Department of Molecular Biology, The Scripps Research Institute, 10550 N Torrey Pines Rd., La Jolla, CA 92037, USA.
Methods. 2011 Dec;55(4):342-9. doi: 10.1016/j.ymeth.2011.08.013. Epub 2011 Aug 27.
The lipidic cubic phase (LCP) has repeatedly proven to serve as a successful membrane-mimetic matrix for a variety of difficult-to-crystallize membrane proteins. While monoolein has been the predominant lipid of choice, there is a growing need for the characterization and use of other LCP host lipids, allowing exploration of a range of structural parameters such as bilayer thickness and curvature for optimal insertion, stability and crystallogenesis of membrane proteins. Here, we describe the development of a high-throughput (HT) pipeline to employ small angle X-ray scattering (SAXS) - the most direct technique to identify lipid mesophases and measure their structural parameters - to interrogate rapidly a large number of lipid samples under a variety of conditions, similar to those encountered during crystallization. Leveraging the identical setup format for LCP crystallization trials, this method allows the quickly assessment of lipid matrices for their utility in membrane protein crystallization, and could inform the tailoring of lipid and precipitant conditions to overcome specific crystallization challenges. As proof of concept, we present HT LCP-SAXS analysis of lipid samples made of monoolein with and without cholesterol, and of monovaccenin, equilibrated with solutions used for crystallization trials and LCP fluorescence recovery after photobleaching (FRAP) experiments.
类脂立方相(LCP)已被反复证明可作为多种难以结晶的膜蛋白的成功的膜模拟基质。虽然单油酸甘油酯一直是主要的选择脂质,但人们越来越需要对其他 LCP 主体脂质进行特性描述和利用,以探索一系列结构参数,如双层厚度和曲率,从而实现膜蛋白的最佳插入、稳定性和结晶生成。在这里,我们描述了一种高通量(HT)管道的开发,该管道采用小角度 X 射线散射(SAXS)——最直接的技术来识别脂质中间相并测量其结构参数——来快速检测大量脂质样品在各种条件下的情况,类似于结晶过程中遇到的情况。利用 LCP 结晶试验的相同设置格式,该方法可以快速评估脂质基质在膜蛋白结晶中的适用性,并为调整脂质和沉淀剂条件以克服特定的结晶挑战提供信息。作为概念验证,我们展示了 HT LCP-SAXS 分析含有和不含有胆固醇的单油酸甘油酯以及单油酸甘油酯的脂质样品,以及与结晶试验和 LCP 荧光恢复后光漂白(FRAP)实验中使用的溶液平衡的单油酸甘油酯的分析。