Brunder W, Khan A S, Hacker J, Karch H
Institut für Hygiene und Mikrobiologie der Universität Würzburg, D-97080 Würzburg, Germany.
Infect Immun. 2001 Jul;69(7):4447-57. doi: 10.1128/IAI.69.7.4447-4457.2001.
Sorbitol-fermenting (SF) enterohemorrhagic Escherichia coli (EHEC) O157:H(-) have emerged as important causes of diarrheal diseases and the hemolytic-uremic syndrome in Germany. In this study, we characterized a 32-kb fragment of the plasmid of SF EHEC O157:H(-), pSFO157, which differs markedly from plasmid pO157 of classical non-sorbitol-fermenting EHEC O157:H7. We found a cluster of six genes, termed sfpA, sfpH, sfpC, sfpD, sfpJ, and sfpG, which mediate mannose-resistant hemagglutination and the expression of fimbriae. sfp genes are similar to the pap genes, encoding P-fimbriae of uropathogenic E. coli, but the sfp cluster lacks homologues of genes encoding subunits of a tip fibrillum as well as regulatory genes. The major pilin, SfpA, despite its similarity to PapA, does not cluster together with known PapA alleles in a phylogenetic tree but is structurally related to the PmpA pilin of Proteus mirabilis. The putative adhesin gene sfpG, responsible for the hemagglutination phenotype, shows significant homology neither to papG nor to other known sequences. Sfp fimbriae are 3 to 5 nm in diameter, in contrast to P-fimbriae, which are 7 nm in diameter. PCR analyses showed that the sfp gene cluster is a characteristic of SF EHEC O157:H(-) strains and is not present in other EHEC isolates, diarrheagenic E. coli, or other Enterobacteriaceae. The sfp gene cluster is flanked by two blocks of insertion sequences and an origin of plasmid replication, indicating that horizontal gene transfer may have contributed to the presence of Sfp fimbriae in SF EHEC O157:H(-).
在德国,能发酵山梨醇(SF)的肠出血性大肠杆菌(EHEC)O157:H(-)已成为腹泻病和溶血尿毒综合征的重要病因。在本研究中,我们对SF EHEC O157:H(-)的质粒pSFO157的一个32 kb片段进行了特征分析,该片段与经典的非山梨醇发酵EHEC O157:H7的质粒pO157明显不同。我们发现了一组六个基因,称为sfpA、sfpH、sfpC、sfpD、sfpJ和sfpG,它们介导甘露糖抗性血凝和菌毛的表达。sfp基因与编码尿路致病性大肠杆菌P菌毛的pap基因相似,但sfp基因簇缺乏编码顶端纤丝亚基的基因以及调控基因的同源物。主要菌毛蛋白SfpA尽管与PapA相似,但在系统发育树中并不与已知的PapA等位基因聚集在一起,而是在结构上与奇异变形杆菌的PmpA菌毛蛋白相关。负责血凝表型的假定粘附素基因sfpG与papG或其他已知序列均无显著同源性。与直径为7 nm的P菌毛不同,Sfp菌毛直径为3至5 nm。PCR分析表明,sfp基因簇是SF EHEC O157:H(-)菌株的特征,在其他EHEC分离株、致泻性大肠杆菌或其他肠杆菌科细菌中不存在。sfp基因簇两侧是两个插入序列块和一个质粒复制起点,表明水平基因转移可能导致了Sfp菌毛在SF EHEC O157:H(-)中的存在。