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Evidences that ¥a-Lactose Forms Hydrogen Bonds in DMSO

机译:¥α-乳糖在DMSO中形成氢键的证据

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Glycoproteins and glycolipids play key roles in intracellular reactions between cells and their environments at the membrane surface. For better understanding of the nature of these events, it is necessary to know threedimensional structures of those carbohydrates, involved in them. Since carbohydrates contain many hydroxyl groups which can serve both as hydrogen bond donors and acceptors, hydrogen bond is an important factor stabilizing the structure of carbohydrate. DMSO is an aprotic solvent frequently used for the study of carbohydrates because it gives detailed insight into the intramolecular hydrogen bond network. In this study, conformational properties and the hydrogen bonds in モ-lactose in DMSO are investigated by NMR spectroscopy and molecular dynamics simulations. NOEs, temperature coefficients, deuterium isotope effect, and molecular dynamics simulations proved that there is a strong intramolecular hydrogen bond between O3 and HO2` in モ-lactose and also OH3 in モ-lactose may form an intermolecular hydrogen bond with DMSO.
机译:糖蛋白和糖脂在细胞及其膜表面环境之间的细胞内反应中起关键作用。为了更好地了解这些事件的性质,有必要了解这些碳水化合物所涉及的三维结构。由于碳水化合物包含许多可以同时用作氢键供体和受体的羟基,因此氢键是稳定碳水化合物结构的重要因素。 DMSO是一种非质子溶剂,通常用于碳水化合物的研究,因为它可以深入了解分子内的氢键网络。在这项研究中,通过NMR光谱和分子动力学模拟研究了DMSO中的乳糖中的构象性质和氢键。 NOEs,温度系数,氘同位素效应和分子动力学模拟证明,Mo-乳糖中的O3和HO2`之间存在很强的分子内氢键,而Mo-乳糖中的OH3可能与DMSO形成分子间氢键。

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