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鼠李糖半乳糖醛酸聚糖II的四个寡聚片段的优选构象。

The preferred conformations of the four oligomeric fragments of Rhamnogalacturonan II.

作者信息

Mazeau K, Pérez S

机构信息

Centre de Recherches sur les Macromolécules Végétales, CNRS, Grenoble, France.

出版信息

Carbohydr Res. 1998 Oct;311(4):203-17. doi: 10.1016/s0008-6215(98)00190-6.

Abstract

Rhamnogalacturonan II (RG-II) is a structurally complex pectic mega-oligosaccharide that is released enzymatically from the primary cell wall of higher plants. RG-II contains 28 monosaccharide units (MW approximately equal to 6 KDa) which belong to 12 different families of glycosyl residues, including very unusual ones such as Kdo, Dha, aceric acid, and apiose. Eighteen different disaccharide segments can be identified, and so far the primary structure has not yet been determined. These monomeric units are arranged into four structurally well-defined oligosaccharide side chains, linked to a pectic backbone made up of 1,4-linked alpha-D-galactosyluronic acid residues. The specific attachment sites of these four side-chains on the pectic backbone remains to be elucidated. The present work presents a three-dimensional database of all the monosaccharide and disaccharide components of RG-II. The conformational behavior of D-Apif and L-AceAf monosaccharide has been assessed through computations performed with the molecular mechanics program MM3 using the flexible residue approach. For each furanosyl residue, energies of various envelope and twist conformers were systematically calculated as a function of the puckering parameters Q and phi. Energy minima are observed in both the Northern and Southern zones of the conformational wheel of each monosaccharide. As for the constituting segments, the conformational behaviour of 18 different disaccharides was evaluated using the flexible residue procedure of the MM3 molecular mechanics procedure. For each disaccharide, the adiabatic energy surface, along with the locations of the local energy minima and drawings of the conformations of each local minimum located in the energy maps have been established. The geometries of the minima and the potential energy surfaces of the different fragments were included in the database of the POLYS, a program for building oligo and polysaccharides. All these results were used for the generation, prior to a complete optimization, of the complete structure of each fragment of RG-II. It is shown that both A and B fragments are very flexible about the two sidechain glycosidic linkages which are closest to the backbone. The remaining part of the sidechain is rigid for the heavily branched A fragment, it is flexible for the more linear B fragment. The lowest energy conformer of each fragment results in good exposure of the hydroxyl groups of the apiosyl residues. Some possible implications of these features in boron complexation are presented.

摘要

鼠李半乳糖醛酸聚糖II(RG-II)是一种结构复杂的果胶巨寡糖,由高等植物的初生细胞壁经酶解释放而来。RG-II含有28个单糖单元(分子量约6 kDa),分属于12个不同的糖基残基家族,包括一些非常特殊的糖基,如Kdo、Dha、刺芹糖酸和芹糖。可识别出18种不同的二糖片段,到目前为止其一级结构尚未确定。这些单体单元排列成四个结构明确的寡糖侧链,连接到由1,4-连接的α-D-半乳糖醛酸残基组成的果胶主链上。这四个侧链在果胶主链上的具体连接位点仍有待阐明。本研究展示了RG-II所有单糖和二糖成分的三维数据库。通过使用柔性残基方法的分子力学程序MM3进行计算,评估了D-芹糖和L-乙酰化阿卓糖单糖的构象行为。对于每个呋喃糖残基,系统计算了各种信封式和扭转式构象的能量,作为褶皱参数Q和φ的函数。在每个单糖的构象轮的北部和南部区域均观察到能量最小值。至于组成片段,使用MM3分子力学程序的柔性残基方法评估了18种不同二糖的构象行为。对于每种二糖,已建立了绝热能量表面,以及局部能量最小值的位置和能量图中每个局部最小值的构象图。最小值的几何结构和不同片段的势能表面包含在POLYS(一个用于构建寡糖和多糖的程序)的数据库中。所有这些结果都用于在对RG-II的每个片段进行完全优化之前生成其完整结构。结果表明,A片段和B片段在最靠近主链的两个侧链糖苷键处都非常灵活。对于高度分支的A片段,侧链的其余部分是刚性的,而对于更线性的B片段,侧链的其余部分是灵活的。每个片段的最低能量构象导致芹糖基残基的羟基充分暴露。文中介绍了这些特征在硼络合中的一些可能影响。

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