首页> 美国卫生研究院文献>Molecules >High Molecular Weight Glucan of the Culinary Medicinal Mushroom Agaricus bisporus is an α-Glucan that Forms Complexes with Low Molecular Weight Galactan
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High Molecular Weight Glucan of the Culinary Medicinal Mushroom Agaricus bisporus is an α-Glucan that Forms Complexes with Low Molecular Weight Galactan

机译:烹饪蘑菇双孢蘑菇的高分子量葡聚糖是一种与低分子量半乳聚糖形成复合物的α-葡聚糖。

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摘要

An α-glucan was isolated from the culinary medicinal mushroom A. bisporus by hot water extraction, ethanol precipitation and DEAE-cellulose chromatography. The resulting material showed a single HMW peak excluded from a Sephadex G50 column that could completely be degraded by α-amylase treatment. After heating in 1% SDS a small additional peak of low MW eluted from the G50 column. The monosaccharide composition of the main peak was evaluated by HPLC, and was found to consist of a majority of glucose (97.6%), and a minor proportion of galactose (2.4%). Methylation analysis and degradation by α-amylase indicated the presence of an α-glucan with a main chain consisting of (1→4)-linked units, substituted at O-6 by α-D-glucopyranose single-units in the relation 1:8. Mono- (13C-, 1H-NMR) and bidimensional [1H (obs.),13C-HSQC] spectroscopy analysis confirmed the α-configuration of the Glcp residues by low frequency resonances of C-1 at δ 100.6, 100.2, and 98.8 ppm and H-1 high field ones at δ 5.06, 5.11, and 4.74 ppm. The DEPT-13C-NMR allowed assigning the non-substituted and O-substituted –CH2 signals at δ 60.3/60.8 and 66.2 ppm, respectively. Other assignments were attributed to C-2, C-3, C-4, C-5 and C-6 of the non-reducing ends at δ 71.8; 72.8; 70.0; 71.3 and 60.3/60.8 ppm, respectively. The minor proportion of galactose that was demonstrated was probably derived from a complex between the α-glucan and a low molecular weight galactan.
机译:通过热水提取,乙醇沉淀和DEAE-纤维素色谱法从烹饪双孢蘑菇中分离出α-葡聚糖。所得物质显示从Sephadex G50色谱柱中排除的单个HMW峰,可通过α-淀粉酶处理将其完全降解。在1%SDS中加热后,从G50色谱柱洗脱出一个小的低分子量峰。通过HPLC评估主峰的单糖组成,发现其由大部分葡萄糖(97.6%)和次要半乳糖(2.4%)组成。甲基化分析和α-淀粉酶降解表明存在一种α-葡聚糖,其主链由(1→4)连接的单元组成,在O-6处被α-D-吡喃葡萄糖单单元取代,关系为1: 8。单-( 13 C-, 1 H-NMR)和二维[1H(obs。),13C-HSQC]光谱分析证实了Glcp残基的α-构型通过C-1在δ100.6、100.2和98.8 ppm处的低频共振以及H-1在δ5.06、5.11和4.74 ppm处的高场共振产生的低频共振。 DEPT- 13 C-NMR可以将未取代的和O-取代的–CH2信号分别指定在δ60.3 / 60.8和66.2 ppm处。其他分配归因于非还原末端的C-2,C-3,C-4,C-5和C-6,其δ71.8; 72.8; 70.0;分别为71.3和60.3 / 60.8 ppm。所证明的半乳糖可能来自α-葡聚糖和低分子量半乳糖之间的复合物。

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