Haataja S, Tikkanen K, Hytönen J, Finne J
Department of Medical Biochemistry, University of Turku, Finland.
Adv Exp Med Biol. 1996;408:25-34. doi: 10.1007/978-1-4613-0415-9_3.
Streptococcus suis causes septicaemia and meningitis in pigs and occasionally in humans. A major galactose-inhibitable adhesin recognizing the blood group P-related disaccharide Gal alpha 1-4 Gal beta 1--present in the GbO3 glycolipid was identified in S. suis. Two variant adhesins, inhibitable by galactose and N-acetylgalactosamine (type PN) or galactose only (type Po) both preferred the disaccharide in terminal position. The hydrogen bonding patterns were determined using deoxy and other derivatives of the receptor disaccharide, and were compared to that of E. coli PapG396 adhesin. The essential hydroxyls were the HO-4', HO-6', HO-2 and HO-3 hydroxyls; type Po adhesin also weakly interacted with HO-6 and HO-3'. The mechanism differed from that of E. coli which binds to a cluster of five hydroxyls, HO-6, HO-2', HO-3', HO-4' and HO-6'. The purified adhesin had a molecular weight of 18 kDa and an isoelectric point of 6.4. The agglutination of latex-bound purified adhesin was inhibited by the same inhibitors as agglutination with whole bacteria. The adhesin was detected by immunoblot analysis in all 23 S. suis strains examined representing different serotypes, was highly immunogenic and showed opsonizing activity. This represents the first example of the comparison of the saccharide receptor hydrogen bondings of two bacteria of different origin and shows that the same saccharide may be recognised by two different mechanisms. As a potential virulence factor present in different serotypes the adhesin represents a potential vaccine against S. suis infections.
猪链球菌可引起猪的败血症和脑膜炎,偶尔也会感染人类。在猪链球菌中鉴定出一种主要的半乳糖抑制性粘附素,它能识别存在于GbO3糖脂中的与血型P相关的二糖Galα1-4Galβ1-。两种变体粘附素,一种可被半乳糖和N-乙酰半乳糖胺抑制(PN型),另一种仅被半乳糖抑制(Po型),它们都优先结合末端的二糖。使用受体二糖的脱氧和其他衍生物确定了氢键模式,并与大肠杆菌PapG396粘附素的氢键模式进行了比较。必需的羟基是HO-4'、HO-6'、HO-2和HO-3羟基;Po型粘附素也与HO-6和HO-3'有弱相互作用。其机制与大肠杆菌不同,大肠杆菌与一组五个羟基HO-6、HO-2'、HO-3'、HO-4'和HO-6'结合。纯化后的粘附素分子量为18 kDa,等电点为6.4。与全菌凝集一样,乳胶结合的纯化粘附素的凝集也受到相同抑制剂的抑制。通过免疫印迹分析在所有检测的23株代表不同血清型的猪链球菌菌株中都检测到了这种粘附素,它具有高度免疫原性并表现出调理活性。这是不同来源的两种细菌糖受体氢键比较的首个实例,表明相同的糖类可能通过两种不同机制被识别。作为不同血清型中存在的潜在毒力因子,这种粘附素代表了一种针对猪链球菌感染的潜在疫苗。