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利用鞘氨醇单胞菌来源的高转糖苷活性几丁质酶生产具有生物活性的壳寡糖。

Production of bioactive chitosan oligosaccharides using the hypertransglycosylating chitinase-D from Serratia proteamaculans.

机构信息

Department of Plant Sciences, School of Life Sciences, University of Hyderabad, Gachibowli, Hyderabad, India.

Institute for Biology and Biotechnology of Plants, WWU, Münster University, Münster, Germany.

出版信息

Bioresour Technol. 2015 Dec;198:503-9. doi: 10.1016/j.biortech.2015.09.052. Epub 2015 Sep 25.

Abstract

The biological activities of chitosan and its oligosaccharides are greatly influenced by properties such as the degree of polymerization (DP), degree of acetylation (DA) and pattern of acetylation (PA). Here, structurally diverse chitosan oligosaccharides from chitosan polymers (DA=35% or 61%) were generated using Serratia proteamaculans wild-type chitinase D (SpChiD) and the W114A mutant which lacks transglycosylase activity. The crude oligosaccharide mixtures and purified fractions with specific DP and DA ranges were tested for their ability to induce an oxidative burst in rice cell suspension cultures. The crude mixtures were more active when produced by the W114A mutant whereas the purified fractions were more active when produced by wild-type SpChiD. Neither hydrolysis nor transglycosylation by SpChiD was inhibited in the presence of fully-deacetylated oligosaccharides, suggesting that SpChiD could be exploited to generate oligosaccharides with defined DA and PA values.

摘要

壳聚糖及其寡糖的生物活性受聚合度(DP)、乙酰化度(DA)和乙酰化模式(PA)等性质的极大影响。在这里,使用粘质沙雷氏菌野生型几丁质酶 D(SpChiD)和缺乏转糖基酶活性的 W114A 突变体,从壳聚糖聚合物中生成结构多样的壳聚糖寡糖(DA=35%或 61%)。对粗寡糖混合物和具有特定 DP 和 DA 范围的纯化级分进行测试,以检测它们在诱导水稻细胞悬浮培养物产生氧化爆发的能力。当由 W114A 突变体产生时,粗混合物更具活性,而当由野生型 SpChiD 产生时,纯化级分更具活性。在完全脱乙酰化寡糖存在的情况下,SpChiD 的水解和转糖基作用均未受到抑制,这表明可以利用 SpChiD 来生成具有确定 DA 和 PA 值的寡糖。

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