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Molecular structure of hyaluronan: an introduction

机译:透明质酸的分子结构:简介

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摘要

Hyaluronan is an unbranched polysaccharide of repeating disaccharides consisting of d-glucuronic acid and N-acetyl-d-glucosamine. Its strong water-retaining ability and visco-elastic properties have been broadly utilized in medical applications. Hyaluronan is an important constituent of the extracellular matrix whose physiological functions are manifested both as the substance is by itself as well as when it is being linked to various proteins. Compared with other biopolymers, such as nucleic acids and proteins, the structural chemistry of hyaluronan is much less developed. The scarce information about the metrical aspects of its structure shows no unusual features. Its secondary structure is characterized by intramolecular hydrogen bonding that is hard to distinguish from hydrogen bonding involving water molecules when hyaluronan is in aqueous medium. The tertiary structure of hyaluronan is sensitively dependent on its environment. The relative rigidity of the glycosidic bond and the intramolecular hydrogen bonds would tend to restrict rotational freedom and thus conformational variability. This, however, seems to be overwritten by the impact of molecular environment leading to a great variability of tertiary structure. A large number of conformations are possible and may be present as witnessed by their rather small free energy differences. Of the plethora of physical techniques and computational methods, X-ray crystallography and molecular dynamics calculations have proved to be the most fruitful so far. There are untapped possibilities in NMR spectroscopy for structural studies and quantum chemical calculations are also expected to contribute substantially to the structural chemistry of hyaluronan. There are many basic data as well as structural intricacies of hyaluronan that have so far eluded the researchers of its molecular structure.
机译:透明质酸是由d-葡萄糖醛酸和N-乙酰基-d-葡萄糖胺组成的重复二糖的直链多糖。其强大的保水能力和粘弹性质已被广泛用于医疗应用。透明质酸是细胞外基质的重要组成部分,其物质的本身以及与各种蛋白质连接时均表现出生理功能。与其他生物聚合物(例如核酸和蛋白质)相比,乙酰透明质酸的结构化学还不发达。关于其结构的度量方面的稀缺信息没有显示任何异常特征。它的二级结构的特征是分子内氢键,当透明质酸在水性介质中时,很难与涉及水分子的氢键区分开。透明质酸的三级结构敏感地取决于其环境。糖苷键和分子内氢键的相对刚性将倾向于限制旋转自由度,从而限制构象变异性。然而,这似乎被分子环境的影响所覆盖,从而导致三级结构的巨大变化。大量构象是可能的,并可能以其相当小的自由能差异来证明。在众多的物理技术和计算方法中,X射线晶体学和分子动力学计算被证明是迄今为止最有成果的。 NMR光谱学有尚未开发的可能性用于结构研究,并且量子化学计算也有望大大有助于透明质酸的结构化学。迄今为止,透明质酸的分子结构的研究人员还没有涉及许多基本数据以及结构上的复杂性。

著录项

  • 来源
    《Structural Chemistry》 |2008年第5期|697-717|共21页
  • 作者单位

    Department of Inorganic and Analytical Chemistry and Materials Structure and Modeling Research Group of the Hungarian Academy of Sciences Budapest University of Technology and Economics P.O. Box 91 Budapest 1521 Hungary;

    Department of Inorganic and Analytical Chemistry and Materials Structure and Modeling Research Group of the Hungarian Academy of Sciences Budapest University of Technology and Economics P.O. Box 91 Budapest 1521 Hungary;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hyaluronic acid; Hyaluronan; Biopolymers; Fibrous polymers; Visco-elastic properties; Conformations; Double helix;

    机译:透明质酸;透明质酸;生物聚合物;纤维状聚合物;粘弹性;构象;双螺旋;

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