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首页> 外文期刊>Angewandte Chemie >The Role of Rotational Motion in Diffusion NMR Experiments on Supramolecular Assemblies: Application to Sup35NM Fibrils
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The Role of Rotational Motion in Diffusion NMR Experiments on Supramolecular Assemblies: Application to Sup35NM Fibrils

机译:旋转运动在超分子组件扩散NMR实验中的作用:Sup35nm原纤维的应用

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Pulsed-field gradient (PFG) NMR is an important tool for characterization of biomolecules and supramolecular assemblies. However, for micrometer-sized objects, such as amyloid fibrils, these experiments become difficult to interpret because in addition to translational diffusion they are also sensitive to rotational diffusion. We have constructed a mathematical theory describing the outcome of PFG NMR experiments on rod-like fibrils. To test its validity, we have studied the fibrils formed by Sup35NM segment of the prion protein Sup35. The interpretation of the PFG NMR data in this system is fully consistent with the evidence from electron microscopy. Contrary to some previously expressed views, the signals originating from disordered regions in the fibrils can be readily differentiated from the similar signals representing small soluble species (e.g. proteolytic fragments). This paves the way for diffusion-sorted NMR experiments on complex amyloidogenic samples.
机译:脉冲场梯度(PFG)NMR是表征生物分子和超分子组装体的重要工具。然而,对于微米大小的物体,如淀粉样纤维,这些实验变得很难解释,因为除了平移扩散,它们还对旋转扩散敏感。我们建立了一个数学理论来描述杆状纤维的PFG NMR实验结果。为了验证其有效性,我们研究了朊蛋白Sup35NM片段形成的原纤维。该系统中PFG NMR数据的解释与电子显微镜的证据完全一致。与之前表达的一些观点相反,来自原纤维无序区域的信号可以很容易地与代表小可溶性物种(例如蛋白水解片段)的类似信号区分开来。这为复杂淀粉样蛋白样品的扩散分类核磁共振实验铺平了道路。

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