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基于晶体学数据对N-聚糖和O-聚糖连接构象的统计分析。

A statistical analysis of N- and O-glycan linkage conformations from crystallographic data.

作者信息

Petrescu A J, Petrescu S M, Dwek R A, Wormald M R

机构信息

Oxford Glycobiology Institute, Department of Biochemistry,University of Oxford, South Parks Road, Oxford OX1 3QU, UK.

出版信息

Glycobiology. 1999 Apr;9(4):343-52. doi: 10.1093/glycob/9.4.343.

Abstract

We have generated a database of 639 glycosidic linkage structures by an exhaustive survey of the available crystallographic data for isolated oligosaccharides, glycoproteins, and glycan-binding proteins. For isolated oligosaccharides there is relatively little crystallographic data available. A much larger number of glycoprotein and glycan-binding protein structures have now been solved in which two or more linked monosaccharides can be resolved. In the majority of these cases, only a few residues can be seen. Using the 639 glycosidic linkage structures, we have identified one or more distinct conformers for all the linkages. The O5-C1-O-C(x)' torsion angles for all these distinct conformers appear to be determined chiefly by the exo-anomeric effect. The Manalpha1-6Man linkage appears to be less restrained than the others, showing a wide degree of dispersion outside the ranges of the defined conformers. The identification of distinct conformers for glyco-sidic linkages allows "average" glycan structures to be modeled and also allows the easy identification of distorted glycosidic linkages. Such an analysis shows that the interactions between IgG Fc and its own N-linked glycan result in severe distortion of the terminal Galbeta1-4GlcNAc linkage only, indicating the strong interactions that must be present between the Gal residue and the protein surface. The applicability of this crystallographic based analysis to glycan structures in solution is discussed. This database of linkagestructures should be a very useful reference tool in three-dimensional structure determinations.

摘要

我们通过详尽研究分离出的寡糖、糖蛋白和聚糖结合蛋白的现有晶体学数据,生成了一个包含639种糖苷键结构的数据库。对于分离出的寡糖,可用的晶体学数据相对较少。现在已经解析出了大量糖蛋白和聚糖结合蛋白的结构,其中两个或更多相连的单糖可以分辨出来。在大多数情况下,只能看到少数几个残基。利用这639种糖苷键结构,我们为所有的键确定了一种或多种不同的构象。所有这些不同构象的O5-C1-O-C(x)'扭转角似乎主要由外端异头效应决定。Manα1-6Man键似乎比其他键的限制更少,在定义构象范围之外表现出很大程度的分散。糖苷键不同构象的确定使得“平均”聚糖结构得以建模,也使得扭曲的糖苷键易于识别。这样的分析表明,IgG Fc与其自身的N-连接聚糖之间的相互作用仅导致末端Galβ1-4GlcNAc键的严重扭曲,这表明Gal残基与蛋白质表面之间必然存在强烈的相互作用。本文讨论了这种基于晶体学的分析方法对溶液中聚糖结构的适用性。这个键结构数据库在三维结构测定中应该是一个非常有用的参考工具。

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