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Enzymatic production of defined chitosan oligomers with a specific pattern of acetylation using a combination of chitin oligosaccharide deacetylases

机译:结合使用几丁质寡糖脱乙酰基酶的酶法生产具有特定乙酰化模式的规定的壳聚糖低聚物

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摘要

Chitin and chitosan oligomers have diverse biological activities with potentially valuable applications in fields like medicine, cosmetics, or agriculture. These properties may depend not only on the degrees of polymerization and acetylation, but also on a specific pattern of acetylation (PA) that cannot be controlled when the oligomers are produced by chemical hydrolysis. To determine the influence of the PA on the biological activities, defined chitosan oligomers in sufficient amounts are needed. Chitosan oligomers with specific PA can be produced by enzymatic deacetylation of chitin oligomers, but the diversity is limited by the low number of chitin deacetylases available. We have produced specific chitosan oligomers which are deacetylated at the first two units starting from the non-reducing end by the combined use of two different chitin deacetylases, namely NodB from Rhizobium sp. GRH2 that deacetylates the first unit and COD from Vibrio cholerae that deacetylates the second unit starting from the non-reducing end. Both chitin deacetylases accept the product of each other resulting in production of chitosan oligomers with a novel and defined PA. When extended to further chitin deacetylases, this approach has the potential to yield a large range of novel chitosan oligomers with a fully defined architecture.
机译:几丁质和壳聚糖低聚物具有多种生物活性,在诸如医药,化妆品或农业等领域具有潜在的有价值的应用。这些性质不仅取决于聚合度和乙酰化程度,而且取决于当通过化学水解生产低聚物时无法控制的特定乙酰化模式(PA)。为了确定PA对生物活性的影响,需要足够量的确定的壳聚糖低聚物。具有特定PA的壳聚糖寡聚体可以通过几丁质寡聚体的酶促脱乙酰作用制得,但多样性受到可用的几丁质脱乙酰基酶数量的限制。我们已经生产了特定的壳聚糖低聚物,通过结合使用两种不同的几丁质脱乙酰基酶,即根瘤菌属的NodB,从非还原端开始在前两个单元脱乙酰基。从非还原性末端开始,使第一单元脱乙酰的GRH2和来自霍乱弧菌的COD,使第二单元脱乙酰的霍乱弧菌。两种几丁质脱乙酰基酶都接受彼此的产物,从而产生具有新颖且确定的PA的壳聚糖低聚物。当扩展到进一步的几丁质脱乙酰基酶时,这种方法有可能产生具有完全定义的结构的大量新型壳聚糖低聚物。

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