Ramphal R, Carnoy C, Fievre S, Michalski J C, Houdret N, Lamblin G, Strecker G, Roussel P
Department of Medicine, University of Florida, Gainesville 32610.
Infect Immun. 1991 Feb;59(2):700-4. doi: 10.1128/iai.59.2.700-704.1991.
The adhesion of Pseudomonas aeruginosa to type 1 (Gal beta 1-3GlcNAc) and type 2 (Gal beta 1-4GlcNAc) disaccharide determinants was studied in a microtiter adhesion assay and a thin-layer chromatography bacterial overlay assay. The oligosaccharides were prepared from human breast milk and human urine and were conjugated to hexadecylaniline to form neoglycolipids that were used in were used in the assays. Both the mucoid and the nonmucoid strains that were studied recognized the disaccharide determinants Sialylation of the oligosaccharides did not suppress binding in the thin-layer chromatography assay, but alpha 2-6-linked sialic acid blocked binding in the microtiter assay. The use of bovine serum albumin instead of gelatin as a blocking agent against nonspecific binding completely suppressed binding in the thin-layer chromatography assay. Isogenic nonpiliated mutants of nonmucoid strains constructed by interrupting the pilin gene retained their adhesive capacity for the disaccharide units, indicating that binding to the disaccharides was mediated by a nonpilus adhesin(s). Furthermore, two monoclonal antibodies that recognize the type 2 disaccharide determinant (Gal beta 1-4GlcNAc) partially inhibited adhesion of a pair of piliated and nonpiliated isogenic strains to mucin. This study suggests that P. aeruginosa utilizes a nonpilus adhesin(s) to bind to disaccharide units commonly found in mucins, in addition to pili and alginate, two previously described adhesins.
在微量滴定板黏附试验和薄层色谱细菌覆盖试验中,研究了铜绿假单胞菌对1型(Galβ1-3GlcNAc)和2型(Galβ1-4GlcNAc)二糖决定簇的黏附情况。这些寡糖是从人母乳和人尿液中制备的,并与十六烷基苯胺偶联形成新糖脂,用于上述试验。所研究的黏液型和非黏液型菌株均能识别二糖决定簇。寡糖的唾液酸化在薄层色谱试验中并未抑制结合,但α2-6连接的唾液酸在微量滴定板试验中阻断了结合。使用牛血清白蛋白而非明胶作为非特异性结合的封闭剂,在薄层色谱试验中完全抑制了结合。通过中断菌毛蛋白基因构建的非黏液型菌株的同基因无菌毛突变体,对二糖单位仍保留黏附能力,这表明与二糖的结合是由非菌毛黏附素介导的。此外,两种识别2型二糖决定簇(Galβ1-4GlcNAc)的单克隆抗体,部分抑制了一对有菌毛和无菌毛同基因菌株对黏蛋白的黏附。本研究表明,除了菌毛和藻酸盐这两种先前描述的黏附素外,铜绿假单胞菌还利用一种非菌毛黏附素与黏蛋白中常见的二糖单位结合。