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红葡萄酒鼠李半乳糖醛酸聚糖II的结构表征

Structural characterization of red wine rhamnogalacturonan II.

作者信息

Pellerin P, Doco T, Vidal S, Williams P, Brillouet J M, O'Neill M A

机构信息

Institut National de la Recherche Agronomique, Laboratoire des Polymères et des Techniques Physico-Chimiques, Montpellier, France.

出版信息

Carbohydr Res. 1996 Sep 2;290(2):183-97. doi: 10.1016/0008-6215(96)00139-5.

Abstract

The pectic polysaccharide rhamnogalacturonan II (RG-II), which accounts for approximately 20% of the ethanol-precipitable polysaccharides in red wine, has been isolated from wine polysaccharides by anion-exchange chromatography. Four fractions enriched with RG-II were obtained and the RG-II then purified to homogeneity by Concanavalin A affinity and size-exclusion chromatographies. The glycosyl-residue compositions of the four RG-IIs are similar; all the RG-IIs contain the monosaccharides (apiose, 2-O-methyl-L-fucose, 2-O-methyl-D-xylose, Kdo, Dha, and aceric acid) that are diagnostic of RG-II. The glycosyl-linkages of the neutral and acidic sugars, including aceric acid, were determined simultaneously by GC-EIMS analysis of the methylated alditol acetates generated from per-O-methylated and carboxyl-reduced RG-II. Two of the RG-IIs contain boron, most likely as a borate di-ester that cross-links two molecules of RG-II together to form a dimer. The dimer contains 3'- and 2,3,3'-linked apiosyl residues whereas the monomer contains only 3'-linked apiosyl residues which suggests that the borate di-ester is located on at least one of the apiosyl residues of RG-II. Although the wine RG-IIs all have similar structures they are not identical since they differ in the length and degree of methyl-esterification of the RG-II backbone and in the presence or absence of borate di-esters. Nevertheless, these studies show that the major structural features of wine and primary cell wall RG-II are conserved.

摘要

果胶多糖鼠李半乳糖醛酸聚糖II(RG-II)约占红酒中乙醇可沉淀多糖的20%,已通过阴离子交换色谱法从葡萄酒多糖中分离出来。获得了四个富含RG-II的馏分,然后通过伴刀豆球蛋白A亲和色谱法和尺寸排阻色谱法将RG-II纯化至同质。这四种RG-II的糖基残基组成相似;所有RG-II都含有作为RG-II诊断标志的单糖(芹糖、2-O-甲基-L-岩藻糖、2-O-甲基-D-木糖、Kdo、Dha和乙酸)。通过对全O-甲基化和羧基还原的RG-II生成的甲基化糖醇乙酸酯进行GC-EIMS分析,同时测定了包括乙酸在内的中性和酸性糖的糖基连接。其中两种RG-II含有硼,最有可能是以硼酸二酯的形式,将两个RG-II分子交联在一起形成二聚体。二聚体含有3'-和2,3,3'-连接的芹糖基残基,而单体仅含有3'-连接的芹糖基残基,这表明硼酸二酯位于RG-II的至少一个芹糖基残基上。尽管葡萄酒中的RG-II都具有相似的结构,但它们并不相同,因为它们在RG-II主链的长度和甲基酯化程度以及硼酸二酯的存在与否方面存在差异。然而,这些研究表明,葡萄酒和初生细胞壁RG-II的主要结构特征是保守的。

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