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首页> 外文期刊>Biomacromolecules >Artificial Mixed-Linked β-Glucans Produced by Glycosynthase-Catalyzed Polymerization: Tuning Morphology and Degree of Polymerization
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Artificial Mixed-Linked β-Glucans Produced by Glycosynthase-Catalyzed Polymerization: Tuning Morphology and Degree of Polymerization

机译:乙醇酸合酶催化聚合产生的人工混合连接的β-葡聚糖:调整形态和聚合度

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The glycosynthase derived from Bacillus licheniformis 1,3—1,4-β-glucanase was able to polymerize glycosyl fluoride donors (G4)_mG3GαF (m = 0-2, G = Glcβ) leading to artificial mixed-linked β-glucans with regular sequences and variable β1,3 to β1,4 linkage ratios. With the E134A glycosynthase mutant, polymers had average molecular masses (M_w) of 10-15 kDa. Whereas polymer 2 ([4G4G3G)?) was an amorphous precipitate, the water-insoluble polymers 1 ([4G3G]_n) and 3 ([4G4G4G3G]_n) formed spherulites of 10-20 μm diameter. With the more active E134S glycosynthase mutant, polymerization led to high molecular mass polysaccharides, where M_w was linearly dependent on enzyme concentration. Remarkably, a homo-polysaccharide [4G4G4G3G]_n with M_w as high as 30.5 kDa (n≈ 47) was obtained, which contained a small fraction of products up to 70 kDa, a value that is in the range of the molecular masses of low viscosity cereal 1,3—1,4-β-glucans, and among the largest products produced by a glycosynthase. Access to a range of novel tailor-made β-glucans through the glycosynthase technology will allow to evaluate the implications of polysaccharide fine structures in their physicochemical properties and their applications as biomaterials, as well as to provide valuable tools for biochemical characterization of β-glucan degrading enzymes and binding modules.
机译:地衣芽孢杆菌1,3–1,4-β-葡聚糖酶衍生的糖合酶能够聚合糖基氟化物供体(G4)_mG3GαF(m = 0-2,G =Glcβ),从而导致人工混合的β-葡聚糖与常规的序列和可变的β1,3到β1,4连锁比率。使用E134A糖合酶突变体,聚合物的平均分子量(M_w)为10-15 kDa。聚合物2([4G4G3G]α)是无定形沉淀,而水不溶性聚合物1([4G3G] _n)和3([4G4G4G3G] _n)形成直径为10-20μm的球晶。使用更具活性的E134S糖合酶突变体,聚合反应产生了高分子量的多糖,其中M_w线性依赖于酶的浓度。值得注意的是,获得了M_w高达30.5 kDa(n≈47)的均多糖[4G4G4G3G] _n,其中包含的小部分产物高达70 kDa,该值在低分子量范围内粘度较高的谷物1,3-1,4-β-葡聚糖,以及由糖合酶生产的最大产品。通过糖合酶技术获得一系列新颖的量身定制的β-葡聚糖,将有助于评估多糖精细结构对其理化性质的影响及其在生物材料中的应用,并为β-葡聚糖的生化表征提供有价值的工具降解酶和结合模块。

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