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高度分支的(1→3)-β-D-葡聚糖对甲酸水解的抗性。

Resistance of highly branched (1-->3)-beta-D-glucans to formolysis.

作者信息

Ohno N, Terui T, Chiba N, Kurachi K, Adachi Y, Yadomae T

机构信息

Lab. Immunopharmacology of Microbial Products, Tokyo University of Pharmacy and Life Science, School of Pharmacy, Japan.

出版信息

Chem Pharm Bull (Tokyo). 1995 Jun;43(6):1057-60. doi: 10.1248/cpb.43.1057.

Abstract

Small molecular weight (MW) glucan derivatives could be a useful tool for studying the mechanisms of beta-glucan mediated biological activity, especially as antagonists for a beta-glucan receptor. This paper described the stability of various (1-->6) branched (1-->3)-beta-D-glucans to formolysis in the preparation of small MW derivatives. The glucans used were curdlan (linear), pachyman (few branches), GRN (one branch in every third main chain unit; 2/6), SPG (2/6), SSG (3/6), and OL-2 (4/6). Curdlan and pachyman were easily degraded to oligosaccharides by degradation for 20 min at 100 degrees C by 90% formic acid. However, branched glucans, especially the highly branched glucans, SSG and OL-2, were significantly resistant to degradation, and the majority remained high MW. SSG required a longer period and/or a higher temperature (121 degrees C treatment) to produce small MW derivatives. Branched glucans were also resistant to zymolyase (an endo-(1-->3)-beta-D-glucan hydrolase) digestion. These facts suggest that the (1-->6)-beta-D-branched residues contribute to the glucans' resistance to formic acid degradation and zymolyase digestion.

摘要

小分子质量(MW)葡聚糖衍生物可能是研究β-葡聚糖介导的生物活性机制的有用工具,尤其是作为β-葡聚糖受体的拮抗剂。本文描述了在制备小分子质量衍生物过程中,各种(1→6)分支的(1→3)-β-D-葡聚糖对甲酸水解的稳定性。所用的葡聚糖有凝胶多糖(线性)、茯苓聚糖(少量分支)、GRN(每三个主链单元中有一个分支;2/6)、SPG(2/6)、SSG(3/6)和OL-2(4/6)。凝胶多糖和茯苓聚糖在100℃下用90%甲酸降解20分钟很容易降解为寡糖。然而,分支葡聚糖,尤其是高度分支的葡聚糖SSG和OL-2,对降解具有显著抗性,且大多数仍保持高分子质量。SSG需要更长时间和/或更高温度(121℃处理)才能产生小分子质量衍生物。分支葡聚糖也对溶菌酶(一种内切(1→3)-β-D-葡聚糖水解酶)消化具有抗性。这些事实表明,(1→6)-β-D-分支残基有助于葡聚糖对甲酸降解和溶菌酶消化的抗性。

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