首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Escherichia coli O157:H7 Lacking the qseBC-Encoded Quorum-Sensing System Outcompetes the Parental Strain in Colonization of Cattle Intestines
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Escherichia coli O157:H7 Lacking the qseBC-Encoded Quorum-Sensing System Outcompetes the Parental Strain in Colonization of Cattle Intestines

机译:缺少qseBC编码的群体感应系统的大肠杆菌O157:H7在牛小肠定殖方面胜过亲本菌株

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摘要

The qseBC-encoded quorum-sensing system regulates the motility of Escherichia coli O157:H7 in response to bacterial autoinducer 3 (AI-3) and the mammalian stress hormones epinephrine (E) and norepinephrine (NE). The qseC gene encodes a sensory kinase that autophosphorylates in response to AI-3, E, or NE and subsequently phosphorylates its cognate response regulator QseB. In the absence of QseC, QseB downregulates bacterial motility and virulence in animal models. In this study, we found that 8- to 10-month-old calves orally inoculated with a mixture of E. coli O157:H7 and its isogenic qseBC mutant showed significantly higher fecal shedding of the qseBC mutant. In vitro analysis revealed similar growth profiles and motilities of the qseBC mutant and the parental strain in the presence or absence of NE. The magnitudes of the response to NE and expression of flagellar genes flhD and fliC were also similar for the qseBC mutant and the parental strain. The expression of ler (a positive regulator of the locus of enterocyte effacement [LEE]), the ler-regulated espA gene, and the csgA gene (encoding curli fimbriae) was increased in the qseBC mutant compared to the parental strain. On the other hand, growth, motility, and transcription of flhD, fliC, ler, espA, and csgA were significantly reduced in the qseBC mutant complemented with a plasmid-cloned copy of the qseBC genes. Thus, in vitro motility and gene expression data indicate that the near-parental level of motility, ability to respond to NE, and enhanced expression of LEE and curli genes might in part be responsible for increased colonization and fecal shedding of the qseBC mutant in calves.
机译:qseBC编码的群体感应系统响应细菌自身诱导物3(AI-3)和哺乳动物应激激素肾上腺素(E)和去甲肾上腺素(NE)来调节大肠杆菌O157:H7的运动。 qseC基因编码一种感觉激酶,该激酶可响应AI-3,E或NE自身磷酸化,然后使其关联反应调节因子QseB磷酸化。在没有QseC的情况下,QseB下调了动物模型中的细菌运动性和毒力。在这项研究中,我们发现口服O.coli O157:H7及其同基因的qseBC突变体混合物接种的8至10个月大的犊牛表现出明显较高的qseBC突变体粪便脱落。体外分析显示,在存在或不存在NE的情况下,qseBC突变体和亲本菌株的生长特性和效用相似。对于qseBC突变体和亲本菌株,对NE的反应幅度以及鞭毛基因flhD和fliC的表达也相似。与亲本菌株相比,qseBC突变体中的ler(肠上皮细胞受损位点[LEE]的阳性调节子),受ler调节的espA基因和csgA基因(编码curli菌毛)的表达增加。另一方面, flhD fliC ler espA 和<补充有 qseBC 基因质粒克隆拷贝的 qseBC 突变体中,em> csgA 显着降低。因此,体外运动性和基因表达数据表明,近亲运动性,对NE的反应能力以及LEE和curli基因的表达增强可能部分与定居和粪便增加有关。小牛中的 qseBC 突变体脱落。

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