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探索降冰片烯修饰的甘露糖胺衍生物在代谢糖工程中的潜力。

Exploring the Potential of Norbornene-Modified Mannosamine Derivatives for Metabolic Glycoengineering.

作者信息

Späte Anne-Katrin, Dold Jeremias E G A, Batroff Ellen, Schart Verena F, Wieland Daniel E, Baudendistel Oliver R, Wittmann Valentin

机构信息

University of Konstanz, Department of Chemistry, and Konstanz Research School Chemical Biology (KoRS-CB), 78457, Konstanz, Germany.

出版信息

Chembiochem. 2016 Jul 15;17(14):1374-83. doi: 10.1002/cbic.201600197. Epub 2016 Jun 17.

Abstract

Metabolic glycoengineering (MGE) allows the introduction of unnaturally modified carbohydrates into cellular glycans and their visualization through bioorthogonal ligation. Alkenes, for example, have been used as reporters that can react through inverse-electron-demand Diels-Alder cycloaddition with tetrazines. Earlier, norbornenes were shown to be suitable dienophiles; however, they had not previously been applied for MGE. We synthesized two norbornene-modified mannosamine derivatives that differ in the stereochemistry at the norbornene (exo/endo linkage). Kinetic investigations revealed that the exo derivative reacts more than twice as rapidly as the endo derivative. Through derivatization with 1,2-diamino-4,5-methylenedioxybenzene (DMB) we confirmed that both derivatives are accepted by cells and incorporated after conversion to a sialic acid. In further MGE experiments the incorporated sugars were ligated to a fluorophore and visualized through confocal fluorescence microscopy and flow cytometry.

摘要

代谢糖工程(MGE)能够将非天然修饰的碳水化合物引入细胞聚糖,并通过生物正交连接对其进行可视化。例如,烯烃已被用作报告基团,可通过逆电子需求的狄尔斯-阿尔德环加成反应与四嗪发生反应。此前,降冰片烯被证明是合适的亲双烯体;然而,它们此前尚未应用于代谢糖工程。我们合成了两种降冰片烯修饰的甘露糖胺衍生物,它们在降冰片烯处的立体化学(外型/内型连接)不同。动力学研究表明,外型衍生物的反应速度比内型衍生物快两倍多。通过用1,2-二氨基-4,5-亚甲基二氧基苯(DMB)进行衍生化,我们证实这两种衍生物都能被细胞接受,并在转化为唾液酸后被整合。在进一步的代谢糖工程实验中,将整合的糖与荧光团连接,并通过共聚焦荧光显微镜和流式细胞术进行可视化。

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