Institute of Biochemistry, Friedrich Alexander University Erlangen-Nürnberg, Fahrstrasse 17, 91054 Erlangen, Germany.
Institute of Organic Chemistry, Julius-Maximilians-University of Würzburg, Am Hubland, 97074 Würzburg, Germany.
Cells. 2024 Nov 6;13(22):1831. doi: 10.3390/cells13221831.
Tumor cells are decorated with aberrant glycan structures on cell surfaces. It is well known that the glycocalyx serves as a main cellular regulator, although its role in cancer is still not completely understood. Over recent decades, several non-natural monosaccharides carrying clickable groups have been introduced in melanoma cells. This technique, called Metabolic Glycoengineering (MGE), opens up the possibility of altering the cell's glycocalyx via click chemistry using a two-step approach. This study expands the field of MGE by showing the successful metabolic incorporation of novel alternative artificial glucosamine derivatives. The latter were either deoxygenated or blocked by methyl ether in position 4 to generate deficient glycosylation patterns, while being extended by an alkyne to enable click chemistry as a one-step approach. As a result, we observed a reduced proliferation rate of melanoma cells. Furthermore, using a lectin array, the decrease in high mannose epitopes was observed. In summary, the successful use of alternative artificial glucosamine derivatives enabled a significant alteration in the glycocalyx, consequently influencing cell behavior.
肿瘤细胞表面的糖基结构异常。众所周知,糖萼是主要的细胞调节剂,但其在癌症中的作用仍不完全清楚。在过去的几十年中,已经在黑色素瘤细胞中引入了几种带有可点击基团的非天然单糖。这种技术称为代谢糖基工程(MGE),通过两步法使用点击化学改变细胞糖萼的可能性。本研究通过展示新型替代人工氨基葡萄糖衍生物的成功代谢掺入,扩展了 MGE 领域。后者要么在 4 位脱氧或用甲醚封闭以产生糖苷化模式缺陷,同时通过炔烃延伸以实现点击化学作为一步法。结果,我们观察到黑色素瘤细胞的增殖率降低。此外,通过凝集素阵列观察到高甘露糖表位减少。总之,替代人工氨基葡萄糖衍生物的成功使用使糖萼发生了显著改变,从而影响了细胞行为。