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首页> 外文期刊>International Journal of Molecular Sciences >Phospholipid Membrane Protection by Sugar Molecules during Dehydration—Insights into Molecular Mechanisms Using Scattering Techniques
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Phospholipid Membrane Protection by Sugar Molecules during Dehydration—Insights into Molecular Mechanisms Using Scattering Techniques

机译:糖分子在脱水过程中对磷脂膜的保护-利用散射技术的分子机理研究

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Scattering techniques have played a key role in our understanding of the structure and function of phospholipid membranes. These techniques have been applied widely to study how different molecules (e.g., cholesterol) can affect phospholipid membrane structure. However, there has been much less attention paid to the effects of molecules that remain in the aqueous phase. One important example is the role played by small solutes, particularly sugars, in protecting phospholipid membranes during drying or slow freezing. In this paper, we present new results and a general methodology, which illustrate how contrast variation small angle neutron scattering (SANS) and synchrotron-based X-ray scattering (small angle (SAXS) and wide angle (WAXS)) can be used to quantitatively understand the interactions between solutes and phospholipids. Specifically, we show the assignment of lipid phases with synchrotron SAXS and explain how SANS reveals the exclusion of sugars from the aqueous region in the particular example of hexagonal II phases formed by phospholipids.
机译:散射技术在我们对磷脂膜的结构和功能的理解中起着关键作用。这些技术已被广泛地用于研究不同分子(例如胆固醇)如何影响磷脂膜结构。然而,很少有人关注保留在水相中的分子的作用。一个重要的例子是小溶质,特别是糖,在干燥或缓慢冷冻过程中对磷脂膜的保护作用。在本文中,我们介绍了新的结果和通用方法,这些方法说明了对比度变化小角度中子散射(SANS)和基于同步加速器的X射线散射(小角度(SAXS)和广角(WAXS))如何用于定量了解溶质和磷脂之间的相互作用。具体而言,我们展示了同步加速器SAXS对脂质相的分配,并解释了SANS如何揭示在磷脂形成的六边形II相的特定示例中水相中糖的排除。

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