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基于支链淀粉的环状葡聚糖的生物制造、结构和特性。

Biofabrication, structure and characterization of an amylopectin-based cyclic glucan.

机构信息

State Key Laboratory of Food Science & Technology, Jiangnan University, 1800 Lihu Avenue, Wuxi, Jiangsu 214122, P. R. China.

出版信息

Food Funct. 2020 Mar 26;11(3):2543-2554. doi: 10.1039/c9fo02999k.

Abstract

A novel amylopectin-based cyclic architecture was fabricated, arising from microbial branching enzyme treated waxy rice starch. The recombinant enzyme had a molecular weight of 72.0 kDa, and exhibited optimum activity at pH 7.0 and 75 °C. During the cyclization reaction catalyzed by a branching enzyme, the molecular weight of amylopectin rapidly decreased for the initial 2 h, and then very slowly decreased, tapering off at approximately 1.8 × 105 g mol-1 at 12 h. The number of A-chain fractions greatly increased, whereas the percentage of B-chain fractions decreased after enzymatic modification, accompanied by more α-1, 6 linkage formation. The core ring structure as a glucoamylase-resistant fraction had a number-average degree of polymerization of 21, which was constructed by 19 glucose units linked with, 2 glucosyl stubs at the O-6-position of the cyclic glucan through α-1,4 and α-1,6 linkages. Similar to large-ring cyclodextrin with equal glucose units, this cyclic glucan had a cavity geometry with two-circular loops and short stubs in perpendicular planes. Moreover, this cyclic glucan could complex with iodine for the host-guest formation. These results revealed the potential application of the amylopectin-based cyclic glucan as a good delivery system to encapsulate and protect bioactive ingredients.

摘要

一种新型的支链淀粉基环状结构是由微生物分支酶处理蜡质大米淀粉制备而成的。重组酶的分子量为 72.0 kDa,在 pH 值为 7.0 和 75°C 时表现出最佳活性。在分支酶催化的环化反应中,支链淀粉的分子量在最初的 2 小时内迅速下降,然后缓慢下降,在 12 小时时约为 1.8×105 g mol-1。经过酶修饰后,A-链分数大大增加,而 B-链分数减少,伴随着更多的α-1,6 键形成。核心环结构作为一种抗糖化酶的部分,其数均聚合度为 21,由 19 个葡萄糖单元组成,通过α-1,4 和α-1,6 键与环状葡聚糖 O-6 位的 2 个葡萄糖残基相连。与具有相同葡萄糖单元的大环环糊精类似,这种环状葡聚糖具有带有两个圆形环和垂直平面上短支链的腔几何形状。此外,这种环状葡聚糖可以与碘形成主客体复合物。这些结果表明,基于支链淀粉的环状葡聚糖作为一种良好的递送系统,可用于封装和保护生物活性成分。

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