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软骨素寡糖及其硫酸酯衍生物的酶法生产

Enzymatic Production of Chondroitin Oligosaccharides and Its Sulfate Derivatives.

作者信息

Zhang Weijiao, Xu Ruirui, Jin Xuerong, Wang Yang, Hu Litao, Zhang Tianmeng, Du Guocheng, Kang Zhen

机构信息

The Key Laboratory of Carbohydrate Chemistry and Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi, China.

The Science Center for Future Foods, Jiangnan University, Wuxi, China.

出版信息

Front Bioeng Biotechnol. 2022 Jul 13;10:951740. doi: 10.3389/fbioe.2022.951740. eCollection 2022.

Abstract

Chondroitin sulfate (CS) has a wide range of physiological functions and clinical applications. However, the biosynthesis of chondroitin oligosaccharides (o-CHs) and sulfate derivatives with specific length is always challenging. Herein, we report enzymatic strategies for producing homogeneous o-CHs and its sulfate derivatives from microbial sourced chondroitin. Chondroitin disaccharides, tetrasaccharides, hexasaccharides, octasaccharides, and decasaccharides with defined structure were produced by controllably depolymerizing microbial sourced chondroitin with an engineered chondroitinase ABC I. The highest conversion rates of the above corresponding o-CHs were 65.5%, 32.1%, 12.7%, 7.2%, and 16.3%, respectively. A new efficient enzymatic sulfation system that directly initiates from adenosine 5'-triphosphate (ATP) and sulfate was developed and improved the sulfation of chondroitin from 8.3% to 85.8% by optimizing the temperature, sulfate and ATP concentration. o-CHs decasaccharide, octasaccharide, hexasaccharide, tetrasaccharide and disaccharide were modified and the corresponding sulfate derivatives with one sulfate group were prepared. The enzymatic approaches constructed here for preparing o-CHs and its sulfate derivatives pave the way for the study of structure-activity relationship and applications.

摘要

硫酸软骨素(CS)具有广泛的生理功能和临床应用。然而,具有特定长度的硫酸软骨素寡糖(o-CHs)及其硫酸酯衍生物的生物合成一直具有挑战性。在此,我们报道了从微生物来源的软骨素生产均一的o-CHs及其硫酸酯衍生物的酶促策略。通过用工程化的软骨素酶ABC I可控地解聚微生物来源的软骨素,制备了具有确定结构的软骨素二糖、四糖、六糖、八糖和十糖。上述相应o-CHs的最高转化率分别为65.5%、32.1%、12.7%、7.2%和16.3%。开发了一种新的高效酶促硫酸化系统,该系统直接从三磷酸腺苷(ATP)和硫酸盐开始,并通过优化温度、硫酸盐和ATP浓度将软骨素的硫酸化率从8.3%提高到85.8%。对o-CHs十糖、八糖、六糖、四糖和二糖进行了修饰,并制备了相应的含一个硫酸基团的硫酸酯衍生物。本文构建的制备o-CHs及其硫酸酯衍生物的酶促方法为结构-活性关系的研究和应用铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/734f/9326237/60b62a6036ca/fbioe-10-951740-g001.jpg

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