Xu Q, Bush C A
Department of Chemistry and Biochemistry, University of Maryland Baltimore County 21228, USA.
Carbohydr Res. 1998 Jan;306(3):335-9. doi: 10.1016/s0008-6215(97)10099-4.
A quantitative coherence transfer scheme for 1H-detected measurement of long-range carbon-carbon coupling constants in NMR spectra of complex carbohydrates is described. It is applied to a uniformly highly 13C-enriched monosaccharide and to a complex cell wall polysaccharide from Streptococcus mitis J22 having seven distinct sugars in the repeating subunit. Coupling values within the ring were compared to published values for monosaccharides to demonstrate the validity of the method. An attempt was made to relate coupling constants between carbon atoms across the glycosidic linkage to the dihedral angles of a recently published flexible model for the polysaccharide which is based on 3JCH data. The experimental coupling constants do not agree with any single conformation demonstrating that the repeating subunit of the polysaccharide must be flexible. This conclusion is in accord with results of molecular modeling nuclear Overhauser effect and 3JCH data.
描述了一种用于在复杂碳水化合物的核磁共振谱中进行1H检测的远程碳-碳耦合常数测量的定量相干转移方案。该方案应用于均匀高度13C富集的单糖以及来自缓症链球菌J22的具有七个不同糖的重复亚基的复杂细胞壁多糖。将环内的耦合值与已发表的单糖值进行比较,以证明该方法的有效性。尝试将糖苷键上碳原子之间的耦合常数与基于3JCH数据的多糖最近发表的柔性模型的二面角相关联。实验耦合常数与任何单一构象均不一致,表明多糖的重复亚基必须是柔性的。这一结论与分子模拟核Overhauser效应和3JCH数据的结果一致。