Rundlöf T, Eriksson L, Widmalm G
Department of Organic Chemistry, Stockholm University, Sweden.
Chemistry. 2001 Apr 17;7(8):1750-8. doi: 10.1002/1521-3765(20010417)7:8<1750::aid-chem17500>3.0.co;2-x.
Proton-proton cross-relaxation rates have been measured for the trisaccharide beta-D-Glcp-(l --> 2)[beta-D-Glcp-(1 --> 3)]alpha-D-Glcp-OMe in D2O as well as in D2O/[D6]DMSO 7:3 solution at 30 degrees C by means of one-dimensional NMR pulsed field gradient 1H,1H NOESY and TROESY experiments. Interatomic distances for the trisaccharide in D2O were calculated from the cross-relaxation rates for two intraresidue and three interglycosidic proton pairs, using the isolated spin-pair approximation. In the solvent mixture one intraresidue and three interglycosidic distances were derived without the use of a specific molecular model. In this case the distances were calculated from the cross-relaxation rates in combination with "model-free" motional parameters previously derived from 13C relaxation measurements. The proton-proton distances for interglycosidic pairs were compared with those averaged from Metropolis Monte Carlo and Langevin Dynamics simulations with the HSEA, PARM22, and CHEAT95 force fields. The crystal structure of the trisaccharide was solved by analysis of X-ray data. Interresidue proton pairs from the crystal structure and those observed by NMR experiments were similar. However, the corresponding proton-proton distances generated by computer simulations were longer. For the (1 --> 2) linkage the glycosidic torsion angles of the crystal structure were found in a region of conformational space populated by all three force fields, whereas for the (1 --> 3) linkage they occupied a region of low population density, as seen from the simulations.
通过一维核磁共振脉冲场梯度1H、1H NOESY和TROESY实验,在30℃下测量了三糖β-D-葡萄糖-(1→2)[β-D-葡萄糖-(1→3)]α-D-葡萄糖-OMe在D2O以及D2O/[D6]DMSO 7:3溶液中的质子-质子交叉弛豫率。利用孤立自旋对近似,根据两个残基内和三个糖苷间质子对的交叉弛豫率计算了D2O中三糖的原子间距离。在溶剂混合物中,无需使用特定分子模型即可得出一个残基内和三个糖苷间的距离。在这种情况下,距离是根据交叉弛豫率结合先前从13C弛豫测量中得出的“无模型”运动参数计算得出的。将糖苷间质子对的质子-质子距离与使用HSEA、PARM22和CHEAT95力场的Metropolis蒙特卡罗和朗之万动力学模拟的平均值进行了比较。通过对X射线数据的分析解析了三糖的晶体结构。晶体结构中的残基间质子对与核磁共振实验观察到的质子对相似。然而,计算机模拟产生的相应质子-质子距离更长。对于(1→2)键,晶体结构的糖苷扭转角位于所有三个力场占据的构象空间区域,而对于(1→3)键,从模拟中可以看出,它们占据了低种群密度区域。