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小麦粉水不溶性细胞壁材料的水合作用使通过高分辨率固态 C MAS NMR 光谱法对其阿拉伯木聚糖进行结构分析成为可能。

Hydration of Wheat Flour Water-Unextractable Cell Wall Material Enables Structural Analysis of Its Arabinoxylan by High-Resolution Solid-State C MAS NMR Spectroscopy.

机构信息

Laboratory of Food Chemistry and Biochemistry (LFCB) and Leuven Food Science and Nutrition Research Centre (LFoRCe), KU Leuven, Kasteelpark Arenberg 23, B-3001Heverlee, Belgium.

Centre for Surface Chemistry and Catalysis (COK-KAT), KU Leuven, Celestijnenlaan 200F─box 2461, B-3001Heverlee, Belgium.

出版信息

J Agric Food Chem. 2022 Aug 31;70(34):10604-10610. doi: 10.1021/acs.jafc.2c04087. Epub 2022 Aug 17.

Abstract

To enable its structural characterization by nuclear magnetic resonance (NMR) spectroscopy, the native structure of cereal water-unextractable arabinoxylan (WU-AX) is typically disrupted by alkali or enzymatic treatments. Here, WU-AX in the wheat flour unextractable cell wall material (UCWM) containing 40.9% ± 1.5 arabinoxylan with an arabinose-to-xylose ratio of 0.62 ± 0.04 was characterized by high-resolution solid-state NMR without disrupting its native structure. Hydration of the UCWM (1.7 mg HO/mg UCWM) in combination with specific optimizations in the NMR methodology enabled analysis by solid-state C NMR with magic angle spinning and H high-power decoupling (C HPDEC MAS NMR) which provided sufficiently high resolution to allow for carbon atom assignments. Spectral resonances of -1 from arabinose and xylose residues of WU-AX were here assigned to the solid state. The proportions of un-, mono-, and di-substituted xyloses were 59.2, 19.5, and 21.2%, respectively. C HPDEC MAS NMR showed the presence of solid-state fractions with different mobilities in the UCWM. This study presents the first solid-state NMR spectrum of wheat WU-AX with sufficient resolution to enable assignment without prior WU-AX solubilization.

摘要

为了通过核磁共振(NMR)光谱对其结构进行表征,通常需要通过碱处理或酶处理来破坏谷物水不溶性阿拉伯木聚糖(WU-AX)的天然结构。在这里,对含有 40.9%±1.5%阿拉伯木聚糖的小麦面粉不可提取细胞壁材料(UCWM)中的 WU-AX 进行了表征,其阿拉伯糖与木糖的比例为 0.62±0.04,且没有破坏其天然结构。UCWM 的水合作用(1.7mg HO/mg UCWM)与 NMR 方法学中的特定优化相结合,使通过固态 13C NMR 与魔角旋转和 H 高功率去耦(C HPDEC MAS NMR)进行分析成为可能,这提供了足够高的分辨率,从而能够进行碳原子分配。WU-AX 中阿拉伯糖和木糖残基的-1 的谱峰在此被分配到固态。未取代、单取代和二取代木糖的比例分别为 59.2%、19.5%和 21.2%。C HPDEC MAS NMR 显示 UCWM 中存在不同流动性的固态部分。本研究首次提供了具有足够分辨率的小麦 WU-AX 的固态 NMR 谱图,无需预先溶解 WU-AX 即可进行分配。

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