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Hyaluronan: the absence of amide–carboxylate hydrogen bonds and the chain conformation in aqueous solution are incompatible with stable secondary and tertiary structure models

机译:透明质酸:水溶液中不存在酰胺-羧酸氢键和链构象与稳定的二级和三级结构模型不相容

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摘要

Contradictory descriptions for the aqueous solution conformation of the glycosaminoglycan hyaluronan (HA) exist in the literature. According to hydrodynamic and simulation data, HA molecules are stiffened by a rapidly interchanging network of transient hydrogen bonds at the local level and do not significantly associate at the global level. In marked contrast, models derived from NMR data suggest that the secondary structure involves persistent hydrogen bonds and that strong associations between chains can occur to form vast stable tertiary structures. These models require an extended 2-fold helical conformation of the HA chain and specific hydrogen bonds between amide and carboxylate groups. To test these descriptions, we have used 15N-labelled oligosaccharides and high-field NMR to measure pertinent properties of the acetamido group. The amide proton chemical shift perturbation and carboxylate group pKa value are inconsistent with a highly populated hydrogen bond between the amide and carboxylate groups. Amide proton temperature coefficients and chemical exchange rates confirm this conclusion. Comparison of oligomer properties with polymeric HA indicates that there is no discernible difference in amide proton environment between the centre of octasaccharides and the polymer, inconsistent with the formation of tertiary structures. A [1H-1H-15N] NOESY-HSQC (heteronuclear single-quantum correlation) spectrum recorded on an HA octasaccharide revealed that amide groups in the centre are in a trans orientation and that the average solution conformation is not an extended 2-fold helix. Therefore the two key aspects of the secondary and tertiary structure models are unlikely to be correct. Rather, these new NMR data agree with descriptions from hydrodynamic and simulations data.
机译:文献中存在关于糖胺聚糖透明质酸(HA)水溶液构象的矛盾描述。根据流体力学和模拟数据,HA分子在局部水平上通过瞬态氢键的快速交换网络而变硬,而在全局水平上则没有显着缔合。与之形成鲜明对比的是,从NMR数据得出的模型表明,二级结构涉及持久的氢键,并且链之间可能发生强缔合,从而形成巨大的稳定三级结构。这些模型要求HA链具有扩展的2倍螺旋构象,以及酰胺基团和羧酸酯基团之间的特定氢键。为了测试这些描述,我们使用了 15 N标记的寡糖和高场NMR来测量乙酰氨基的相关性质。酰胺质子的化学位移扰动和羧酸根基团的pKa值与酰胺基和羧酸根基团之间的氢键高度密集不一致。酰胺质子温度系数和化学交换率证实了这一结论。低聚物性能与聚合物HA的比较表明,八糖中心与聚合物之间酰胺质子环境没有明显差异,这与三级结构的形成不一致。 HA八糖上记录的[ 1 H- 1 H- 15 N] NOESY-HSQC(异核单量子相关性)光谱表明:中心的酰胺基处于反式方向,平均溶液构象不是扩展的2倍螺旋。因此,二级和三级结构模型的两个关键方面不太可能是正确的。相反,这些新的NMR数据与流体力学和模拟数据中的描述一致。

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