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蓖麻凝集素与碳水化合物相互作用的亲和电泳研究。

Studies on Ricinus communis lectin--carbohydrate interaction by means of affinity electrophoresis.

作者信息

Lin J Y, Liu S Y

出版信息

Proc Natl Sci Counc Repub China B. 1986 Jan;10(1):1-5.

PMID:3714903
Abstract

The affinity gel electrophoresis of lectins purified from the seeds of Ricinus communis was studied. The mobilities of lectins on the gel showed various degree of retardation with their affinity toward their macromolecular ligand-agarose. Ricinus agglutinin which possessed the strongest affinity was retarded strongly, ricin C, and ricin B moderately, and ricin A, weakly. The concentrations of free moving ligand-galactose to reduce the retardation were also correlated very well with the potencies of affinities of lectins toward the ligand. The Kd values calculated from the retardations were 4.32 microM, 18.32 microM, 28.13 microM and 52.88 microM for ricinus agglutinin, ricin C, ricin B and ricin A respectively. Affinity gel electrophoresis was found to be a simple and quick method for studying the interaction of lectins with their ligands.

摘要

对从蓖麻种子中纯化的凝集素进行了亲和凝胶电泳研究。凝集素在凝胶上的迁移率因其对大分子配体琼脂糖的亲和力而呈现出不同程度的阻滞。具有最强亲和力的蓖麻凝集素被强烈阻滞,蓖麻毒素C和蓖麻毒素B阻滞程度适中,蓖麻毒素A阻滞程度较弱。用于减少阻滞的游离移动配体半乳糖的浓度也与凝集素对配体的亲和能力密切相关。根据阻滞计算得到的蓖麻凝集素、蓖麻毒素C、蓖麻毒素B和蓖麻毒素A的解离常数(Kd)值分别为4.32微摩尔、18.32微摩尔、28.13微摩尔和52.88微摩尔。亲和凝胶电泳被发现是研究凝集素与其配体相互作用的一种简单快速的方法。

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