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西非吊灯树的异凝集素I-A和I-B。无金属GS I-B(4)的晶体结构以及金属结合和单糖特异性的分子基础。

Isolectins I-A and I-B of Griffonia (Bandeiraea) simplicifolia. Crystal structure of metal-free GS I-B(4) and molecular basis for metal binding and monosaccharide specificity.

作者信息

Lescar Julien, Loris Remy, Mitchell Edward, Gautier Catherine, Chazalet Valérie, Cox Veronica, Wyns Lode, Pérez Serge, Breton Christelle, Imberty Anne

机构信息

Centre de Recherches sur les Macromolécules Végétales, CNRS, Université Joseph Fourier, BP 53, F-38041 Grenoble cedex 09, France.

出版信息

J Biol Chem. 2002 Feb 22;277(8):6608-14. doi: 10.1074/jbc.M109867200. Epub 2001 Nov 19.

DOI:10.1074/jbc.M109867200
PMID:11714720
Abstract

Seeds from the African legume shrub Griffonia simplicifolia contain several lectins. Among them the tetrameric lectin GS I-B(4) has strict specificity for terminal alpha Gal residues, whereas the closely related lectin GS I-A(4) can also bind to alpha GalNAc. These two lectins are commonly used as markers in histology or for research in xenotransplantation. To elucidate the basis for the fine difference in specificity, the amino acid sequences of both lectins have been determined and show 89% identity. The crystal structure of GS I-B(4), determined at 2.5-A resolution, reveals a new quaternary structure that has never been observed in other legume lectins. An unexpected loss of both Ca(2+) and Mn(2+) ions, which are necessary for carbohydrate binding in legume lectins, may be related to a particular amino acid sequence Pro-Glu-Pro in the metal binding loop. Comparison with demetallized concanavalin A reveals a different process for the loss of metal ions and for the subsequent loss of carbohydrate binding activity. The GS I-A x alpha GalNAc and GS I-B x alpha Gal complexes were constructed using homology modeling and docking approaches. The unusual presence of an aromatic amino acid at position 47 (Tyr in I-A and Trp in I-B) explains the strong preference for alpha-anomeric sugars in both isolectins. Alteration at one amino acid position, Ala(106) in I-A versus Glu(106) in I-B, is the basis for the observed specificities toward alpha GalNAc and alpha Gal.

摘要

非洲豆科灌木西非狮子尾的种子含有多种凝集素。其中,四聚体凝集素GS I-B(4)对末端α-半乳糖残基具有严格的特异性,而与之密切相关的凝集素GS I-A(4)也能与α- N -乙酰半乳糖胺结合。这两种凝集素通常用作组织学标记物或用于异种移植研究。为了阐明特异性细微差异的基础,已确定了两种凝集素的氨基酸序列,它们的同源性为89%。以2.5埃分辨率测定的GS I-B(4)晶体结构揭示了一种在其他豆科凝集素中从未观察到的新四级结构。豆科凝集素中碳水化合物结合所必需的Ca(2+)和Mn(2+)离子意外缺失,可能与金属结合环中特定的氨基酸序列脯氨酸-谷氨酸-脯氨酸有关。与去金属化的伴刀豆球蛋白A比较,揭示了金属离子丢失及随后碳水化合物结合活性丧失的不同过程。利用同源建模和对接方法构建了GS I-A xα- N -乙酰半乳糖胺和GS I-B xα-半乳糖复合物。47位存在芳香族氨基酸(I-A中为酪氨酸,I-B中为色氨酸)的异常情况解释了两种同工凝集素对α-异头糖的强烈偏好。I-A中的丙氨酸(106)与I-B中的谷氨酸(106)在一个氨基酸位置上的改变,是观察到的对α- N -乙酰半乳糖胺和α-半乳糖特异性的基础。

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