Payne D, O'Reilly M, Williamson D
Chemical and Biological Defence Establishment, Salisbury, Wiltshire, United Kingdom.
Infect Immun. 1993 Sep;61(9):3673-7. doi: 10.1128/iai.61.9.3673-3677.1993.
The K88 fimbrial adhesin enables certain strains of enterotoxigenic Escherichia coli to adhere to the porcine small intestine. In this study, the ability of the K88 adhesin to bind to glycosphingolipids was monitored by modified enzyme-linked immunosorbent assay and thin-layer chromatography overlay binding analysis. The binding of the K88 adhesin to glycosphingolipid-coated microtiter plates was saturable, with 50% maximal binding occurring with gangliotriaosylceramide, gangliotetraosylceramide, and lactosylceramide at 67 +/- 21, 117 +/- 21, and 73 +/- 22 pM, respectively. Thin-layer chromatography overlay binding analysis demonstrated that serotype O8:K87:K88ab:H19 E. coli bound to hydroxylated galactosylceramide, gangliotriaocylceramide, gangliotetraosylceramide, and lactosylceramide but not to globotriaosylceramide, nonhydroxylated galactosylceramide, glucosides, glucosylceramide, or a mixture of ceramides. The K88 adhesin did not bind by either assay to globoside, the Forssman glycolipid, GM1, GM2, GM3, GD1a, GD2, GD3, GQ1b, or GT1b. The binding pattern observed with the K88 adhesin suggests that beta 1-linked galactosyl residues are the minimum determinant required for binding, provided they are presented correctly. It is suggested that beta 1-linked galactose residues may form the molecular basis of both glycoprotein and glycolipid receptors for the K88 fimbrial adhesin in the porcine small intestine.
K88菌毛黏附素可使某些产肠毒素大肠杆菌菌株黏附于猪的小肠。在本研究中,通过改良的酶联免疫吸附测定法和薄层层析覆盖结合分析监测K88黏附素与糖鞘脂的结合能力。K88黏附素与包被糖鞘脂的微量滴定板的结合具有饱和性,在67±21、117±21和73±22 pM时,神经节三糖神经酰胺、神经节四糖神经酰胺和乳糖神经酰胺分别出现50%的最大结合。薄层层析覆盖结合分析表明,血清型O8:K87:K88ab:H19大肠杆菌与羟基化半乳糖神经酰胺、神经节三酰神经酰胺、神经节四酰神经酰胺和乳糖神经酰胺结合,但不与异麦芽糖基神经酰胺、非羟基化半乳糖神经酰胺、糖苷、葡糖神经酰胺或神经酰胺混合物结合。通过这两种测定方法,K88黏附素均不与红细胞糖苷脂、福斯曼糖脂、GM1、GM2、GM3、GD1a、GD2、GD3、GQ1b或GT1b结合。K88黏附素观察到的结合模式表明,β1连接的半乳糖基残基是结合所需的最小决定簇,前提是它们呈现正确。有人提出,β1连接的半乳糖残基可能构成猪小肠中K88菌毛黏附素糖蛋白和糖脂受体的分子基础。