Langston-Unkefer P J, Gade W
United States Department of Agriculture, Agricultural Research Service, University of Wisconsin, Madison, Wisconsin 53706.
Plant Physiol. 1984 Mar;74(3):675-80. doi: 10.1104/pp.74.3.675.
The primary storage protein of oat (Avena sativa L.) seeds, globulin, was shown to have a specific carbohydrate-binding activity. The globulin was capable of hemagglutinating rabbit red blood cells and this hemagglutination was inhibited by the beta-glucan, laminarin, as well as by carbohydrate which had been cleaved from the native globulin. Globulin with carbohydrate-binding activity was isolated from cell wall preparations and from defatted flour. The lectin activity apparently resides in the alpha-subunit of the globulin and has affinity for the carbohydrate which is O-glycosidically linked to the globulin. A portion of this carbohydrate is attached to the beta-subunit. Two affinity columns were synthesized utilizing laminarin and the carbohydrate from the native globulin as ligands. The hemagglutinating activity bound to both of these columns. The activity was specifically eluted from the globulin-carbohydrate affinity column with carbohydrate cleaved from native globulin by an alkali-catalyzed beta-elimination. The possible roles of this unique self-binding capacity are discussed.
燕麦(Avena sativa L.)种子的主要贮藏蛋白球蛋白具有特定的碳水化合物结合活性。该球蛋白能够凝集兔红细胞,且这种凝集作用受到β-葡聚糖、海带多糖以及从天然球蛋白上裂解下来的碳水化合物的抑制。具有碳水化合物结合活性的球蛋白是从细胞壁制剂和脱脂面粉中分离出来的。凝集素活性显然存在于球蛋白的α亚基中,并且对以O-糖苷键与球蛋白相连的碳水化合物具有亲和力。这种碳水化合物的一部分连接到β亚基上。利用海带多糖和天然球蛋白中的碳水化合物作为配体合成了两个亲和柱。凝集活性与这两个柱子都结合。通过碱催化的β-消除反应从天然球蛋白上裂解下来的碳水化合物可特异性地从球蛋白-碳水化合物亲和柱上洗脱该活性。文中讨论了这种独特的自我结合能力的可能作用。