首页> 外文期刊>International journal of medical microbiology: IJMM >Characterization of a novel plasmid encoding F4-like fimbriae present in a Shiga-toxin producing enterotoxigenic Escherichia coli isolated during the investigation on a case of hemolytic-uremic syndrome
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Characterization of a novel plasmid encoding F4-like fimbriae present in a Shiga-toxin producing enterotoxigenic Escherichia coli isolated during the investigation on a case of hemolytic-uremic syndrome

机译:在溶血性血管综合征的情况下分离出滋生毒素肠毒素大肠杆菌中滋生肠毒素大肠杆菌的新型质粒的特征

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In February 2017 a case of Hemolytic-Uremic Syndrome (HUS) was reported to the National Registry of HUS in an adult living in Northern Italy. Stool specimens from the patient and his family contacts were collected and the analyses led to the isolation of a Locus of Enterocyte Effacement (LEE)-negative Shiga toxin 2 (Stx2)-producing Escherichia coll. The epidemiological investigations performed brought to collect fecal samples from the animals reared in a farm held by the case's family and a mixture of bovine and swine feces proved positive for Shiga toxin-producing E. coli (STEC) and yielded the isolation of a LEE-negative stx2-positive E. coli strain. Further characterization by whole genome sequencing led to identify the isolates as two identical O2:H27 hybrid Enterotoxigenic Shiga toxin-producing E. coli (ETEC-STEC). Sequencing of a high molecular weight plasmid present in the human isolate disclosed a peculiar plasmid harboring virulence genes characteristic for both pathotypes, including the enterohemolysin-coding gene and sta1, encoding the heat stable enterotoxin. Moreover, a complete fae locus encoding the ETEC F4 fimbriae could be identified, including a novel variant of faeG gene responsible for the production of the main structural subunit of the fimbriae. This novel faeG showed great diversity in the nucleotidic sequence when compared with the reference genes encoding the swine F4 allelic variants, whereas at the amino acid sequence level the predicted protein sequence showed some similarity with FaeG from E. coli strains of bovine origin. Further investigation on the plasmid region harboring the newly identified faeG allelic variant allowed to identify similar plasmids in NCBI sequence database, as part of the genome of other previously uncharacterized ETEC-STEC strains of bovine origin, suggesting that the novel F4-like fimbriae may play a role in bovine host specificity.
机译:2017年2月,将溶血性尿毒症综合征(HUS)的案例报告给HUS在意大利北部成年人的国家登记处。收集来自患者的粪便标本和他的家庭触点,分析导致肠细胞抑制(LEE)毒液毒素2(STX2)的轨迹分离 - 发布大肠杆菌。进行的流行病学调查带来从案件的家庭持有的农场中的动物和牛和猪粪便的混合物中收集粪便样本被证明是滋阴毒素的大肠杆菌(STEC)阳性,并产生了李的分离阴性STX2阳性大肠杆菌菌株。通过全基因组测序的进一步表征LED以鉴定为两个相同O2:H27杂交肠毒素滋生生产大肠杆菌(ETEC-STEC)的分离物。存在于人分离物中存在的高分子量质粒的测序公开了一种含有肠溶型编码基因和STA1的毒力基因的特殊质粒,包括肠溶蛋白酶编码基因和STA1,编码热稳定的肠毒素。此外,可以鉴定编码ETEC F4 FIMBRIAE的完整FAE基因座,包括负责生产FIMBRIAE的主要结构亚基的FAEG基因的新型变体。与编码猪F4等位基因变体的参考基因相比,该新颖的FAEG在核苷酸序列中显示出多样化,而在氨基酸序列水平上,预测的蛋白质序列与牛来源的大肠杆菌菌株的粪便显示出一些相似性。进一步调查含有新鉴定的FAEG等位基因变异的质粒区允许鉴定NCBI序列数据库中类似的质粒,作为牛来源的其他不具巧的ETEC-STEC菌株的基因组的一部分,表明新型F4样FIMBRIAE可能会发挥作用在牛宿主特异性中的作用。

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