Müsken Anne, Bielaszewska Martina, Greune Lilo, Schweppe Christian H, Müthing Johannes, Schmidt Herbert, Schmidt M Alexander, Karch Helge, Zhang Wenlan
Institute of Hygiene, University of Münster, Münster, Germany.
Appl Environ Microbiol. 2008 Feb;74(4):1087-93. doi: 10.1128/AEM.02496-07. Epub 2007 Dec 14.
The sfp gene cluster, unique to sorbitol-fermenting (SF) enterohemorrhagic Escherichia coli (EHEC) O157:NM strains, encodes fimbriae that mediate mannose-resistant hemagglutination in laboratory E. coli strains but are not expressed in wild-type SF EHEC O157:NM strains under standard laboratory conditions. We investigated whether Sfp fimbriae are expressed under conditions that mimic the intestinal environment and whether they contribute to the adherence of SF EHEC O157:NM strains to human intestinal epithelial cells. The transcription of sfpA (encoding the major fimbrial subunit) was upregulated in all strains investigated, and all expressed SfpA and possessed fimbriae that reacted with an anti-SfpA antibody when the strains were grown on solid media under anaerobic conditions. Sfp expression was absent under aerobic conditions and in liquid media. Sfp upregulation under anaerobic conditions was significantly higher on blood agar and a medium simulating the colonic environment than on a medium simulating the ileal environment (P < 0.05). The induction of Sfp fimbriae in SF E. coli O157:NM strains correlates with increased adherence to Caco-2 and HCT-8 cells. Our data indicate that the expression of Sfp fimbriae in SF E. coli O157:NM strains is induced under conditions resembling those of the natural site of infection and that Sfp fimbriae may contribute to the adherence of the organisms to human intestinal epithelium.
sfp基因簇是发酵山梨醇(SF)的肠出血性大肠杆菌(EHEC)O157:NM菌株所特有的,它编码的菌毛可介导实验室大肠杆菌菌株中的甘露糖抗性血凝反应,但在标准实验室条件下,野生型SF EHEC O157:NM菌株中不表达。我们研究了Sfp菌毛在模拟肠道环境的条件下是否表达,以及它们是否有助于SF EHEC O157:NM菌株黏附于人肠道上皮细胞。在所研究的所有菌株中,sfpA(编码主要菌毛亚基)的转录均上调,并且当这些菌株在厌氧条件下于固体培养基上生长时,所有菌株均表达SfpA并拥有与抗SfpA抗体发生反应的菌毛。在需氧条件下和液体培养基中未检测到Sfp表达。在厌氧条件下,血琼脂和模拟结肠环境的培养基上Sfp的上调显著高于模拟回肠环境的培养基(P < 0.05)。SF E. coli O157:NM菌株中Sfp菌毛的诱导与对Caco-2和HCT-8细胞黏附增加相关。我们的数据表明,SF E. coli O157:NM菌株中Sfp菌毛的表达在类似于自然感染部位的条件下被诱导,并且Sfp菌毛可能有助于该菌黏附于人肠道上皮。