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Impact of biofilm matrix components on interaction of commensal Escherichia coli with the gastrointestinal cell line HT-29

机译:生物膜基质成分对共生大肠杆菌与胃肠道细胞株HT-29相互作用的影响

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摘要

Commensal Escherichia coli form biofilms at body temperature by expressing the extracellular matrix components curli fimbriae and cellulose. The role of curli fimbriae and cellulose in the interaction of commensal E. coli with the intestinal epithelial cell line HT-29 was investigated. Expression of curli fimbriae by the typical commensal isolate E. coli TOB1 caused adherence and internalization of the bacteria and triggered IL-8 production in HT-29 cells. In particular, induction of IL-8 production was complex and involved curli-bound flagellin. While cellulose alone had no effect on the interaction of TOB1 with HT-29 cells, co-expression of cellulose with curli fimbriae decreased adherence to, internalization and IL-8 induction of HT-29 cells. Investigation of a panel of commensal isolates showed a partial correlation between expression of curli fimbriae and enhanced internalization and IL-8 production. In addition, a high immunostimulatory flagellin was identified. Thus, the consequences of expression of extracellular matrix components on commensal bacterial-host interactions are complex.
机译:共生大肠埃希菌在体温下通过表达细胞外基质组分卷曲菌毛和纤维素形成生物膜。研究了卷曲菌毛和纤维素在大肠杆菌与肠道上皮细胞系HT-29相互作用中的作用。典型的共生分离物大肠杆菌TOB1表达卷曲菌毛引起细菌的粘附和内在化,并触发HT-29细胞中IL-8的产生。特别地,IL-8产生的诱导是复杂的,并且涉及卷曲结合的鞭毛蛋白。虽然单独的纤维素对TOB1与HT-29细胞的相互作用没有影响,但是纤维素与卷曲菌毛的共表达降低了对HT-29细胞的粘附,内在化和IL-8诱导。对一组共生分离株的研究表明,卷曲菌毛的表达与增强的内在化和IL-8产生之间存在部分相关性。另外,鉴定出高免疫刺激性鞭毛蛋白。因此,细胞外基质成分表达对共生细菌-宿主相互作用的影响是复杂的。

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