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透明质酸的溶液构象:核磁共振与分子动力学联合研究

The solution conformation of hyaluronan: a combined NMR and molecular dynamics study.

作者信息

Holmbeck S M, Petillo P A, Lerner L E

机构信息

Department of Chemistry, University of Wisconsin, Madison 53706.

出版信息

Biochemistry. 1994 Nov 29;33(47):14246-55. doi: 10.1021/bi00251a037.

DOI:10.1021/bi00251a037
PMID:7947836
Abstract

Hyaluronan (HA) is a negatively charged glycosaminoglycan that exhibits a wide variety of biological effects mediated by binding to cell-surface and extracellular matrix proteins (hyaladherins). Short HA oligosaccharides have been shown to retain the specific interactions and biological effects of high molecular weight HA. Although it has a simple disaccharide repeating unit, the aqueous solution conformation of HA has been very difficult to determine because of strong coupling and overlapping resonances. In this study, we propose aqueous solution conformations for an octasaccharide of HA, derived from proton-proton NOE data and restrained molecular dynamics. To overcome spectral overlap and strong coupling, alternate methods for extracting distance restraints were employed. Restrained molecular dynamics calculations yielded one set of interglycosidic angle values for the beta (1,3) linkage (phi 13 = 46 degrees, psi 13 = 24 degrees). In contrast, two sets of values for the beta (1,4) linkage were consistent with the NOE restraints (phi 14 = 24 degrees, psi 14 = -53 degrees or phi 14 = 48 degrees, psi 14 = 8 degrees). The potential difference in flexibility for the two linkages is consistent with unrestrained as well as the restrained molecular dynamics trajectories described here. The conformational parameters obtained from restrained molecular dynamics are used to predict helical parameters of high molecular weight HA and will provide a basis for studies of HA binding to proteins.

摘要

透明质酸(HA)是一种带负电荷的糖胺聚糖,通过与细胞表面和细胞外基质蛋白(透明质酸结合蛋白)结合发挥多种生物学效应。短链HA寡糖已被证明保留了高分子量HA的特定相互作用和生物学效应。尽管HA具有简单的二糖重复单元,但由于强烈的偶合和重叠共振,其水溶液构象一直很难确定。在本研究中,我们根据质子 - 质子NOE数据和受限分子动力学提出了HA八糖的水溶液构象。为了克服光谱重叠和强偶合,采用了提取距离约束的替代方法。受限分子动力学计算得出了一组β(1,3)连接的糖苷键角值(φ13 = 46°,ψ13 = 24°)。相比之下,β(1,4)连接的两组值与NOE约束一致(φ14 = 24°,ψ14 = -53°或φ14 = 48°,ψ14 = 8°)。两种连接在灵活性上的潜在差异与本文所述的无约束以及受限分子动力学轨迹一致。从受限分子动力学获得的构象参数用于预测高分子量HA的螺旋参数,并将为研究HA与蛋白质的结合提供基础。

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