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糖苷α-连接甘露吡喃糖二糖:使用加和性和德鲁德极化力场的 NMR 光谱和分子动力学模拟研究。

Glycosidic α-linked mannopyranose disaccharides: an NMR spectroscopy and molecular dynamics simulation study employing additive and Drude polarizable force fields.

机构信息

Department of Organic Chemistry, Arrhenius Laboratory, Stockholm University, S-106 91 Stockholm, Sweden.

Department of Pharmaceutical Sciences, School of Pharmacy, University of Maryland, Baltimore, Maryland 21201, USA.

出版信息

Phys Chem Chem Phys. 2023 Jan 27;25(4):3042-3060. doi: 10.1039/d2cp05203b.

Abstract

D-Mannose is a structural component in N-linked glycoproteins from viruses and mammals as well as in polysaccharides from fungi and bacteria. Structural components often consist of D-Man residues joined α-(1→2)-, α-(1→3)-, α-(1→4)- or α-(1→6)-linkages. As models for these oligo- and polysaccharides, a series of mannose-containing disaccharides have been investigated with respect to conformation and dynamics. Translational diffusion NMR experiments were performed to deduce rotational correlation times for the molecules, 1D H,H-NOESY and 1D H,H-T-ROESY NMR experiments were carried out to obtain inter-residue proton-proton distances and one-dimensional long-range and 2D J-HMBC experiments were acquired to gain information about conformationally dependent heteronuclear coupling constants across glycosidic linkages. To attain further spectroscopic data, the doubly C-isotope labeled α-D-[1,2-C]Man-(1→4)-α-D-Man-OMe was synthesized thereby facilitating conformational analysis based on C,C coupling constants as interpreted by Karplus-type relationships. Molecular dynamics simulations were carried out for the disaccharides with explicit water as solvent using the additive CHARMM36 and Drude polarizable force fields for carbohydrates, where the latter showed broader population distributions. Both simulations sampled conformational space in such a way that inter-glycosidic proton-proton distances were very well described whereas in some cases deviations were observed between calculated conformationally dependent NMR scalar coupling constants and those determined from experiment, with closely similar root-mean-square differences for the two force fields. However, analyses of dipole moments and radial distribution functions with water of the hydroxyl groups indicate differences in the underlying physical forces dictating the wider conformational sampling with the Drude polarizable additive C36 force field and indicate the improved utility of the Drude polarizable model in investigating complex carbohydrates.

摘要

D-甘露糖是病毒和哺乳动物的 N-连接糖蛋白以及真菌和细菌多糖中的结构成分。结构成分通常由通过α-(1→2)-、α-(1→3)-、α-(1→4)-或α-(1→6)-键连接的 D-Man 残基组成。作为这些寡糖和多糖的模型,已经研究了一系列含有甘露糖的二糖的构象和动力学。进行了平移扩散 NMR 实验以推导出分子的旋转相关时间,进行了 1D H,H-NOESY 和 1D H,H-T-ROESY NMR 实验以获得残基间质子-质子距离和一维远程和 2D J-HMBC 实验以获得关于糖苷键处构象相关异核偶合常数的信息。为了获得进一步的光谱数据,合成了双 C-同位素标记的α-D-[1,2-C]Man-(1→4)-α-D-Man-OMe,从而基于 Karplus 型关系解释的 C,C 偶合常数进行构象分析。使用加性 CHARMM36 和 Drude 极化力场进行了二糖的分子动力学模拟,其中后者显示出更广泛的种群分布。这两种模拟都以这样的方式采样构象空间,使得糖苷内质子-质子距离得到很好的描述,而在某些情况下,计算出的构象相关 NMR 标量偶合常数与实验确定的偶合常数之间存在偏差,对于这两种力场,其均方根差非常接近。然而,对羟基的偶极矩和径向分布函数与水的分析表明,决定 Drude 极化加性 C36 力场更广泛构象采样的潜在物理力存在差异,并表明在研究复杂碳水化合物时,Drude 极化模型的改进实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ef4/9890503/540c1fe264aa/d2cp05203b-f1.jpg

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