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通过量子力学、分子动力学和核磁共振对糖胺聚糖单糖进行分析。

Glycosaminoglycan monosaccharide blocks analysis by quantum mechanics, molecular dynamics, and nuclear magnetic resonance.

作者信息

Samsonov Sergey A, Theisgen Stephan, Riemer Thomas, Huster Daniel, Pisabarro M Teresa

机构信息

Structural Bioinformatics, BIOTEC, TU Dresden, Tatzberg 47-51, 01307 Dresden, Germany.

Institute of Medical Physics and Biophysics, University of Leipzig, Härtelstr. 16-18, 04107 Leipzig, Germany.

出版信息

Biomed Res Int. 2014;2014:808071. doi: 10.1155/2014/808071. Epub 2014 Apr 7.

Abstract

Glycosaminoglycans (GAGs) play an important role in many biological processes in the extracellular matrix. In a theoretical approach, structures of monosaccharide building blocks of natural GAGs and their sulfated derivatives were optimized by a B3LYP6311ppdd//B3LYP/6-31+G(d) method. The dependence of the observed conformational properties on the applied methodology is described. NMR chemical shifts and proton-proton spin-spin coupling constants were calculated using the GIAO approach and analyzed in terms of the method's accuracy and sensitivity towards the influence of sulfation, O1-methylation, conformations of sugar ring, and ω dihedral angle. The net sulfation of the monosaccharides was found to be correlated with the (1)H chemical shifts in the methyl group of the N-acetylated saccharides both theoretically and experimentally. The ω dihedral angle conformation populations of free monosaccharides and monosaccharide blocks within polymeric GAG molecules were calculated by a molecular dynamics approach using the GLYCAM06 force field and compared with the available NMR and quantum mechanical data. Qualitative trends for the impact of sulfation and ring conformation on the chemical shifts and proton-proton spin-spin coupling constants were obtained and discussed in terms of the potential and limitations of the computational methodology used to be complementary to NMR experiments and to assist in experimental data assignment.

摘要

糖胺聚糖(GAGs)在细胞外基质的许多生物过程中发挥着重要作用。在一种理论方法中,天然GAGs及其硫酸化衍生物的单糖结构单元通过B3LYP6311ppdd//B3LYP/6 - 31 + G(d)方法进行了优化。描述了所观察到的构象性质对所应用方法的依赖性。使用GIAO方法计算了NMR化学位移和质子 - 质子自旋 - 自旋耦合常数,并根据该方法对硫酸化、O1 - 甲基化、糖环构象和ω二面角影响的准确性和敏感性进行了分析。理论和实验均发现单糖的净硫酸化与N - 乙酰化糖类甲基中的(1)H化学位移相关。通过使用GLYCAM06力场的分子动力学方法计算了游离单糖和聚合GAG分子内单糖结构单元的ω二面角构象分布,并与现有的NMR和量子力学数据进行了比较。获得了硫酸化和环构象对化学位移和质子 - 质子自旋 - 自旋耦合常数影响的定性趋势,并根据用于补充NMR实验和辅助实验数据归属的计算方法的潜力和局限性进行了讨论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed42/3997902/90b0a6e17115/BMRI2014-808071.001.jpg

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