以由携带野生型基因的质粒互补。与同基因野生型菌株相比,toxR(Vv)突变体还显示出外膜蛋白表达谱的逆转。这些结果表明ToxR(Vv)可能调节创伤弧菌的毒力表达。