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首页> 外文期刊>Glycoconjugate journal >The structural plasticity of heparan sulfate NA-domains and hence their role in mediating multivalent interactions is confirmed by high-accuracy N-15-NMR relaxation studies
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The structural plasticity of heparan sulfate NA-domains and hence their role in mediating multivalent interactions is confirmed by high-accuracy N-15-NMR relaxation studies

机译:高精度N-15-NMR弛豫研究证实了硫酸乙酰肝素NA结构域的结构可塑性及其在介导多价相互作用中的作用

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Considering the biological importance of heparan sulfate (HS) and the significant activity of its highly-sulfated regions (S-domains), the paucity of known functions for the non-sulfated NA-domains is somewhat puzzling. It has been suggested that chain dynamics within the NA-domains are the key to their functional role in HS. In this study, we investigate this hypothesis using state-of-the-art nuclear magnetic resonance (NMR) experiments at multiple frequencies. To resolve the problem of severe overlap in H-1-NMR spectra of repetitive polysaccharides from proteoglycans, we have prepared oligosaccharides with the chemical structure of HS NA-domains containing the N-15 nucleus, which has enough chemical shift dispersion to probe the central residues of octasaccharides at atomic resolution using 600 MHz NMR. By performing NMR relaxation experiments at three magnetic-field strengths, high quality data on internal dynamics and rotational diffusion was obtained. Furthermore, translational diffusion could also be measured by NMR using pulse field gradients. These experimental data were used, in concert with molecular dynamics simulations, to provide information on local molecular shape, greatly aiding our relaxation analyses. Our results, which are more accurate than those presented previously, confirm the higher flexibility of the NA-domains as compared with reported data on S-domains. It is proposed that this flexibility has two functional roles. First, it confers a greater area of interaction from the anchoring point on the core protein for the bioactive S-domains. Secondly, it allows multiple interactions along the same HS chain that are dynamically independent of each other.
机译:考虑到硫酸乙酰肝素(HS)的生物学重要性及其高度硫酸化区域(S-结构域)的显着活性,对于非硫酸化NA结构域,已知功能的匮乏有些令人费解。已经提出,NA域内的链动力学是它们在HS中功能作用的关键。在这项研究中,我们使用最新的核磁共振(NMR)实验在多个频率上研究了这一假设。为了解决蛋白聚糖重复多糖在H-1-NMR光谱中严重重叠的问题,我们制备了具有HS N域结构的寡糖,其化学结构包含N-15核,具有足够的化学位移分散度以探测中心使用600 MHz NMR以原子分辨率分离八糖残基。通过在三个磁场强度下进行NMR弛豫实验,获得了有关内部动力学和旋转扩散的高质量数据。此外,还可以使用脉冲场梯度通过NMR测量平移扩散。这些实验数据与分子动力学模拟一起用于提供有关局部分子形状的信息,极大地帮助了我们的弛豫分析。我们的结果比以前提供的结果更准确,证实了与S域报告的数据相比,NA域具有更高的灵活性。建议该灵活性具有两个功能角色。首先,它为生物活性的S结构域从核心蛋白上的固定点赋予更大的相互作用区域。其次,它允许沿着同一HS链的多个交互,这些交互彼此动态独立。

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