首页> 外文OA文献 >The Glycoproteins of Plant Seeds 1: ANALYSIS BY TWO-DIMENSIONAL POLYACRYLAMIDE GEL ELECTROPHORESIS AND BY THEIR LECTIN-BINDING PROPERTIES
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The Glycoproteins of Plant Seeds 1: ANALYSIS BY TWO-DIMENSIONAL POLYACRYLAMIDE GEL ELECTROPHORESIS AND BY THEIR LECTIN-BINDING PROPERTIES

机译:植物种子中的糖蛋白1:通过二维聚丙烯酰胺凝胶电泳和其凝集素结合特性进行分析

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摘要

Protein from the jack bean, peanut, soybean and kidney bean seeds were extracted with a solution containing 9.3 molar urea, 5 millimolar K2CO3, 0.5% dithiothreitol and 2% Nonidet P-40 and then subjected to two-dimensional gel electrophoresis. After electrophoresis, the slab gels were stained with a variety of 125I-labeled lectins and the lectin-binding proteins were identified after autoradiography. Incubation of slab gels of jack bean with concanavalin A, peanut with peanut agglutinin, soybean with soybean agglutinin, and kidney bean with phytohemagglutinin showed that the majority of the polypeptides in each seed type were able to bind to their homologous lectins. Control slab gels in which incubations were carried out with identical amounts of proteins, 125I-lectin and an appropriate sugar inhibitor showed little or no lectin binding to the polypeptides. Additionally, incubation of slab gels of peanut proteins with 125I-ricin, 125I-wheat germ agglutinin, 125I-concanavalin A, and 125I-soybean agglutinin each revealed a clearly distinct binding pattern compared to the one observed with the peanut agglutinin. The results demonstrate that a large number of legume seed polypeptides are glycoproteins and that the carbohydrate groups within a seed species are heterogeneous in structure, thus indicating the existence of complex glycosylating enzyme systems in legume seeds. It is suggested that the high degree of binding between seed proteins and their homologous lectins might have some functional significance in maintaining large aggregates of protein in compact, insoluble form.
机译:用包含9.3摩尔尿素,5毫摩尔K2CO3、0.5%二硫苏糖醇和2%Nonidet P-40的溶液提取来自波豆,花生,大豆和菜豆种子的蛋白质,然后进行二维凝胶电泳。电泳后,将平板凝胶用各种125 I标记的凝集素染色,并在放射自显影后鉴定凝集素结合蛋白。菜豆与伴刀豆球蛋白A,花生与花生凝集素,大豆与大豆凝集素,以及芸豆与植物血凝素的平板凝胶温育表明,每种种子类型中的大多数多肽都能够与它们的同源凝集素结合。用相同量的蛋白质,125I-凝集素和合适的糖抑制剂进行孵育的对照平板凝胶显示出很少或没有凝集素与多肽结合。此外,将花生蛋白的平板凝胶与125I-蓖麻蛋白,125I-小麦胚芽凝集素,125I-伴刀豆球蛋白A和125I-大豆凝集素一起孵育,与花生凝集素观察到的结合模式明显不同。结果表明,大量的豆类种子多肽是糖蛋白,并且种子种类中的碳水化合物基团在结构上是异质的,因此表明豆类种子中存在复杂的糖基化酶系统。有人认为,种子蛋白与其同源凝集素之间的高度结合可能对保持蛋白的紧密,不溶形式的大聚集体具有一定的功能意义。

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