Institute of Molecular Bioscience, NAWI Graz, University of Graz, Graz, Austria; Field of Excellence BioHealth-University of Graz, Graz, Austria.
Institute of Molecular Bioscience, NAWI Graz, University of Graz, Graz, Austria; Field of Excellence BioHealth-University of Graz, Graz, Austria.
Methods Enzymol. 2024;700:349-383. doi: 10.1016/bs.mie.2024.02.017. Epub 2024 Mar 19.
Small-angle X-ray and neutron scattering (SAXS/SANS) techniques excel in unveiling intricate details of the internal structure of lipid membranes under physiologically relevant temperature and buffer conditions, all without the need to resort to bulky labels. By concurrently conducting and analyzing neutron and X-ray data, these methods harness the complete spectrum of contrast and resolution from various components constituting lipid membranes. Despite this, the literature exhibits only a sparse presence of applications compared to other techniques in membrane biophysics. This chapter serves as a primer for conducting joint SAXS/SANS analyses on symmetric and asymmetric large unilamellar vesicles, elucidating fundamental elements of the analysis process. Specifically, we introduce the basics of interactions of X-rays and neutrons with matter that lead to the scattering contrast and a description of membrane structure in terms of scattering length density profiles. These profiles allow fitting of the experimentally observed scattering intensity. We further integrate practical insights, unveiling strategies for successful data acquisition and providing a comprehensive assessment of the technique's advantages and drawbacks. By amalgamating theoretical underpinnings with practical considerations, this chapter aims to dismantle barriers hindering the adoption of joint SAXS/SANS approaches, thereby encouraging an influx of studies in this domain.
小角 X 射线和中子散射(SAXS/SANS)技术擅长在生理相关的温度和缓冲条件下揭示脂质膜内部结构的复杂细节,而无需使用庞大的标签。通过同时进行和分析中子和 X 射线数据,这些方法利用脂质膜组成的各种成分的对比度和分辨率的完整光谱。尽管如此,与膜生物物理学中的其他技术相比,文献中的应用仍然很少。本章旨在为对称和非对称大单室囊泡的联合 SAXS/SANS 分析提供指南,阐明分析过程的基本要素。具体来说,我们介绍了 X 射线和中子与物质相互作用的基础知识,这些相互作用导致散射对比度,并以散射长度密度分布的形式描述膜结构。这些分布允许拟合实验观察到的散射强度。我们进一步整合了实用见解,揭示了成功获取数据的策略,并全面评估了该技术的优缺点。通过将理论基础与实际考虑相结合,本章旨在消除阻碍联合 SAXS/SANS 方法采用的障碍,从而鼓励该领域的研究涌入。