Naeem Aabgeena, Haque Shabirul, Khan Rizwan Hasan
Interdisciplinary Biotechnology Unit, Aligarh Muslim University, Aligarh, 202 002, India.
Protein J. 2007 Sep;26(6):403-13. doi: 10.1007/s10930-007-9080-5.
A lectin present in seeds of Clitoria ternatea agglutinated trypsin-treated human B erythrocytes. The sugar specificity assay indicated that lectin belongs to Gal/Gal NAc-specific group. Hence the lectin, designated C. ternatea agglutinin (CTA), was purified by the combination of acetic acid precipitation, salt fractionation and affinity chromatography. HPLC gel filtration, SDS-polyacrylamide gel electrophoresis and mass spectrometry indicated that the native lectin is composed of two identical subunits of molecular weight 34.7 kDa associated by non covalent bonds. The N-terminal sequence of CTA shared homology with Glycine max and Pisum sativum. Complete sequence was also found to be homologous to S-64 protein of Glycine max, suggesting that CTA probably exhibits both hemagglutination and probably sugar uptake activity. The carbohydrate binding specificity of the lectin was investigated by quantitative turbidity measurements, and percent inhibition assays. Based on these assays, we conclude that CTA binds beta-D: -galactosides, and also may has an extended specificity towards non-reducing terminal Neu5Acalpha2,6Gal.
蝶豆种子中存在的一种凝集素能凝集经胰蛋白酶处理的人B型红细胞。糖特异性分析表明该凝集素属于半乳糖/ N -乙酰半乳糖特异性组。因此,将这种凝集素命名为蝶豆凝集素(CTA),通过乙酸沉淀、盐分级分离和亲和层析相结合的方法进行纯化。高效液相色谱凝胶过滤、十二烷基硫酸钠-聚丙烯酰胺凝胶电泳和质谱分析表明,天然凝集素由两个分子量为34.7 kDa的相同亚基通过非共价键结合而成。CTA的N端序列与大豆和豌豆具有同源性。完整序列也被发现与大豆的S - 64蛋白同源,这表明CTA可能既具有血凝活性,也可能具有糖摄取活性。通过定量比浊测量和抑制率分析研究了该凝集素的碳水化合物结合特异性。基于这些分析,我们得出结论,CTA结合β - D -半乳糖苷,并且可能对非还原末端的Neu5Acα2,6Gal具有扩展特异性。