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N-乙酰-D-allo 氨基糖的互变异构体:NMR 和计算化学研究。

Tautomers of N-acetyl-d-allosamine: an NMR and computational chemistry study.

机构信息

Jerzy Haber Institute of Catalysis and Surface Chemistry, Polish Academy of Sciences, 30-239 Krakow, Poland.

出版信息

Org Biomol Chem. 2021 Sep 7;19(33):7190-7201. doi: 10.1039/d1ob01139a. Epub 2021 Aug 12.

Abstract

d-Allosamine is a rare sugar in Nature but its pyranoid form has been found α-linked in the core region of the lipopolysaccharide from the Gram-negative bacterium Porphyromonas gingivalis and in the chitanase inhibitor allosamidin, then β-linked and N-acetylated. In water solution the monosaccharide N-acetyl-d-allosamine (d-AllNAc) shows a significant presence of four tautomers arising from pyranoid and furanoid ring forms and anomeric configurations. The furanoid ring forms both showed J≈ 4.85 Hz and to differentiate the anomeric configurations a series of chemical shift anisotropy/dipole-dipole cross-correlated relaxation NMR experiments was performed in which the α-anomeric form showed notable different relaxation rates for its components of the H1 doublet, thereby making it possible to elucidate the anomeric configuration of each of the furanoses. The conformational preferences of the different forms of d-AllNAc were investigated by J, J and J coupling constants from NMR experiments, molecular dynamics simulations and density functional theory calculations. The pyranose form resides in the C conformation and the furanose ring form has the majority of its conformers located on the South-East region of the pseudorotation wheel, with a small population in the Northern hemisphere. The tautomeric equilibrium was quite sensitive to changes in temperature, where the β-anomer of the pyranoid ring form decreased upon a temperature increase while the other forms increased.

摘要

d-Allosamine 在自然界中较为罕见,但它的吡喃糖形式已在革兰氏阴性菌牙龈卟啉单胞菌的脂多糖核心区域和几丁质酶抑制剂 allosamidin 中被发现呈α-连接,然后呈β-连接和 N-乙酰化。在水溶液中,单糖 N-乙酰-d-allo 胺(d-AllNAc)表现出四种互变异构体的显著存在,这些互变异构体来自吡喃糖和呋喃糖环形式以及端基构型。呋喃糖环形式均显示 J≈4.85Hz,为了区分端基构型,进行了一系列化学位移各向异性/偶极-偶极交叉相关弛豫 NMR 实验,其中α-端基构型的 H1 双峰的各个组成部分表现出明显不同的弛豫率,从而有可能阐明每个呋喃糖的端基构型。通过 NMR 实验、分子动力学模拟和密度泛函理论计算研究了不同形式的 d-AllNAc 的构象偏好。吡喃糖形式存在于 C 构象中,呋喃糖环形式的大多数构象位于伪旋转轮的东南区域,在北半球有少量构象。互变异构平衡对温度变化非常敏感,吡喃糖环形式的β-端基异构体随着温度升高而减少,而其他形式则增加。

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