Lundborg Magnus, Widmalm Göran
Department of Biochemistry and Biophysics, Science for Life Laboratory, Stockholm University, Solna, 171 21, Sweden.
Methods Mol Biol. 2015;1273:29-40. doi: 10.1007/978-1-4939-2343-4_3.
Carbohydrate molecules have highly complex structures and the constituent monosaccharides and substituents are linked to each other in a large number of ways. NMR spectroscopy can be used to unravel these structures, but the process may be tedious and time-consuming. The computerized approach based on the CASPER program can facilitate rapid structural determination of glycans with little user intervention, which results in the most probable primary structure of the investigated carbohydrate material. Additionally, (1)H and (13)C NMR chemical shifts of a user-defined structure can be predicted, and this tool may thus be employed in many aspects where NMR spectroscopy plays an important part of a study.
碳水化合物分子具有高度复杂的结构,其组成单糖和取代基以多种方式相互连接。核磁共振光谱可用于解析这些结构,但该过程可能繁琐且耗时。基于CASPER程序的计算机化方法能够在几乎无需用户干预的情况下促进聚糖结构的快速测定,从而得出所研究碳水化合物材料最可能的一级结构。此外,可以预测用户定义结构的(1)H和(13)C核磁共振化学位移,因此该工具可用于核磁共振光谱在研究中起重要作用的许多方面。