Landersjö Clas, Widmalm Göran
Department of Organic Chemistry, Arrhenius Laboratory, Stockholm University, S-106 91 Stockholm, Sweden.
Biopolymers. 2002 Sep;64(6):283-91. doi: 10.1002/bip.10188.
Conformational studies have been performed of a pentasaccharide derived from the O-polysaccharide from Escherichia coli O142. The polymer was selectively degraded by anhydrous hydrogen fluoride and reduced to yield an oligosaccharide model of its repeating unit, which in the branching region consists of four aminosugars. A comparison of (1)H and (13)C chemical shifts between the pentasaccharide and the polymer showed only minor differences, except where the cleavage had taken place, indicating that the oligomer is a good model of the repeating unit. Langevin dynamics and molecular dynamics simulations with explicit water molecules were carried out to sample the conformational space of the pentasaccharide. For the glycosidic linkages between the hexopyranoside residues, small but significant changes were observed between the simulation techniques. One-dimensional (1D) (1)H,(1)H double pulsed field gradient spin echo (DPFGSE) transverse rotating-frame Overhauser effect spectroscopy (T-ROESY) experiments were performed, and homonuclear cross-relaxation rates were obtained. Subsequently, a comparison of interproton distances from NMR experiment and the two simulation approaches showed that in all cases the use of explicit water in the simulations resulted in better agreement. Hydrogen-bond analysis of the trajectories from the molecular dynamics simulation revealed interresidue interactions to be important as a cluster of different hydrogen bonds and as a distinct highly populated hydrogen bond. NMR data are consistent with the presence of hydrogen bonding within the model of the repeating unit.
已对源自大肠杆菌O142 O-多糖的五糖进行了构象研究。该聚合物通过无水氟化氢选择性降解并还原,以产生其重复单元的寡糖模型,该重复单元在分支区域由四个氨基糖组成。五糖与聚合物之间的(1)H和(13)C化学位移比较显示,除了发生裂解的位置外,只有微小差异,这表明该寡聚物是重复单元的良好模型。进行了朗之万动力学和带有明确水分子的分子动力学模拟,以采样五糖的构象空间。对于己吡喃糖苷残基之间的糖苷键,在模拟技术之间观察到了微小但显著的变化。进行了一维(1D)(1)H,(1)H双脉冲场梯度自旋回波(DPFGSE)横向旋转框架Overhauser效应光谱(T-ROESY)实验,并获得了同核交叉弛豫率。随后,将NMR实验以及两种模拟方法得到的质子间距离进行比较,结果表明在所有情况下,模拟中使用明确的水都能得到更好的一致性。对分子动力学模拟轨迹的氢键分析表明,残基间相互作用很重要,它表现为不同氢键的簇以及一个明显高度占据的氢键。NMR数据与重复单元模型中存在氢键一致。