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Some properties of the lectin from Datura stramonium (thorn-apple) and the nature of its glycoprotein linkages

机译:曼陀罗(刺苹果)凝集素的某些性质及其糖蛋白键的性质

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摘要

The lectin from Datura stramonium (thorn-apple; Solanaceae) has been purified by affinity chromatography and shown to be a glycoprotein containing about 40% (w/w) of carbohydrate. The most abundant amino acids are hydroxyproline, cystine, glycine and serine. Results obtained by gel filtration in 6m-guanidinium chloride on Sepharose 4B suggest that it has a subunit mol.wt. of about 30000 and that it probably associates into dimers. The lectin is inhibited specifically by chitin oligosaccharides and bacterial-cell-wall oligosaccharides, but only weakly by N-acetylglucosamine. Glycopeptides from soya-bean (Glycine max) lectin and fetuin are also strong inhibitors of Datura lectin, indicating that it interacts with internal N-acetylglucosamine residues. Its specificity is similar to, but not identical with, that of potato (Solanum tuberosum) lectin. After prolonged proteolytic digestion of reduced and S-carboxymethylated or S-aminoethylated derivatives of the lectin, glycopeptides of mol.wt. of about 18000 were isolated. The glycopeptides contained all the carbohydrate and hydroxyproline of the original glycoprotein, and lesser amounts of serine, S-carboxymethylcysteine and other amino acids. The arabinose residues of the glycoprotein are present as β-l-arabinofuranosides linked to the polypeptide chain through the hydroxyproline residues, and can be removed by mild acid treatment; the ratio of arabinose to hydroxyproline is 3.4:1. Some of the serine residues of the polypeptide chain are substituted with one or two α-galactopyranoside residues, most of which can be removed by the action of α-galactosidase. The galactose residues are more easily removed from the acid-treated glycopeptide (from which arabinose has been removed) than from the complete glycopeptide, indicating a steric hindrance of the galactosidase action by the adjacent chains of arabinosides. There is a slow release of galactose residues by a process of β-elimination in 0.5m-NaOH (pH13.7) from the complete glycopeptide, and a fairly rapid release of galactose by this process from the acid-treated glycopeptide, which lacks arabinose. This is probably due to the inhibitory effect of the negative charge on the adjacent arabinofuranoside residues. The similarities and differences between the lectins from Datura and potato are discussed, as are their structural resemblance to glycopeptides that have been isolated from plant cell walls.
机译:来自曼陀罗(Saturaceapple;茄科)的凝集素已通过亲和色谱法纯化,并显示为一种糖蛋白,含有约40%(w / w)的碳水化合物。最丰富的氨基酸是羟脯氨酸,胱氨酸,甘氨酸和丝氨酸。通过在Sepharose 4B上的6m氯化胍中进行凝胶过滤获得的结果表明,它具有mol.wt的亚基。大约30000,可能与二聚体有关。凝集素被几丁质寡糖和细菌细胞壁寡糖特异性抑制,但仅被N-乙酰氨基葡糖抑制。大豆凝集素和胎球蛋白的糖肽也是曼陀罗凝集素的强抑制剂,表明它与内部N-乙酰氨基葡萄糖残基相互作用。它的特异性与马铃薯(Solanum tuberosum)凝集素相似,但不完全相同。在对凝集素的还原的和S-羧甲基化或S-氨基乙基化的衍生物进行长时间的蛋白水解消化后,得到了分子量为mol.wt的糖肽。隔离了大约18000个。糖肽包含原始糖蛋白的所有碳水化合物和羟脯氨酸,以及较少量的丝氨酸,S-羧甲基半胱氨酸和其他氨基酸。糖蛋白的阿拉伯糖残基以β-1-阿拉伯呋喃糖苷的形式通过羟基脯氨酸残基连接到多肽链上,可以通过温和的酸处理除去。阿拉伯糖与羟脯氨酸的比例为3.4:1。多肽链的一些丝氨酸残基被一个或两个α-半乳糖吡喃糖苷残基取代,其中大多数可以通过α-半乳糖苷酶的作用除去。与从完整的糖肽相比,从酸处理的糖肽(已除去阿拉伯糖)中更容易除去半乳糖残基,这表明阿拉伯糖苷的相邻链对半乳糖苷酶作用的空间位阻。通过在完全糖肽中的0.5m-NaOH(pH13.7)中进行β消除过程,半乳糖残基释放缓慢,并且通过此过程从缺乏阿拉伯糖的酸处理糖肽中相当快地释放出半乳糖。 。这可能是由于负电荷对相邻的阿拉伯呋喃糖苷残基的抑制作用。讨论了曼陀罗和马铃薯中的凝集素之间的异同,以及它们与从植物细胞壁分离出的糖肽的结构相似性。

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