首页> 外文期刊>International journal of medical microbiology: IJMM >Genetic relatedness and virulence properties of enteropathogenic Escherichia coli strains of serotype O119:H6 expressing localized adherence or localized and aggregative adherence-like patterns on HeLa cells
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Genetic relatedness and virulence properties of enteropathogenic Escherichia coli strains of serotype O119:H6 expressing localized adherence or localized and aggregative adherence-like patterns on HeLa cells

机译:O119:H6血清型肠道致病性大肠杆菌菌株在HeLa细胞上表达局部粘附或局部聚集样粘附模式的遗传相关性和毒力特性

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Enteropathogenic Escherichia coli (EPEC) induce attaching and effacing (A/E) lesions in enterocytes and produce the bundle-forming pilus (BFP) contributing to the localized adherence (LA) pattern formation on HeLa cells. Enteroaggregative E. coli (EAEC) produce aggregative adherence (AA) on HeLa cells and form prominent biofilms. The ability to produce LA or AA is an important hallmark to classify fecal E. coli isolates as EPEC or EAEC, respectively. E. coli strains of serotype O119:H6 exhibit an LA+ phenotype and have been considered as comprising a clonal group of EPEC strains. However, we have recently identified O119:H6 EPEC strains that produce LA and an AA-like pattern concurrently (LA/AA-like+). In this study, we evaluated the relatedness of three LA/AA-like+ and three LA+ O119:H6 strains by comparing their virulence and genotypic properties. We first found that the LA/AA-like+ strains induced actin accumulation in HeLa cells (indicative of A/E lesions formation) and formed biofilms on abiotic surfaces more efficiently than the LA+ strains. MLST analysis showed that the six strains all belong to the ST28 complex. All strains carried multiple plasmids, but as plasmid profiles were highly variable, this cannot be used to differentiate LA/AA-like+ and LA+ strains. We further obtained their draft genome sequences and the complete sequences of four plasmids harbored by one LA/AA-like+ strain. Analysis of these sequences and comparison with 37 fully sequenced E. coli genomes revealed that both O119:H6 groups belong to the E. coli phylogroup B2 and are very closely related with only 58-67 SNPs found between LA/AA-like+ and IA+ strains. Search of the draft sequences of the six strains for adhesion-related genes known in EAEC and other E. coil pathotypes detected no genes specifically present in LA/AA-like+ strains. Unexpectedly however, we found that a large plasmid distinct from pEAF is responsible for the AA-like phenotype of the LA/AA-like+ strains. Although we have not identified any plasmid genes specifically present in all LA/AA-like+ strains and absent in the LA+ strains, these results suggest the presence of an unknown mechanism to promote the AA-like pattern production and biofilm formation by the LA/AA-like+ strains. Because their ability to produce A/E lesions and biofilm concomitantly could exacerbate the clinical condition of the patient and lead to persistent diarrhea, the mechanism underlying the enhanced biofilm formation by the LA/AA-like+ O119:H6 strains and their spread and involvement in severe diarrheal diseases should be more intensively investigated. (C) 2016 Elsevier GmbH. All rights reserved.
机译:肠致病性大肠杆菌(EPEC)在肠上皮细胞中诱导附着和脱落(A / E)损伤,并产生束形成菌毛(BFP),有助于HeLa细胞上的局部粘附(LA)模式形成。肠聚合大肠杆菌(EAEC)在HeLa细胞上产生聚集粘附(AA),并形成突出的生物膜。产生LA或AA的能力是将粪便大肠杆菌分离株分别分类为EPEC或EAEC的重要标志。 O119:H6血清型的大肠杆菌菌株表现出LA +表型,并被认为包含EPEC菌株的克隆群。但是,我们最近确定了同时产生LA和AA样模式(LA / AA-like +)的O119:H6 EPEC菌株。在这项研究中,我们通过比较它们的毒力和基因型特性,评估了三种LA / AA-like +和三种LA + O119:H6菌株的相关性。我们首先发现,LA / AA样+菌株比HeLa +菌株更有效地诱导肌动蛋白在HeLa细胞中积累(指示A / E病变的形成)并在非生物表面上形成生物膜。 MLST分析表明这六种菌株均属于ST28复合体。所有菌株均携带多个质粒,但是由于质粒谱高度可变,因此不能用于区分LA / AA-like +和LA +菌株。我们进一步获得了它们的基因组草图序列和一个LA / AA样+株所藏的四个质粒的完整序列。对这些序列进行分析并与37个完全测序的大肠杆菌基因组进行比较后发现,两个O119:H6基团均属于大肠杆菌B2类群,并且与LA / AA-like +和IA +菌株之间仅发现58-67个SNP密切相关。在六个菌株的草稿序列中搜索与EAEC和其他大肠杆菌相关的已知粘附相关基因,没有发现在LA / AA-like +菌株中特异性存在的基因。然而,出乎意料的是,我们发现不同于pEAF的大质粒负责LA / AA样+菌株的AA样表型。尽管我们尚未鉴定出所有LA / AA-like +菌株中特有的质粒基因,而在LA +菌株中却没有,但是这些结果表明存在未知的机制来促进LA / AA产生AA-like模式并形成生物膜。 -样+菌株。由于它们同时产生A / E病变和生物膜的能力可能会加重患者的临床状况并导致持续性腹泻,因此LA / AA-like + O119:H6菌株增强生物膜形成的机制及其传播和参与严重的腹泻病应更深入地调查。 (C)2016 Elsevier GmbH。版权所有。

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