Baldus S E, Thiele J, Park Y O, Hanisch F G, Bara J, Fischer R
Institute of Pathology, University of Cologne, Germany.
Glycoconj J. 1996 Aug;13(4):585-90. doi: 10.1007/BF00731446.
Using immunochemical and immunohistochemical methods, the binding site of Anguilla anguilla agglutinin (AAA) was characterized and compared with the related fucose-specific lectin from Ulex europaeus (UEA-I). In solid-phase enzyme-linked immunoassays, the two lectins recognized Fuc alpha 1-2Gal beta-HSA. AAA additionally cross-reacted with neoglycolipids bearing lacto-N-fucopentaose (LNFP) I [H type 1] and II [Le(a)] and lactodifucotetraose (LDFT) as glycan moieties. UEA-I, on the other hand, bound to a LDFT-derived neoglycolipid but not to the other neoglycolipids tested. Binding of AAA to gastric mucin was competitively neutralized by Le(a)-specific monoclonal antibodies. UEA-I binding, on the other hand, was reduced after co-incubation with H type 2- and Le(y)-specific monoclonal antibodies. According to our results, AAA reacts with fucosylated type 1 chain antigens, whereas UEA-I binds only to the alpha 1-2-fucosylated LDFT-derived neoglycolipid. In immunohistochemical studies, the reactivity of AAA and UEA-I in normal pyloric mucosa from individuals with known Lewis and secretor status was analysed. AAA showed a broad reaction in the superficial pyloric mucosa from secretors and non-secretors, but AAA reactivity was more pronounced in Le(a+b-) individuals. On the other hand, UEA-I stained the superficial pyloric mucosa only from secretor individuals. A staining of deep mucous glands by the lectins was found in all specimens. Both reacted with most human carcinomas of different origin. Slight differences in their binding pattern were observed and may be explained by the different fine-specificities of the lectins.
采用免疫化学和免疫组织化学方法,对欧洲鳗鲡凝集素(AAA)的结合位点进行了表征,并与来自荆豆的相关岩藻糖特异性凝集素(UEA-I)进行了比较。在固相酶联免疫分析中,这两种凝集素均识别Fucα1-2Galβ-HSA。此外,AAA还与带有乳糖-N-岩藻五糖(LNFP)I [H1型]和II [Le(a)]以及乳糖二岩藻四糖(LDFT)作为聚糖部分的新糖脂发生交叉反应。另一方面,UEA-I与一种LDFT衍生的新糖脂结合,但与所测试的其他新糖脂不结合。Le(a)特异性单克隆抗体可竞争性中和AAA与胃粘蛋白的结合。另一方面,与H2型和Le(y)特异性单克隆抗体共同孵育后,UEA-I的结合减少。根据我们的结果,AAA与岩藻糖基化的1型链抗原反应,而UEA-I仅与α1-2-岩藻糖基化的LDFT衍生的新糖脂结合。在免疫组织化学研究中,分析了AAA和UEA-I在已知Lewis和分泌状态个体的正常幽门黏膜中的反应性。AAA在分泌者和非分泌者的浅表幽门黏膜中均表现出广泛反应,但在Le(a+b-)个体中AAA反应性更明显。另一方面,UEA-I仅对分泌者个体的浅表幽门黏膜进行染色。在所有标本中均发现凝集素对深部黏液腺有染色。两者均与大多数不同来源的人类癌组织发生反应。观察到它们的结合模式存在细微差异,这可能由凝集素不同的精细特异性来解释。