Dold Jeremias E G A, Pfotzer Jessica, Späte Anne-Katrin, Wittmann Valentin
University of Konstanz, Department of Chemistry and, Konstanz Research School Chemical Biology, KoRS-CB), 78457, Konstanz, Germany.
Chembiochem. 2017 Jul 4;18(13):1242-1250. doi: 10.1002/cbic.201700002. Epub 2017 Apr 27.
Sialic acids play an important role in numerous cell adhesion processes, and sialylation levels are known to be altered under certain pathogenic conditions, such as cancer. Metabolic glycoengineering with mannosamine derivatives is a convenient way to introduce non-natural chemical reporter groups into sialylated glycoconjugates, offering the opportunity to label sialic acids by using bioorthogonal ligation chemistry. The labeling intensity depends not only on the rate of the ligation reaction but also on the extent to which the natural sialic acids are replaced by the modified ones; that is, the incorporation efficiency. Here, we present a comparative study of eight mannosamine derivatives featuring terminal alkenes as chemical reporter groups that can be labeled by an inverse-electron-demand Diels-Alder (DAinv) reaction. The derivatives differed in chain length as well as the type of linkage (carbamates, amides, and a urea) that connects the terminal alkene to the sugar. As a general trend, increasing chain lengths resulted in higher DAinv reactivity and, at the same time, reduced incorporation efficiency. Carbamates were better accepted than amides with the same chain length; nevertheless, the latter resulted in more intense cell-surface staining, visible by live-cell fluorescence microscopy. A urea derivative was also shown to be accepted.
唾液酸在众多细胞黏附过程中发挥着重要作用,并且已知在某些致病条件下,如癌症,唾液酸的糖基化水平会发生改变。用甘露糖胺衍生物进行代谢糖工程是一种将非天然化学报告基团引入唾液酸化糖缀合物的便捷方法,为利用生物正交连接化学标记唾液酸提供了机会。标记强度不仅取决于连接反应的速率,还取决于天然唾液酸被修饰唾液酸取代的程度,即掺入效率。在此,我们对八种以末端烯烃作为化学报告基团的甘露糖胺衍生物进行了比较研究,这些末端烯烃可通过逆电子需求狄尔斯-阿尔德(DAinv)反应进行标记。这些衍生物在链长以及将末端烯烃连接到糖的连接类型(氨基甲酸酯、酰胺和脲)方面存在差异。一般趋势是,链长增加会导致更高的DAinv反应性,同时掺入效率降低。相同链长的氨基甲酸酯比酰胺更容易被接受;然而,后者导致更强烈的细胞表面染色,通过活细胞荧光显微镜可见。一种脲衍生物也被证明是可被接受的。