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Supramolecular structures of peptide assemblies in membranes by neutron off-plane scattering: method of analysis

机译:中子离平面散射的膜中肽组装体的超分子结构:分析方法

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摘要

In a previous paper (Yang et al., Biophys. J. 75:641-645, 1998), we showed a simple, efficient method of recording the diffraction patterns of supramolecular peptide assemblies in membranes where the samples were prepared in the form of oriented multilayers. Here we develop a method of analysis based on the diffraction theory of two-dimensional liquids. Gramicidin was used as a prototype model because its pore structure in membrane in known. At full hydration, the diffraction patterns of alamethicin and magainin are similar to gramicidin except in the scale of q (the momentum transfer of scattering), clearly indicating that both alamethicin and magainin form pores in membranes but of different sizes. When the hydration of the multilayer samples was decreased while the bilayers were still fluid, the in-plane positions of the membrane pores became correlated from one bilayer to the next. We believe that this is a new manifestation of the hydration force. The effect is most prominent in magainin patterns, which are used to demonstrate the method of analysis. When magainin samples were further dehydrated or cooled, the liquid-like diffraction turned into crystal-like patterns. This discovery points to the possibility of investigating the supramolecular structures with high-order diffraction.
机译:在以前的论文中(Yang等人,Biophys。J. 75:641-645,1998),我们展示了一种简单有效的方法来记录膜中超分子肽组装体的衍射图样,其中样品以取向的多层。在这里,我们开发了一种基于二维液体衍射理论的分析方法。葛兰素被用作原型模型是因为其膜中的孔结构是已知的。在完全水合时,除蛋氨酸和麦胶苷的q尺度(散射的动量传递)外,其与阿米西丁的衍射图谱相似,清楚地表明,乐果霉素和麦胶苷均在膜上形成孔,但大小不同。当双层样品仍处于流动状态时降低多层样品的水合作用时,膜孔的面内位置从一个双层到下一个双层变得相关。我们认为这是水合作用力量的新体现。该效果在麦格宁图案中最为突出,可用于演示分析方法。当将洋甘菊样品进一步脱水或冷却时,液体状衍射变成晶体状图案。这一发现指出了用高阶衍射研究超分子结构的可能性。

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