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首页> 外文期刊>Scientific reports. >Glyco-engineered cell line and computational docking studies reveals enterotoxigenic Escherichia coli CFA/I fimbriae bind to Lewis a glycans
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Glyco-engineered cell line and computational docking studies reveals enterotoxigenic Escherichia coli CFA/I fimbriae bind to Lewis a glycans

机译:糖工程改造的细胞系和计算对接研究表明,产肠毒素的大肠杆菌CFA / I菌毛与Lewis a聚糖结合

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We have previously reported clinical data to suggest that colonization factor I (CFA/I) fimbriae of enterotoxigenic Escherichia coli (ETEC) can bind to Lewis a (Lea), a glycan epitope ubiquitous in the small intestinal mucosa of young children (2 years of age), and individuals with a genetic mutation of FUT2. To further elucidate the physiological binding properties of this interaction, we engineered Chinese Hamster Ovary (CHO-K1) cells to express Lea or Leb determinants on both N- and O-glycans. We used our glyco-engineered CHO-K1 cell lines to demonstrate that CfaB, the major subunit of ETEC CFA/I fimbriae, as well as four related ETEC fimbriae, bind more to our CHO-K1 cell-line expressing Lea, compared to cells carrying Leb or the CHO-K1 wild-type glycan phenotype. Furthermore, using in-silico docking analysis, we predict up to three amino acids (Glu25, Asn27, Thr29) found in the immunoglobulin (Ig)-like groove region of CfaB of CFA/I and related fimbriae, could be important for the preferential and higher affinity binding of CFA/I fimbriae to the potentially structurally flexible Lea glycan. These findings may lead to a better molecular understanding of ETEC pathogenesis, aiding in the development of vaccines and/or anti-infection therapeutics.
机译:我们之前已经报道了临床数据,表明肠毒素性大肠杆菌(ETEC)的定居因子I(CFA / I)菌毛可以与年幼儿童小肠粘膜中普遍存在的聚糖表位Lewis a(Lea)结合。 (年龄),以及具有FUT2基因突变的个人。为了进一步阐明这种相互作用的生理学结合特性,我们对中国仓鼠卵巢(CHO-K1)细胞进行了改造,使其在N和O聚糖上均表达Lea或Leb决定簇。我们使用了糖工程化的CHO-K1细胞系来证明,与细胞相比,ETEC CFA / I菌毛的主要亚基CfaB以及四个相关的ETEC菌毛与表达CHO-K1的Lea的细胞系结合更多携带Leb或CHO-K1野生型聚糖表型。此外,使用计算机内对接分析,我们预测在CFA / I和相关菌毛的CfaB的免疫球蛋白(Ig)样凹槽区域中发现的多达三个氨基酸(Glu25,Asn27,Thr29)可能对优先以及CFA / I菌毛与潜在结构柔性Lea聚糖的亲和力更高。这些发现可能会导致对ETEC发病机理的更好的分子理解,有助于疫苗和/或抗感染治疗剂的开发。

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