Synchrotron X-ray and neutron small-angle scattering of lyotropic lipid mesophases, model biomembranes and proteins in solution at high pressure

Roland Winter
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引用次数: 151

Abstract

In this review we discuss the use of X-ray and neutron diffraction methods for investigating the temperature- and pressure-dependent structure and phase behaviour of lipid and model biomembrane systems. Hydrostatic pressure has been used as a physical parameter for studying the stability and energetics of lipid mesophases, but also because high pressure is an important feature of certain natural membrane environments and because the high pressure phase behaviour of biomolecules is of importance for several biotechnological processes. Using the pressure jump relaxation technique in combination with time-resolved synchrotron X-ray diffraction, the kinetics of different lipid phase transformations was investigated. The techniques can also be applied to the study of other soft matter and biomolecular phase transformations, such as surfactant phase transitions and protein un/refolding reactions. Several examples are given. In particular, we present data on the pressure-induced unfolding and refolding of small proteins, such as Snase. The data are compared with the corresponding results obtained using other trigger mechanisms and are discussed in the light of recent theoretical approaches.

高压溶液中溶性脂质中间相、模型生物膜和蛋白质的同步x射线和中子小角散射
在这篇综述中,我们讨论了使用x射线和中子衍射方法来研究脂质和模型生物膜系统的温度和压力相关的结构和相行为。静水压力已被用作研究脂质中间相稳定性和能量学的物理参数,但也因为高压是某些天然膜环境的重要特征,而且生物分子的高压相行为对一些生物技术过程很重要。采用压力跳变弛豫技术结合时间分辨同步加速器x射线衍射,研究了不同脂质相变的动力学。该技术也可以应用于其他软物质和生物分子相变的研究,如表面活性剂相变和蛋白质的反/再折叠反应。给出了几个例子。特别是,我们提出了压力诱导的小蛋白展开和再折叠的数据,如Snase。这些数据与其他触发机制得到的相应结果进行了比较,并根据最新的理论方法进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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