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裂褶菌(Schizophyllum commune Fries)产生的抗肿瘤多糖——裂褶多糖的超声降解

Ultrasonic degradation of schizophyllan, an antitumor polysaccharide produced by Schizophyllum commune Fries.

作者信息

Tabata K, Ito W, Kojima T, Kawabata S, Misaki A

出版信息

Carbohydr Res. 1981 Feb 16;89(1):121-35. doi: 10.1016/s0008-6215(00)85234-9.

Abstract

Schizophyllan, a water-soluble beta-D-glucan elaborated by Schizophyllum commune Fries, was partially depolymerized by ultrasonic irradiation to a low-molecular-weight polysaccharide, designated "sonic-degraded schizophyllan". Both native and degraded polysaccharides exhibited essentially the same antitumor activities against Sarcoma-180 ascites. Both glucans are comprised solely of D-glucose residues and have a main chain of (1 leads to 3)-beta-D-glucopyranosyl residues, one out of three glucose residues being attached as single, (1 leads to 6)-beta-D-glucopyranosyl groups. Although both glucans have similar structural features, significant differences are observed in such physical properties as molecular weight and intrinsic viscosity. End-group analysis by using radioisotope-labeled glucans suggests that ultrasonic degradation occurs mainly by cleavage of glycosidic bonds of the main chain of schizophyllan. The molecular weights of the native and sonic-degraded schizophyllan were shown to be 75% of those of corresponding, original schizophyllan preparations, suggesting that there is no anomalous linkage sensitive to periodate oxidation, and ultrasonic irradiation may cause random hydrolysis of (1 leads to 3)-beta-D-glucosidic linkages in the main chain.

摘要

裂褶多糖是一种由裂褶菌(Schizophyllum commune Fries)产生的水溶性β-D-葡聚糖,通过超声辐照将其部分解聚为低分子量多糖,称为“超声降解裂褶多糖”。天然多糖和降解多糖对肉瘤180腹水均表现出基本相同的抗肿瘤活性。两种葡聚糖均仅由D-葡萄糖残基组成,主链为(1→3)-β-D-吡喃葡萄糖基残基,每三个葡萄糖残基中有一个以单个(1→6)-β-D-吡喃葡萄糖基连接。尽管两种葡聚糖具有相似的结构特征,但在分子量和特性粘度等物理性质上存在显著差异。使用放射性同位素标记的葡聚糖进行端基分析表明,超声降解主要通过裂褶多糖主链糖苷键的断裂发生。天然裂褶多糖和超声降解裂褶多糖的分子量显示为相应原始裂褶多糖制剂分子量的75%,这表明不存在对高碘酸盐氧化敏感的异常连接,并且超声辐照可能导致主链中(1→3)-β-D-糖苷键的随机水解。

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