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NMR 研究 κ-和 κ/μ-杂交卡拉胶低聚糖的羟基质子:κ/μ 低聚糖中氢键和化学交换相互作用的实验证据。

NMR study on hydroxy protons of κ- and κ/μ-hybrid carrageenan oligosaccharides: experimental evidence of hydrogen bonding and chemical exchange interactions in κ/μ oligosaccharides.

机构信息

Department of Chemistry, Swedish University of Agricultural Sciences, P.O. Box 7015, SE-750 07 Uppsala, Sweden.

出版信息

Biomacromolecules. 2010 Dec 13;11(12):3487-94. doi: 10.1021/bm100994x. Epub 2010 Nov 18.

Abstract

The hydroxy protons of κ- and κ/μ-hybrid carrageenan oligosaccharides have been studied by NMR spectroscopy in 85% H(2)O/15% acetone-d(6). Hydration and hydrogen bonding interactions in di- (κ), tetra- (κκ), hexa (κκκ), and octa- (κκκκ) κ-oligosaccharides and hexa- (κμκ), octa- (κμμκ), and deca- (κμμμκ) κ/μ-oligosaccharides have been investigated by measuring the chemical shifts, temperature coefficients, and chemical exchange of the hydroxy protons. These NMR parameters indicate that no strong and persistent intramolecular hydrogen bonds involving hydroxy protons stabilize the structure of κ-carrageenan oligosaccharides in aqueous solution. In the κ/μ-oligosaccharides, the presence of chemical exchange between OH3 of α-d-Gal-6-sulfate (D6S) and OH2 of β-d-Gal-4-sulfate (G4S) across the β-d-Gal-4-S-(1→4)-α-d-Gal-6-S linkage reveals the existence of a weak hydrogen bond interaction between the two hydroxyl groups. The smaller temperature coefficients of OH2_D6S and OH3_D6S indicate reduced hydration, interpreted as spatial proximity to the 4-sulfate group and O5 ring oxygen of the neighboring G4S residues, respectively. These first experimental results on the conformation of κ/μ-carrageenan oligosaccharides shine light on the potential role of "kinks" in the properties of the three-dimensional carrageenan gel network.

摘要

κ-和 κ/μ-杂合卡拉胶寡糖的羟基质子已通过 NMR 光谱在 85% H2O/15%丙酮-d6 中进行了研究。通过测量羟基质子的化学位移、温度系数和化学交换,研究了二(κ)、四(κκ)、六(κκκ)和八(κκκκ)κ-寡糖以及六(κμκ)、八(κμμκ)和十(κμμμκ)κ/μ-寡糖的水合和氢键相互作用。这些 NMR 参数表明,在水溶液中,没有涉及羟基质子的强而持久的分子内氢键来稳定 κ-卡拉胶寡糖的结构。在 κ/μ-寡糖中,α-d-半乳糖-6-硫酸盐(D6S)的 OH3 与 β-d-半乳糖-4-硫酸盐(G4S)的 OH2 之间存在化学交换,表明β-d-半乳糖-4-S-(1→4)-α-d-半乳糖-6-S 键之间存在弱氢键相互作用。OH2_D6S 和 OH3_D6S 的较小温度系数表明水合程度降低,这分别解释为与邻近 G4S 残基的 4-硫酸盐基团和 O5 环氧的空间接近。这些关于 κ/μ-卡拉胶寡糖构象的首批实验结果揭示了“弯曲”在三维卡拉胶凝胶网络性质中的潜在作用。

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