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Type 3 fimbriae, encoded by the conjugative plasmid pOLA52, enhance biofilm formation and transfer frequencies in Enterobacteriaceae strains

机译:型3 FIMBRIAE,由共轭质粒POLA52编码,增强生物膜形成和肠杆菌菌株的转移频率

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The conjugative plasmid pOLA52, which confers resistance to olaquindox and other antimicrobial agents through a multidrug efflux pump, was investigated for its ability to promote biofilm formation in Escherichia coli. Screening of a transposon-mutagenized pOLA52 clone library revealed several biofilm-deficient mutants, which all mapped within a putative operon with high homology to the mrkABCDF operon of Klebsiella pneumoniae, where these genes are responsible for type 3 fimbriae expression, attachment to surfaces and biofilm formation. Biofilm formation in microtitre plates and in urinary catheters of clones containing pOLA52 with a disrupted putative mrk operon was reduced by more than 100-fold and 2-fold, respectively, compared to mutants with an intact mrk operon. The conjugative transfer rate of pOLA52 was also significantly lower when the mrk operon was disrupted. Through reverse transcriptase analysis, it was demonstrated that the genes contained in the putative mrk operon were linked and likely to be expressed as a single operon. Immunoblotting with type 3 fimbriae (MrkA)-specific antibodies further verified expression of type 3 fimbriae. When transferred to other, potentially pathogenic, members of the family Enterobacteriaceae, including Klebsiella pneumoniae, Salmonella Typhimurium, Kluyvera sp. and Enterobacter aerogenes, pOLA52 facilitated increased biofilm formation. pOLA52 is believed to represent the first example of a conjugative plasmid encoding type 3 fimbriae, resulting in enhanced conjugation frequencies and biofilm formation of the plasmid-harbouring strain.
机译:缀合的质粒pola52,其通过多药中泵赋予Olaquindox和其他抗微生物剂的抗性,以促进大肠杆菌促进生物膜形成的能力。转座子诱变的Pola52克隆文库的筛选揭示了几种生物膜缺陷突变体,其所有突变突变体都映射到具有高同源性的推定式操纵子,到Klebsiella肺炎的MRKABCDF操纵子,其中这些基因对3型FIMBRIAE表达负责,对表面和生物膜附着形成。与具有完整的MRK操纵子的突变体相比,微辐射板和含有波拉52的克隆克隆的克隆导管中的克隆克隆的克隆导管分别减少了超过100倍,2倍。当MRK操纵子被扰乱时,POLA52的共轭转移率也显着降低。通过逆转录酶分析,证明了推定的MRK操劳中所含的基因被联系起来并可能表达为单一操纵子。免疫印迹与3型FIMBRIAE(MRKA) - 特异性抗体进一步验证了3型FIMBRIAE的表达。当转移到其他潜在的致病性,家庭肠杆菌的成员,包括Klebsiella Pneumoniae,Salmonella Typhimurium,Kluyvera SP。和肠杆菌空气,Pola52促进了生物膜形成增加。据信POLa52代表了编码3型FIMBRIAE的共轭质粒的第一实例,导致质粒宿株菌株的增强缀合频率和生物膜形成。

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