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Autotransporters but not pAA are critical for rabbit colonization by Shiga toxin-producing Escherichia coli O104:H4.

机译:自身转运蛋白而非pAA对于产生志贺毒素的大肠杆菌O104:H4的兔定植至关重要。

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摘要

The outbreak of diarrhoea and haemolytic uraemic syndrome that occurred in Germany in 2011 was caused by a Shiga toxin-producing enteroaggregative Escherichia coli (EAEC) strain. The strain was classified as EAEC owing to the presence of a plasmid (pAA) that mediates a characteristic pattern of aggregative adherence on cultured cells, the defining feature of EAEC that has classically been associated with virulence. Here we describe an infant rabbit-based model of intestinal colonization and diarrhoea caused by the outbreak strain, which we use to decipher the factors that mediate the pathogen's virulence. Shiga toxin is the key factor required for diarrhoea. Unexpectedly, we observe that pAA is dispensable for intestinal colonization and development of intestinal pathology. Instead, chromosome-encoded autotransporters are critical for robust colonization and diarrhoeal disease in this model. Our findings suggest that conventional wisdom linking aggregative adherence to EAEC intestinal colonization is false for at least a subset of strains.
机译:2011年在德国爆发的腹泻和溶血性尿毒症综合征是由产生志贺毒素的肠聚合性大肠杆菌(EAEC)菌株引起的。该菌株归因于质粒(pAA)的存在而被归类为EAEC,该质粒介导了在培养细胞上聚集粘附的特征模式,这是EAEC的典型特征,通常与毒力有关。在这里,我们描述了由爆发菌株引起的基于肠道兔的肠道定植和腹泻模型,我们用它来解释介导病原体毒力的因素。志贺毒素是腹泻的关键因素。出乎意料的是,我们观察到pAA对于肠道菌落和肠道病理的发展是必不可少的。相反,在此模型中,染色体编码的自转运蛋白对于稳固的定植和腹泻病至关重要。我们的发现表明,至少在一部分菌株中,将总体依从性与EAEC肠道定植联系起来的传统观点是错误的。

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