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Advances in glycosaminoglycanomics by 15N-NMR spectroscopy

机译:15N-NMR光谱法在糖胺糖组学方面的进展

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Recent developments to enhance sensitivity in solution NMR spectroscopy such as the advent and spread of the use of high magnetic fields, cryoprobe technology, isotopic labeling techniques, and new combinations of 2D experiments have pushed the limits in structural NMR analysis of glycosaminoglycans (GAGs). This review is dedicated to the less sensitive 15N isotope of hexosamines rather than the commonly used anomeric and ring 1H and 13C resonances of uronic acids and hexosamines. Given that GAG types are basically classified on the basis of their composing hexosamine types together with variations of their sulfation patterns, and epimerized forms of the adjacent uronic acids, 15N-related NMR studies on native GAGs, oligosaccharides, or the various composing amino sugars have proved to be quite useful in the retrieval of both structural and dynamic information, despite the low number of resultant peaks. This in turn reduces significantly chemical shift degeneracy and at the same time facilitates spin and structural assignments. This review covers the principal contributions made so far by solution 15N-NMR spectroscopy to progress in the structural biology of GAGs in the current glycomics age.
机译:增强溶液NMR光谱灵敏度的最新进展,例如高磁场的出现和普及,冷冻探针技术,同位素标记技术以及2D实验的新组合,已突破了糖胺聚糖(GAG)的结构NMR分析的极限。这篇综述致力于对六胺的不太敏感的15N同位素,而不是对糖醛酸和六胺的常用的异头异构体和1H和13C环共振。鉴于GAG类型基本上是根据其组成的己糖胺类型,其硫酸化模式的变化以及相邻糖醛酸的差向异构形式进行分类的,因此对天然GAG,低聚糖或各种组成的氨基糖的15N相关NMR研究尽管结果峰的数量很少,但事实证明,它在检索结构信息和动态信息方面非常有用。反过来,这大大降低了化学位移的简并性,同时有利于自旋和结构分配。这篇综述涵盖了溶液15N-NMR光谱迄今为止为在当前糖组学时代GAGs的结构生物学方面的进步所做的主要贡献。

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