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碳水化合物中异头碳的13C固态核磁共振化学位移各向异性分析

13C solid-state NMR chemical shift anisotropy analysis of the anomeric carbon in carbohydrates.

作者信息

Chen Ying-Ying, Luo Shun-Yuan, Hung Shang-Cheng, Chan Sunney I, Tzou Der-Lii M

机构信息

Institute of Chemistry, Academia Sinica, Nankang, Taipei 11529, Taiwan, ROC.

出版信息

Carbohydr Res. 2005 Mar 21;340(4):723-9. doi: 10.1016/j.carres.2005.01.018.

Abstract

(13)C NMR solid-state structural analysis of the anomeric center in carbohydrates was performed on six monosaccharides: glucose (Glc), mannose (Man), galactose (Gal), galactosamine hydrochloride (GalN), glucosamine hydrochloride (GlcN), and N-acetyl-glucosamine (GlcNAc). In the 1D (13)C cross-polarization/magic-angle spinning (CP/MAS) spectrum, the anomeric center C-1 of these carbohydrates revealed two well resolved resonances shifted by 3-5ppm, which were readily assigned to the anomeric alpha and beta forms. From this experiment, we also extracted the (13)C chemical shift anisotropy (CSA) tensor elements of the two forms from their spinning sideband intensities, respectively. It was found out that the chemical shift tensor for the alpha anomer was more axially symmetrical than that of the beta form. A strong linear correlation was obtained when the ratio of the axial asymmetry of the (13)C chemical shift tensors of the two anomeric forms was plotted in a semilogarithmic plot against the relative population of the two anomers. Finally, we applied REDOR spectroscopy to discern whether or not there were any differences in the sugar ring conformation between the anomers. Identical two-bond distances of 2.57A (2.48A) were deduced for both the alpha and beta forms in GlcNAc (GlcN), suggesting that the two anomers have essentially identical sugar ring scaffolds in these sugars. In light of these REDOR distance measurements and the strong correlation observed between the ratio of the axial asymmetry parameters of the (13)C chemical shift tensors and the relative population between the two anomeric forms, we concluded that the anomeric effect arises principally from interaction of the electron charge clouds between the C-1-O-5 and the C-1-O-1 bonds in these monosaccharides.

摘要

对六种单糖进行了碳水化合物异头中心的(13)C核磁共振固态结构分析,这六种单糖分别是:葡萄糖(Glc)、甘露糖(Man)、半乳糖(Gal)、盐酸半乳糖胺(GalN)、盐酸葡萄糖胺(GlcN)和N-乙酰葡萄糖胺(GlcNAc)。在一维(13)C交叉极化/魔角旋转(CP/MAS)谱中,这些碳水化合物的异头中心C-1显示出两个分辨率良好的共振峰,位移为3-5ppm,很容易归属于异头α型和β型。通过这个实验,我们还分别从它们的旋转边带强度中提取了两种形式的(13)C化学位移各向异性(CSA)张量元素。结果发现,α异头物的化学位移张量比β型更具轴向对称性。当将两种异头形式的(13)C化学位移张量的轴向不对称比绘制在半对数图中与两种异头物的相对丰度作图时,得到了很强的线性相关性。最后,我们应用REDOR光谱来辨别异头物之间的糖环构象是否存在差异。在GlcNAc(GlcN)中,α型和β型的二键距离均推定为相同的2.57埃(2.48埃),这表明在这些糖中,两种异头物具有基本相同的糖环骨架。鉴于这些REDOR距离测量结果以及在(13)C化学位移张量的轴向不对称参数比与两种异头形式之间的相对丰度之间观察到的强相关性,我们得出结论,异头效应主要源于这些单糖中C-1-O-5和C-1-O-1键之间的电子电荷云相互作用。

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