Rapp Mareike A, Baudendistel Oliver R, Steiner Ulrich E, Wittmann Valentin
Department of Chemistry and Konstanz Research School Chemical Biology (KoRS-CB), University of Konstanz, Universitätsstraße 10 78457 Konstanz Germany
Chem Sci. 2021 Oct 29;12(44):14901-14906. doi: 10.1039/d1sc05008g. eCollection 2021 Nov 17.
Conjugation of unprotected carbohydrates to surfaces or probes by chemoselective ligation reactions is indispensable for the elucidation of their numerous biological functions. In particular, the reaction with oxyamines leading to the formation of carbohydrate oximes which are in equilibrium with cyclic -glycosides (oxyamine ligation) has an enormous impact in the field. Although highly chemoselective, the reaction is rather slow. Here, we report that the oxyamine ligation is significantly accelerated without the need for a catalyst when starting with glycosyl amines. Reaction rates are increased up to 500-fold compared to the reaction of the reducing carbohydrate. For comparison, aniline-catalyzed oxyamine ligation is only increased 3.8-fold under the same conditions. Glycosyl amines from mono- and oligosaccharides are easily accessible from reducing carbohydrates the corresponding azides by using Shoda's reagent (2-chloro-1,3-dimethylimidazolinium chloride, DMC) and subsequent reduction. Furthermore, glycosyl amines are readily obtained by enzymatic release from -glycoproteins making the method suited for glycomic analysis of these glycoconjugates which we demonstrate employing RNase B. Oxyamine ligation of glycosyl amines can be carried out at close to neutral conditions which makes the procedure especially valuable for acid-sensitive oligosaccharides.
通过化学选择性连接反应将未保护的碳水化合物与表面或探针进行共轭,对于阐明其众多生物学功能而言不可或缺。特别是,与氧胺的反应会导致形成与环状糖苷处于平衡状态的碳水化合物肟(氧胺连接),这在该领域具有重大影响。尽管该反应具有高度的化学选择性,但反应相当缓慢。在此,我们报告称,从糖基胺开始时,无需催化剂,氧胺连接反应会显著加速。与还原型碳水化合物的反应相比,反应速率提高了多达500倍。相比之下,在相同条件下,苯胺催化的氧胺连接仅提高了3.8倍。通过使用肖达试剂(2-氯-1,3-二甲基咪唑鎓氯化物,DMC)并随后还原,可轻松从还原型碳水化合物相应的叠氮化物中获得单糖和寡糖的糖基胺。此外,通过从糖蛋白中酶促释放可轻松获得糖基胺,这使得该方法适用于对这些糖缀合物进行糖组学分析,我们使用核糖核酸酶B对此进行了证明。糖基胺的氧胺连接可在接近中性的条件下进行,这使得该方法对于酸敏感的寡糖尤为有价值。