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Carbohydrate-binding specificity of the daffodil (Narcissus pseudonarcissus) and amaryllis (Hippeastrum hybr.) bulb lectins

机译:碳水化合物(Narcissus pseudonarcissus)和Amaryllis(Hippeasstrum Hybr。)灯泡凝集素的碳水化合物结合特异性

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摘要

The carbohydrate binding specificity of the daffodil (Narcissus pseudonarcissus; NPA) and amaryllis (Hippeastrum hybr.; HHA) lectins, isolated from extracts of their bulbs by affinity chromatography on immobilized mannose, was studied by quantitative precipitation, sugar hapten inhibition, and affinity chromatography on the immobilized lectins. These lectins gave strong precipitation reactions with several yeast mannans, but did not precipitate with [alpha]--glucans (e.g., dextrans and glycogen). Interestingly, both lectins reacted strongly with yeast galactomannans having multiple nonreducing terminal [alpha]--galactosyl groups, a synthetic linear [alpha]-1,6-mannan, and an [alpha]-1,3-mannan (DP = 30). Treatment of the linear [alpha]-1,3-mannan with periodate, resulting in oxidation of the terminal, nonreducing mannosyl group, did not reduce its reactivity with NPA or HHA. Taken together, these observations suggest that NPA and HHA react not only with terminal but also with internal [alpha]--mannosyl residues. Sugar hapten inhibition studies showed these lectins to possess the greatest specific activity for [alpha]--mannosyl units whereas -Glc and -GlcNAc did not inhibit either lectin precipitation system. Of the oligosaccharides tested, the best inhibitor of NPA interaction was [alpha]-1,6-linked mannotriose, which was twice as good an inhibitor as Man[alpha] 1,6Man[alpha]-O-Me and 10 times better than methyl [alpha]--mannoside. On the other hand, oligosaccharides containing either 1,3- or 1,6-linked mannosyl units were good inhibitors of the HHA-mannan precipitation system (6- to 20-fold more active than -Man). These results indicate that both lectins appear to possess an extended binding site(s) complementary to at least three 1,6-linked [alpha]-mannosyl units. Various glycosylasparagine glycopeptides which contain [alpha]-1,6-Man units were retarded on the immobilized NPA column. On the other hand, those containing either [alpha]-1,3- or [alpha]-1,6-mannosyl residues were retarded on the immobilized HHA column; Man5-GlcNAc2-Asn [containing two Man[alpha] 1,3 (Man[alpha] 1,6) units] bound to the HHA column. On the contrary, glycopeptides with hybrid type glycan chains were not retarded on either column. These two new lectins which differ in their fine sugar binding specificity from each other, and also from the snowdrop lectin, should prove to be useful probes for the detection and preliminary characterization of glycoconjugates on cell surfaces and in solution.
机译:通过定量沉淀,糖化糖抑制和亲和层析研究了从其固定的甘露泡的灯泡提取物中分离的碳水化合物(Narcissus pseudonarcissus; NPA)和Amaryllis(HappeaStrum Hybr.; HHA)凝集素的碳水化合物的结合特异性在固定的章节上。这些凝集素与几种酵母甘露糖产生了强烈的沉淀反应,但没有用α-葡聚糖(例如,葡聚糖和糖原)沉淀出来。有趣的是,两个凝集素对具有多个未加入末端α-半乳糖基的酵母半乳甘露聚糖基团强烈反应,合成线性α-1,6-甘露甘露糖,以及α-1,3-甘露甘露糖(DP = 30) 。用周期处理线性α-1,3-甘露甘露植物,导致终端的氧化,未加妆甘露糖基,并未降低其与NPA或HHA的反应性。在一起,这些观察结果表明NPA和HHA不仅与末端反应而且与内部α-甘露糖基残基相反。糖醇抑制研究表明,这些凝集素具有最大的α-甘露糖基单元的特定活性,而-GLC和-GLCNAc并未抑制凝集素沉淀系统。在测试的寡糖中,NPA相互作用的最佳抑制剂是α-1,6-连接的甘露糖,其是抑制剂的两倍,作为人α1,6man[alpha] -o-Me和10倍比甲基α-甘露糖苷。另一方面,含有1,3-或1,6-连接的甘露糖基单元的低聚糖是HHA-Mannan沉淀系统的良好抑制剂(比 - 曼的6-20倍)。这些结果表明,两个凝集素似乎具有与至少三种1,6-连接的α-甲酰单元互补的延长的结合位点。在固定的NPA柱上延迟了含有α-1,6-人单元的各种糖基氨基肽糖肽。另一方面,在固定的HHA柱上延迟了含有α-1,3-或α-1,6-甘露糖基残基的那些; MAN5-GLCNAC2-ASN [含有两个人α1,3(人α1,6)单位]与HHA柱结合。相反,含有杂化型甘油链的糖肽在任一列上没有延迟。这两种新凝集素在它们的细糖结合特异性彼此不同,以及来自Snowdrop凝集素,应该证明是对细胞表面和溶液中的糖缀合物的检测和初步表征的有用探针。

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