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使用修饰的MspA纳米孔鉴别不同糖苷键的二糖异构体

Discrimination of Disaccharide Isomers of Different Glycosidic Linkages Using a Modified MspA Nanopore.

作者信息

Zhang Shanyu, Cao Zhenyuan, Fan Pingping, Sun Wen, Xiao Yunqi, Zhang Panke, Wang Yuqin, Huang Shuo

机构信息

State Key Laboratory of Analytical Chemistry for Life Sciences, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing, 210023, China.

Chemistry and Biomedicine Innovation Center (ChemBIC), Nanjing University, Nanjing, 210023, China.

出版信息

Angew Chem Int Ed Engl. 2024 Feb 19;63(8):e202316766. doi: 10.1002/anie.202316766. Epub 2024 Jan 11.

Abstract

Disaccharides are composed of two monosaccharide subunits joined by a glycosidic linkage in an α or β configuration. Different combinations of isomeric monosaccharide subunits and different glycosidic linkages result in different isomeric disaccharide products. Thus, direct discrimination of these disaccharide isomers from a mixture is extremely difficult. In this paper, a hetero-octameric Mycobacterium smegmatis porin A (MspA) nanopore conjugated with a phenylboronic acid (PBA) adapter was applied for disaccharide sensing, with which three most widely known disaccharides in nature, including sucrose, lactose and maltose, were clearly discriminated. Besides, all six isomeric α-D-glucopyranosyl-D-fructoses, differing only in their glycosidic linkages, were also well resolved. Assisted by a custom machine learning algorithm, a 0.99 discrimination accuracy is achieved. Nanopore discrimination of disaccharide isomers with different glycosidic linkages, which has never been previously demonstrated, is inspiring for nanopore saccharide sequencing. This sensing capacity was also applied in direct identification of isomaltulose additives in a commercial sucrose-free yogurt, from which isomaltulose, lactose and L-lactic acid were simultaneously detected.

摘要

二糖由两个单糖亚基组成,它们通过α或β构型的糖苷键相连。异构单糖亚基的不同组合以及不同的糖苷键会产生不同的异构二糖产物。因此,从混合物中直接区分这些二糖异构体极其困难。在本文中,一种与苯基硼酸(PBA)适配体偶联的耻垢分枝杆菌孔蛋白A(MspA)异源八聚体纳米孔被用于二糖传感,利用它能够清晰地区分自然界中三种最广为人知的二糖,包括蔗糖、乳糖和麦芽糖。此外,仅在糖苷键上存在差异的所有六种异构α-D-吡喃葡萄糖基-D-果糖也能被很好地分辨出来。在定制的机器学习算法的辅助下,实现了0.99的区分准确率。对具有不同糖苷键的二糖异构体进行纳米孔区分,这在以前从未被证实过,这对于纳米孔糖类测序具有启发性。这种传感能力还被应用于直接鉴定市售无糖酸奶中的异麦芽酮糖醇添加剂,从中同时检测到了异麦芽酮糖醇、乳糖和L-乳酸。

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