首页> 外文期刊>Journal of bacteriology >Identification and characterization of a gene cluster mediating enteroaggregative Escherichia coli aggregative adherence fimbria I biogenesis.
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Identification and characterization of a gene cluster mediating enteroaggregative Escherichia coli aggregative adherence fimbria I biogenesis.

机译:鉴定和表征介导肠聚合性大肠埃希菌聚集粘附性菌毛I生物发生的基因簇。

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The aggregative pattern of adherence (AA) exhibited by enteroaggregative Escherichia coli upon HEp-2 cells is a plasmid-associated property which correlates with aggregative adherence fimbria I (AAF/I) expression and human erythrocyte hemagglutination. By using cloning and mutagenesis strategies, two noncontiguous plasmid segments (designated regions 1 and 2) required for AA expression have previously been identified in enteroaggregative E. coli 17-2. TnphoA mutagenesis was performed on clones containing region 1, and 16 TnphoA mutants which were negative for the AA phenotype were analyzed. The TnphoA insertion site for each mutant was determined by junctional DNA sequencing. All 16 mutations occurred within a 4.6-kb span in region 1. Nucleotide sequence analysis of the region revealed four contiguous open reading frames, designated aggDCBA, in the same span. AA-negative TnphoA insertions into all open reading frames except aggB were obtained. On the basis of mutational analysis and protein homology data, it is inferred that aggA, aggC, and aggD are involved in biogenesis of AAF/I, encoding a major fimbrial subunit, outer membrane usher, and periplasmic fimbrial chaperone, respectively. By immunogold electron microscopy, polyclonal antiserum raised against the aggA gene product decorated AAF/I fimbriae, affirming that AggA encodes an AAF/I subunit.
机译:肠聚集性大肠杆菌对HEp-2细胞表现出的聚集性粘附(AA)模式是一种质粒相关特性,与聚集性粘附菌毛I(AAF / I)表达和人类红细胞血凝相关。通过使用克隆和诱变策略,先前已经在肠聚集性大肠杆菌17-2中鉴定了AA表达所需的两个非连续质粒片段(指定的区域1和2)。对含有区域1的克隆进行TnphoA诱变,并分析了16种对AA表型呈阴性的TnphoA突变体。通过连接DNA测序确定每个突变体的TnphoA插入位点。所有16个突变都发生在区域1的4.6kb跨度内。对该区域的核苷酸序列分析显示,在同一跨度内有四个连续的开放阅读框,称为aggDCBA。获得了除aggB以外的所有开放阅读框中AA阴性的TnphoA插入。根据突变分析和蛋白质同源性数据,可以推断aggA,aggC和aggD参与了AAF / I的生物合成,分别编码一个主要的纤维亚基,外膜引入蛋白和周质纤维伴侣蛋白。通过免疫金电子显微镜检查,针对aggA基因产物产生的多克隆抗血清修饰了AAF / I菌毛,确认AggA编码AAF / I亚基。

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