Hashimoto Y, Li N, Yokoyama H, Ezaki T
Department of Microbiology, Gifu University School of Medicine, Japan.
J Bacteriol. 1993 Jul;175(14):4456-65. doi: 10.1128/jb.175.14.4456-4465.1993.
Plasmid pGBM124, which contains a 14-kb Salmonella typhi chromosomal DNA fragment capable of producing the Vi antigen in Escherichia coli HB101 and ViaB-deleted S. typhi GIFU 10007-3, was studied. We determined the complete nucleotide sequence of this fragment and found 11 open reading frames. Mutagenesis, subcloning, and complementation analysis showed that three genes (vipA, vipB, and vipC) are involved in biosynthesis of the Vi polysaccharide. The putative primary amino acid sequence suggests that both vipA and vipB encode the NAD- or NADP-dependent enzymes to synthesize the nucleotide sugar for the Vi polysaccharide. Five genes (vexA, vexB, vexC, vexD, and vexE) may be involved in translocation of the Vi polysaccharide. Proteins VexA, VexB, VexC, and VexD had moderate similarities to components of group II capsule transporters, and the VexC protein had a putative ATP-binding site. These data indicate that the transport system for the Vi polysaccharide belongs to the ATP-binding cassette transporters. By using the isogenic Vi+ and Vi- strains constructed in this study, we reconfirmed that the Vi antigen is necessary for the serum resistance of S. typhi.
对质粒pGBM124进行了研究,该质粒含有一个14kb的伤寒沙门氏菌染色体DNA片段,能够在大肠杆菌HB101以及缺失Vi抗原的伤寒沙门氏菌GIFU 10007-3中产生Vi抗原。我们测定了该片段的完整核苷酸序列,发现了11个开放阅读框。诱变、亚克隆和互补分析表明,三个基因(vipA、vipB和vipC)参与Vi多糖的生物合成。推测的一级氨基酸序列表明,vipA和vipB均编码NAD或NADP依赖性酶,用于合成Vi多糖的核苷酸糖。五个基因(vexA、vexB、vexC、vexD和vexE)可能参与Vi多糖的转运。VexA、VexB、VexC和VexD蛋白与II型荚膜转运蛋白的成分有中等程度的相似性,且VexC蛋白有一个推定的ATP结合位点。这些数据表明,Vi多糖的转运系统属于ATP结合盒转运蛋白。通过使用本研究构建的同基因Vi+和Vi-菌株,我们再次证实Vi抗原对于伤寒沙门氏菌的血清抗性是必需的。