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复合型寡糖和糖肽对半乳糖特异性凝集素的沉淀作用:蓖麻(凝集素I)、刺桐、乔木刺桐、相思子(凝集素)和大豆中凝集素的研究

Precipitation of galactose-specific lectins by complex-type oligosaccharides and glycopeptides: studies with lectins from Ricinus communis (agglutinin I), Erythrina indica, Erythrina arborescens, Abrus precatorius (agglutinin), and Glycine max (soybean).

作者信息

Bhattacharyya L, Haraldsson M, Brewer C F

机构信息

Department of Molecular Pharmacology, Atran Foundation Laboratories, Albert Einstein College of Medicine, Bronx, New York 10461.

出版信息

Biochemistry. 1988 Feb 9;27(3):1034-41. doi: 10.1021/bi00403a028.

Abstract

We have recently demonstrated that certain oligomannose and bisected hybrid type glycopeptides and bisected complex type oligosaccharides are bivalent for binding to concanavalin A and can precipitate the lectin [Bhattacharyya, L., Ceccarini, C., Lorenzoni, P., & Brewer, C.F. (1987) J. Biol. Chem. 262, 1288-1293; Bhattacharyya, L., Haraldsson, M., & Brewer, C.F. (1987) J. Biol. Chem. 262, 1294-1299]. The present results show that tri- and tetraantennary complex type oligosaccharides containing nonreducing terminal galactose residues, and a related triantennary glycopeptide, precipitate the D-galactose-specific lectins from Ricinus communis (agglutinin I) (RCA-I), Erythrina indica (EIL), Erythrina arborescens (EAL), and Glycine max (soybean) (SBA). Nonbisected and bisected biantennary complex type oligosaccharides can precipitate SBA, which is a tetrameric lectin, but not RCA-I, EIL, or EAL, which are dimeric lectins. The relative affinities of the oligosaccharides and glycopeptide were determined by hemagglutination inhibition measurements and their valencies by quantitative precipitin analyses. The equivalence points of the precipitin curves indicate that the tri- and tetraantennary oligosaccharides are tri- and tetravalent, respectively, for EIL, EAL, and SBA binding. However, the oligosaccharides are all trivalent for RCA-I binding due apparently to the larger size of the monomeric subunit of the lectin. The triantennary glycopeptide was also trivalent for RCA-I and EIL binding. Biantennary oligosaccharides with adequate chain lengths were found to be bivalent for binding to SBA; those with shorter chains did not precipitate the lectin.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

我们最近已证明,某些低聚甘露糖和双叉杂合型糖肽以及双叉复合型寡糖对伴刀豆球蛋白A具有二价结合能力,并且能够使该凝集素沉淀[Bhattacharyya, L., Ceccarini, C., Lorenzoni, P., & Brewer, C.F. (1987)《生物化学杂志》262, 1288 - 1293; Bhattacharyya, L., Haraldsson, M., & Brewer, C.F. (1987)《生物化学杂志》262, 1294 - 1299]。目前的结果表明,含有非还原末端半乳糖残基的三分支和四分支复合型寡糖,以及一种相关的三分支糖肽,能沉淀来自蓖麻(凝集素I)(RCA - I)、刺桐(EIL)、乔木刺桐(EAL)和大豆(SBA)的D - 半乳糖特异性凝集素。未双叉化和双叉化的双分支复合型寡糖能沉淀作为四聚体凝集素的SBA,但不能沉淀作为二聚体凝集素的RCA - I、EIL或EAL。通过血凝抑制测量确定寡糖和糖肽的相对亲和力,并通过定量沉淀分析确定它们的价数。沉淀曲线的等价点表明,三分支和四分支寡糖分别与EIL、EAL和SBA结合时为三价和四价。然而,这些寡糖与RCA - I结合时均为三价,这显然是由于凝集素单体亚基的尺寸较大。该三分支糖肽与RCA - I和EIL结合时也为三价。发现具有足够链长的双分支寡糖与SBA结合时为二价;链较短的寡糖不能沉淀该凝集素。(摘要截短于250字)

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