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使用 NMR 光谱法对混合培养好氧污泥颗粒中的关键胞外多糖进行结构测定。

Structural determination of a key exopolysaccharide in mixed culture aerobic sludge granules using NMR spectroscopy.

机构信息

The University of Queensland, Advanced Water Management Centre, St. Lucia, QLD 4072, Australia.

出版信息

Environ Sci Technol. 2010 Dec 1;44(23):8964-70. doi: 10.1021/es102658s. Epub 2010 Oct 29.

Abstract

Nuclear magnetic resonance (NMR) techniques were used to elucidate the structure of an exopolysaccharide material previously revealed to be important in formation of aerobic granules. The 1D NMR spectral data acquired showed that this gel-forming polysaccharide was a major component of granular EPS, while 1D and 2D NMR spectra showed it consisted of eight sugar residues. These were assigned as α-galactose, α-rhamnose, 2-acetoamido-2-deoxy-α-galactopyranuronic acid, β-mannose, β-galactose, β-glucuronate, β-glucosamine, and N-acetyl β-galactosamine. With the exception of 2-acetoamido-2-deoxy-α-galactopyranuronic acid, a highly unusual sugar, their presence was confirmed with high-performance anion-exchange chromatography with pulsed amperometric detection (HPAEC-PAD). Carbon and proton shifts were assigned for each sugar. Heteronuclear multiple bond correlation (HMBC) and nuclear Overhauser enhancement spectroscopy (NOESY) were used to identify linkage sites between individual sugar residues. This gel-forming exopolysaccharide appeared to be a highly complex single heteropolysaccharide with a repeat sequence of α-galactose, β-mannose, β-glucosamine, N-acetyl-β-galactosamine, and 2-acetoamido-2-deoxy-α-galactopyranuronic acid. It has a disaccharide branch of β-galactose and β-glucuronic acid attached to 2-acetoamido-2-deoxy-α-galactopyranuronic acid and an α-rhamnose branch attached to α-galactose.

摘要

核磁共振(NMR)技术被用于阐明先前被发现对好氧颗粒形成很重要的胞外多糖物质的结构。获得的一维 NMR 光谱数据表明,这种形成凝胶的多糖是颗粒 EPS 的主要成分,而一维和二维 NMR 光谱表明它由八个糖残基组成。这些被分配为α-半乳糖、α-鼠李糖、2-乙酰氨基-2-脱氧-α-半乳糖吡喃糖醛酸、β-甘露糖、β-半乳糖、β-葡萄糖醛酸、β-葡萄糖胺和 N-乙酰-β-半乳糖胺。除了高度不寻常的糖 2-乙酰氨基-2-脱氧-α-半乳糖吡喃糖醛酸外,其存在通过高效阴离子交换色谱与脉冲安培检测(HPAEC-PAD)得到了证实。为每个糖分配了碳和质子位移。异核多键相关(HMBC)和核 Overhauser 增强光谱(NOESY)用于确定各个糖残基之间的连接位点。这种形成凝胶的胞外多糖似乎是一种高度复杂的单一杂多糖,其重复序列为α-半乳糖、β-甘露糖、β-葡萄糖胺、N-乙酰-β-半乳糖胺和 2-乙酰氨基-2-脱氧-α-半乳糖吡喃糖醛酸。它有一个β-半乳糖和β-葡萄糖醛酸的二糖支链连接到 2-乙酰氨基-2-脱氧-α-半乳糖吡喃糖醛酸上,还有一个α-鼠李糖支链连接到α-半乳糖上。

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