Bhattacharyya L, Haraldsson M, Sharon N, Lis H, Brewer F
Department of Molecular Pharmacology, Albert Einstein College of Medicine, Bronx, New York 10461.
Glycoconj J. 1989;6(1):141-50. doi: 10.1007/BF01047896.
Erythrina lectins possess similar structural and carbohydrate binding properties. Recently, tri- and tetra-antennary complex type carbohydrates with non-reducing terminal galactose residues have been shown to be precipitated as tri- and tetravalent ligands, respectively, with certain Erythrina lectins [Bhattacharyya L, Haraldsson M, Brewer CF (1988) Biochemistry 27:1034-41]. The present work describes a comparative study of the binding and precipitating activities of four Erythrina lectins, viz., E. corallodendron, E. cristagalli, E. flabelliformis, and E. indica, with multi-antennary complex type carbohydrates and synthetic cluster glycosides. The results show that though their binding affinities are very similar, the Erythrina lectins show large differences in their precipitating activities with the carbohydrates. The results also indicate significant dependence of the precipitating activities of the lectins on the core structure of the carbohydrates. These findings provide a new dimension to the structure-activity relationship of the lectins and their interactions with asparagine-linked carbohydrates.
刺桐凝集素具有相似的结构和碳水化合物结合特性。最近,已证明具有非还原末端半乳糖残基的三触角和四触角复合型碳水化合物分别作为三价和四价配体,与某些刺桐凝集素发生沉淀反应[Bhattacharyya L, Haraldsson M, Brewer CF (1988) Biochemistry 27:1034 - 41]。本研究描述了四种刺桐凝集素,即珊瑚刺桐、鸡冠刺桐、扇叶刺桐和印度刺桐,与多触角复合型碳水化合物和合成簇糖苷的结合及沉淀活性的比较研究。结果表明,尽管它们的结合亲和力非常相似,但刺桐凝集素与碳水化合物的沉淀活性存在很大差异。结果还表明,凝集素的沉淀活性显著依赖于碳水化合物的核心结构。这些发现为凝集素的构效关系及其与天冬酰胺连接的碳水化合物的相互作用提供了新的维度。