Virlogeux I, Waxin H, Ecobichon C, Popoff M Y
Institut Pasteur, Unité des Entérobacteries, Unité INSERM 389, Paris, France.
Microbiology (Reading). 1995 Dec;141 ( Pt 12):3039-47. doi: 10.1099/13500872-141-12-3039.
The Vi antigen is a capsular polysaccharide expressed by Salmonella typhi, the agent of human typhoid fever. Expression of this antigen is controlled by the viaA and viaB chromosomal loci. The viaB locus is composed of 11 genes designated tviA-tviE (typhi Vi), vexA-vexE (Vi antigen export) and ORF11. We constructed S. typhi Ty2 strains carrying non-polar mutations in ten genes located at the viaB locus and examined the individual contribution of each gene to Vi phenotype. Phenotypes of the mutants and complementation experiments suggested that synthesis of Vi antigen monomer was catalysed by the TviB and TviC polypeptides. Subsequent polymerization of the polysaccharide might be catalysed by the TviE protein, but required functional TviD product. Proteins encoded by vexA, vexB and vexC directed transport of the polymer to the bacterial cell surface. Anchoring of the Vi antigen at the bacterial cell surface was dependent of the VexE protein. The TviA protein was not essential for Vi polymer synthesis. However, disruption of the tviA gene on S. typhi Ty2 chromosome strongly decreased expression of Vi antigen. This defect was fully complemented by providing tviA in trans on a recombinant plasmid. By using lacZ transcriptional fusions, it was shown that the TviA product positively regulated co-transcription of the tviA and tviB genes from a promoter located upstream of tviA. Moreover, we showed that a tviAB-lacZ fusion was not expressed in a viaA (rcsB) mutant of S. typhi.(ABSTRACT TRUNCATED AT 250 WORDS)
Vi抗原是由人类伤寒热病原体伤寒沙门氏菌表达的一种荚膜多糖。该抗原的表达受viaA和viaB染色体位点控制。viaB位点由11个基因组成,分别命名为tviA - tviE(伤寒Vi)、vexA - vexe(Vi抗原输出)和ORF11。我们构建了携带位于viaB位点的10个基因非极性突变的伤寒沙门氏菌Ty2菌株,并研究了每个基因对Vi表型的单独贡献。突变体的表型和互补实验表明,Vi抗原单体的合成由TviB和TviC多肽催化。多糖的后续聚合可能由TviE蛋白催化,但需要功能性的TviD产物。vexA、vexB和vexC编码的蛋白将聚合物转运至细菌细胞表面。Vi抗原在细菌细胞表面的锚定依赖于VexE蛋白。TviA蛋白对于Vi聚合物的合成并非必需。然而,伤寒沙门氏菌Ty2染色体上tviA基因的破坏会强烈降低Vi抗原的表达。通过在重组质粒上反式提供tviA,这种缺陷得到了完全互补。通过使用lacZ转录融合,表明TviA产物从位于tviA上游的启动子正向调节tviA和tviB基因的共转录。此外,我们表明tviAB - lacZ融合在伤寒沙门氏菌的viaA(rcsB)突变体中不表达。(摘要截短于250字)