首页> 外文OA文献 >Conformation and Dynamics at a Flexible Glycosidic Linkage Revealed by NMR Spectroscopy and Molecular Dynamics Simulations : Analysis of β-ʟ-Fucp-(1→6)-α-ᴅ-Glcp-OMe in Water Solution
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Conformation and Dynamics at a Flexible Glycosidic Linkage Revealed by NMR Spectroscopy and Molecular Dynamics Simulations : Analysis of β-ʟ-Fucp-(1→6)-α-ᴅ-Glcp-OMe in Water Solution

机译:核磁共振波谱和分子动力学模拟揭示的柔性糖苷键上的构象和动力学:水溶液中β-ʟ-Fucp-(1→6)-α-ᴅ-Glcp-OMe的分析

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摘要

The intrinsic flexibility of carbohydrates facilitates different 3D structures in response to altered environments. At glycosidic (1 -> 46)-linkages, three torsion angles are variable, and herein the conformation and dynamics of beta-1.-Fucp-(1 -> 6)-alpha-D-Glcp-OMe are investigated using a combination of NMR spectroscopy and molecular dynamics (MD) simulations. The disaccharide shows evidence of conformational averaging for the psi and co torsion angles, best explained by a four-state conformational distribution. Notably, there is a significant population of conformations having psi = 85 degrees (clinal) in addition to those having psi = 180 degrees (anfiperiplanar). Moderate differences in C-13 R-1 relaxation rates are found to be best explained by axially symmetric tumbling in combination with minor differences in librational motion for the two residues, whereas the isomerization motions are occurring too slowly to significantly to the observed relaxation rates. The MD simulation was found to give a reasonably good agreement with experiment, especially with respect to diffusive properties, among which the rotational anisotropy, D parallel to/D parallel to, is found to be 2.35. The force field employed showed too narrow omega torsion angles in the gauche trans and gauche gauche states as well as overestimating the population of the gauche trans conformer. This information can subsequently be used in directing parameter developments and emphasizes the need for refinement of force fields for (1 -> 6)-linked carbohydrates.
机译:碳水化合物的固有柔韧性有助于响应变化的环境而形成不同的3D结构。在糖苷(1-> 46)链上,三个扭转角是可变的,在此使用组合方法研究β-1.-Fucp-(1-> 6)-α-D-Glcp-OMe的构象和动力学NMR光谱学和分子动力学(MD)模拟。二糖显示了psi和扭转角构象平均的证据,最好用四态构象分布来解释。值得注意的是,除了那些具有psi = 180度(前平面)的构象外,还有大量的psi = 85度(斜形)构象。发现C-13 R-1弛豫速率的中度差异最好通过轴向对称翻转结合两个残基的自由运动中的较小差异而得到最好的解释,而异构化运动发生得太慢而无法显着观察到弛豫速率。发现MD模拟与实验相当合理地吻合,特别是在扩散特性方面,发现旋转各向异性D与/平行于D的各向异性为2.35。所使用的力场显示了反式和反式状态下的欧米伽扭转角太窄,并且高估了反式适形器的数量。该信息随后可用于指导参数的开发,并强调了对(1-> 6)连接的碳水化合物的力场进行精修的需要。

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