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四棱豆种子(Psophocarpus tetragonolobus (L.) DC.)中酸性凝集素的特性分析

Characterization of the acidic lectins from winged bean seed (Psophocarpus tetragonolobus(L.)DC).

作者信息

Kortt A A

出版信息

Arch Biochem Biophys. 1985 Feb 1;236(2):544-54. doi: 10.1016/0003-9861(85)90657-5.

Abstract

The seeds of winged bean, Psophocarpus tetragonolobus(L.)DC, contain two distinct groups of lectins characterized by different erythrocyte hemagglutinating specificities and isoelectric points. Three acidic lectins (I, II, and III) (pI approximately 5.5) were purified to apparent homogeneity by chromatography on Ultrogel AcA44 and SP-Sephadex C-25. These lectins are glycoproteins with relative molecular mass of 54,000. The total carbohydrate content of the acidic lectins was 7% and was comprised of mannose, N-acetylglucosamine, fucose, and xylose in amounts corresponding to 9.2, 4.8, 1.6, and 7.0 mol/54,000 g, respectively. Electrophoresis in dodecyl sulfate, in the presence and absence of 2-mercaptoethanol, gave a single subunit of apparent relative molecular mass 30-32,000, somewhat higher than expected from the native relative molecular mass. On isoelectric focusing in 8 M urea the subunits of the acidic lectins did not show any significant charge heterogeneity as found for the winged bean basic lectins. The acidic lectins have very similar amino acid compositions. They contain essentially no half-cystine, 1-2 methionine residues, and are rich in acidic and hydroxy amino acids. The amino-terminal sequences of lectins II and III were identical while the amino-terminal sequence of lectin I contained five differences in the first 25 residues; the acidic lectins showed extensive sequence homology with the winged bean basic lectins, the other one-chain subunit lectins and the beta subunit of the two-chain subunit legume lectins. The acidic lectins agglutinated trypsinized human (type A, B, AB, and O) erythrocytes but not trypsinized rabbit erythrocytes. They were inhibited by various D-galactose derivatives and D-galactose-containing disaccharides and trisaccharides. N-Acetylgalactosamine was the best inhibitor, and the specificity appears to be directed to beta-D-galactosides. However, compared with winged bean basic lectins and soybean lectin, the winged bean acidic lectins show a low affinity for the inhibitory sugars.

摘要

四棱豆(Psophocarpus tetragonolobus (L.) DC)种子含有两类不同的凝集素,其特点是具有不同的红细胞血凝特异性和等电点。通过在Ultrogel AcA44和SP-Sephadex C-25上进行层析,三种酸性凝集素(I、II和III)(pI约为5.5)被纯化至表观均一。这些凝集素是糖蛋白,相对分子质量为54,000。酸性凝集素的总碳水化合物含量为7%,由甘露糖、N-乙酰葡糖胺、岩藻糖和木糖组成,其含量分别相当于9.2、4.8、1.6和7.0 mol/54,000 g。在有无2-巯基乙醇存在的情况下进行十二烷基硫酸盐电泳,得到一个表观相对分子质量为30 - 32,000的单一亚基,略高于根据天然相对分子质量预期的值。在8 M尿素中进行等电聚焦时,酸性凝集素的亚基未表现出如四棱豆碱性凝集素那样明显的电荷不均一性。酸性凝集素具有非常相似的氨基酸组成。它们基本不含半胱氨酸,有1 - 2个甲硫氨酸残基,且富含酸性和羟基氨基酸。凝集素II和III的氨基末端序列相同,而凝集素I的氨基末端序列在前25个残基中有五个差异;酸性凝集素与四棱豆碱性凝集素、其他单链亚基凝集素以及双链亚基豆科凝集素的β亚基显示出广泛的序列同源性。酸性凝集素能凝集经胰蛋白酶处理的人(A、B、AB和O型)红细胞,但不能凝集经胰蛋白酶处理的兔红细胞。它们被各种D-半乳糖衍生物以及含D-半乳糖的二糖和三糖所抑制。N-乙酰半乳糖胺是最佳抑制剂,其特异性似乎针对β-D-半乳糖苷。然而,与四棱豆碱性凝集素和大豆凝集素相比,四棱豆酸性凝集素对抑制性糖类的亲和力较低。

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