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三叶草根瘤菌843的三叶草凝集素结合荚膜多糖的完整结构

The complete structure of the trifoliin A lectin-binding capsular polysaccharide of Rhizobium trifolii 843.

作者信息

Hollingsworth R I, Dazzo F B, Hallenga K, Musselman B

机构信息

Department of Microbiology and Public Health, Michigan State University, East Lansing 48824.

出版信息

Carbohydr Res. 1988 Jan 15;172(1):97-112. doi: 10.1016/s0008-6215(00)90845-0.

Abstract

The complete structure of the acidic, extracellular, capsular polysaccharide of Rhizobium trifolii 843 has been elucidated by a combination of chemical, enzymic, and spectroscopic methods, confirming an earlier proposed sugar sequence and assigning the locations of the acyl substituents. The polysaccharide was depolymerized by a lyase into octasaccharide units which were uniform in carbohydrate composition and linkage. These units also contained a uniform distribution of acetyl and pyruvic acetal [O-(1-carboxyethylidene)] groups, and half of them were further acylated with D-3-hydroxybutanoyl groups. A much smaller proportion (less than 5%) of the oligomers was further acylated by a second D-3-hydroxybutanoyl group. The locations of the subtituents were determined chemically and by J-correlated, 1H-n.m.r. spectroscopy, proton nuclear Overhauser effect (n.O.e.) measurements, double-rd structure of the carbohydrate chain were determined by methylation analysis using g.l.c.-m.s. fast-atom-bombardment mass spectrometry, and n.m.r. studies on the reduced, deacylated oligomer. Structural studies were supplemented by n.m.r. analyses on the original polymer. The oligosaccharides were found to be branched octasaccharides with four sugar residues in each branch, and the carbohydrate sequence agreed well with that expected from earlier work. In the abbreviated sequence and structure (1a), the sugar residues are labelled "a" through "h". The main chain (a-d) is composed of a 4-deoxy-alpha-L-threo-hex-4-enopyranosyluronic acid group (a) that is linked to O-4 of a 3-O-acetyl-D-glucosyluronic acid residue (b) which is beta-linked to O-4 of a D-glucosyl residue (c). Residue c is beta-linked to O-4 of the branching D-glucose residue (d). The side chain consists of a substituted D-galactosyl group (h) which is beta-linked to O-3 of residue 9 of a beta-(1----4)-linked D-glucose trisaccharide (fragment e-f-g). The reducing end of the resulting tetrasaccharide (e-f-g-h) is beta-linked to O-6 of the branching D-glucose residue (d). In the native polymer, this branching residue is alpha-linked to O-4 of the modified D-glucuronic acid residue (a) which is the unsaturated sugar in the oligomer. A small proportion of the O-2 atoms of the acetylated D-glucosyluronic acid residues is acetylated because of ester migration. The two terminal sugars (g and h) of the branch chain bear 4,6-O-(1-carboxyethylidene) groups. The D-galactosyl groups of half of the oligomers are acylated by D-3-hydroxybutanoyl groups at O-3.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

通过化学、酶学和光谱学方法相结合,已阐明了三叶草根瘤菌843酸性胞外荚膜多糖的完整结构,证实了先前提出的糖序列并确定了酰基取代基的位置。该多糖被裂解酶解聚为八糖单元,这些单元在碳水化合物组成和连接方式上是一致的。这些单元还含有均匀分布的乙酰基和丙酮酸缩醛[O-(1-羧基亚乙基)]基团,其中一半还被D-3-羟基丁酰基进一步酰化。一小部分(小于5%)的寡聚物被第二个D-3-羟基丁酰基进一步酰化。取代基的位置通过化学方法以及J-相关的1H-核磁共振光谱、质子核Overhauser效应(n.O.e.)测量来确定,碳水化合物链的双重结构通过使用气相色谱-质谱联用的甲基化分析、快原子轰击质谱以及对还原、脱酰化寡聚物的核磁共振研究来确定。对原始聚合物的核磁共振分析补充了结构研究。发现这些寡糖是分支的八糖,每个分支中有四个糖残基,碳水化合物序列与早期工作预期的结果非常吻合。在简化的序列和结构(1a)中,糖残基标记为“a”至“h”。主链(a-d)由一个4-脱氧-α-L-苏-己-4-烯吡喃糖醛酸基团(a)组成,该基团与3-O-乙酰基-D-葡萄糖醛酸残基(b)的O-4相连,b以β-连接方式与D-葡萄糖残基(c)的O-4相连。残基c以β-连接方式与分支的D-葡萄糖残基(d)的O-4相连。侧链由一个取代的D-半乳糖基(h)组成,该基团以β-连接方式与β-(1→4)-连接的D-葡萄糖三糖(片段e-f-g)的残基9的O-3相连。所得四糖(e-f-g-h)的还原端以β-连接方式与分支的D-葡萄糖残基(d)的O-6相连。在天然聚合物中,这个分支残基以α-连接方式与修饰的D-葡萄糖醛酸残基(a)的O-4相连,a是寡聚物中的不饱和糖。由于酯迁移,乙酰化的D-葡萄糖醛酸残基的一小部分O-2原子被乙酰化。分支链的两个末端糖(g和h)带有4,6-O-(1-羧基亚乙基)基团。一半寡聚物的D-半乳糖基在O-3处被D-3-羟基丁酰基酰化。(摘要截断于400字)

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