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Characterization of the Binding Specificity of K88ac and K88ad Fimbriae of Enterotoxigenic Escherichia coli by Constructing K88ac/K88ad Chimeric FaeG Major Subunits▿

机译:通过构建K88ac / K88ad嵌合FaeG主要亚基来表征产肠毒素大肠杆菌的K88ac和K88ad菌毛的结合特异性▿

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摘要

Enterotoxigenic Escherichia coli (ETEC) strains expressing K88 (F4) fimbriae are the major cause of diarrhea in young pigs. Three antigenic variants of K88 fimbriae (K88ab, K88ac, and K88ad) have been identified among porcine ETEC strains. Each K88 fimbrial variant shows a unique pattern in binding to different receptors on porcine enterocytes. Such variant specificity in fimbrial binding is believed to be controlled by the major subunit (FaeG) of the K88 fimbriae, because the genes coding for the only other fimbrial subunit are identical among the three variants. Uniqueness in binding to host receptors may be responsible for differences in the virulence levels of porcine diarrhea disease caused by K88 ETEC strains. To better understand the relationships between the structure of FaeG proteins and fimbrial binding function, and perhaps virulence in disease, we constructed and expressed various K88ac/K88ad faeG gene chimeras and characterized the binding activity of each K88 chimeric fimbria. After verifying biosynthesis of the chimeric fimbriae, we examined their binding specificities in bacterial adherence assays by using porcine brush border vesicles that are specific to either the K88ac or K88ad fimbria. Results showed that each fimbria switched binding specificity to that of the reciprocal type when a peptide comprising amino acids 125 to 163 was exchanged with that of its counterpart. Substitutions of a single amino acid within this region negatively affected the binding capacity of each fimbria. These data indicate that the peptide including amino acids 125 to 163 of the FaeG subunit is essential for K88 variant-specific binding.
机译:表达K88(F4)菌毛的产肠毒素大肠杆菌(ETEC)菌株是幼猪腹泻的主要原因。在猪ETEC菌株中已鉴定出K88菌毛的三种抗原变体(K88ab,K88ac和K88ad)。每个K88纤维变异体在与猪肠细胞上的不同受体结合时均表现出独特的模式。纤维结合中的这种变异特异性被认为是由K88菌毛的主要亚基(FaeG)控制的,因为在这三个变异中编码唯一其他纤维亚基的基因是相同的。与宿主受体结合的独特性可能是由K88 ETEC菌株引起的猪腹泻病毒力水平差异的原因。为了更好地了解FaeG蛋白的结构与纤维结合功能之间的关系,以及可能与疾病的毒力之间的关系,我们构建并表达了各种K88ac / K88ad faeG基因嵌合体,并对每个K88嵌合菌毛的结合活性进行了表征。验证嵌合菌毛的生物合成后,我们通过使用对K88ac或K88ad菌毛具有特异性的猪毛刷状边缘囊泡,在细菌粘附试验中检查了它们的结合特异性。结果显示,当将包含氨基酸125至163的肽与其对应物交换时,每个菌毛都将结合特异性转换为相互的结合特异性。该区域内单个氨基酸的取代对每个菌毛的结合能力产生负面影响。这些数据表明,包含FaeG亚基的氨基酸125至163的肽对于K88变体特异性结合是必不可少的。

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