Allen H J, Johnson E A
Carbohydr Res. 1976 Aug;50(1):121-31. doi: 10.1016/s0008-6215(00)84089-6.
The ability of several D-galactose and N-acetyl-D-galactosamine-binding lectins to bind to Sepharose was investigated. Lectins from soybean, Wistaria floribunda, Bauhinia purpurea alba, and Sophora japonica could be isolated by affinity chromatography on acid-treated Sepharose 6B. These lectins would not bind to untreated Sepharose 2B, 4B, and 6B. The binding of B. purpurea alba and S. japonica was temperature-dependent. The S. japonica lectin would bind only at high pH. Ricinus communis toxin also showed a temperature-dependence of binding; acid-treated Sepharose 6B was a better affinity support for the toxin than was untreated Sepharose 4B Lectins from lima bean, Dolichos biflorus, and kidney-bean phytohemagglutinin did not bind to Sepharose under any of the conditions studied.
研究了几种与D-半乳糖和N-乙酰-D-半乳糖胺结合的凝集素与琼脂糖的结合能力。通过在酸处理的琼脂糖6B上进行亲和层析,可以分离出来自大豆、紫藤、白花羊蹄甲和槐树的凝集素。这些凝集素不会与未处理的琼脂糖2B、4B和6B结合。白花羊蹄甲和槐树凝集素的结合具有温度依赖性。槐树凝集素仅在高pH值下结合。蓖麻毒素的结合也表现出温度依赖性;酸处理的琼脂糖6B对毒素的亲和支持比未处理的琼脂糖4B更好。在任何研究条件下,来自利马豆、双花扁豆和菜豆植物血凝素的凝集素都不与琼脂糖结合。