Institute for Integrated Radiation and Nuclear Science, Kyoto University, Kumatori, Sennan-gun, Osaka, 590-0494, Japan.
Unisoku Co. Ltd., 3-4-2 Kasugano, Hirakata City, Osaka, 573-0131, Japan.
Sci Rep. 2019 Aug 30;9(1):12610. doi: 10.1038/s41598-019-48911-w.
To understand a biological system, it is important to observe structures of biomolecules in the solution where the system is functionalized. Small-Angle X-ray Scattering coupled with Size Exclusion Chromatography (SEC-SAXS) is one of techniques to selectively observe the target molecules in the multi-component system. However, this technique is believed to be available only with a synchrotron-based SAXS instrument due to requirement of high beam intensity and, therefore, the limitation of the beam time was obstacle to satisfy demands from many bio-researchers. We newly developed Laboratory-based Size exclusion chromatography SAXS System (La-SSS) by utilizing a latest laboratory-based SAXS instrument and finely optimization of the balance between flow rate, cell volume, irradiation time and so on. La-SSS succeeded not only decoupling of target protein(s) from non-specific aggregates but also measurement of each concerned component in a multi-component system. In addition, an option: "stopping mode", which is designed for improving statistics of SAXS profile, realized a high S/N data acquisition for the most interesting protein in a multi-component system. Furthermore, by utilizing a column having small bed volume, the small-scale SEC-SAXS study makes available. Through optimization of instrumental parameters and environments, La-SSS is highly applicable for experimental requirements from various biological samples. It is strongly expected that a La-SSS concept must be a normal option for laboratory-based SAXS in the near future.
为了理解生物系统,观察功能化体系中生物分子的结构非常重要。小角 X 射线散射结合尺寸排阻色谱(SEC-SAXS)是选择性观察多组分体系中目标分子的技术之一。然而,由于需要高强度光束,并且因此光束时间有限,这种技术据信仅可用于基于同步加速器的 SAXS 仪器,这成为了满足许多生物研究人员需求的障碍。我们通过利用最新的实验室 SAXS 仪器和对流速、池体积、辐照时间等之间的平衡进行精细优化,新开发了基于实验室的尺寸排阻小角 X 射线散射系统(La-SSS)。La-SSS 不仅成功地将目标蛋白(s)与非特异性聚集体分离开来,而且还可以测量多组分体系中的每个相关组分。此外,还设计了“停止模式”选项,旨在提高 SAXS 图谱的统计数据,为多组分体系中最感兴趣的蛋白质实现高信噪比数据采集。此外,通过使用具有小床体积的柱子,还可以进行小规模 SEC-SAXS 研究。通过对仪器参数和环境进行优化,La-SSS 非常适用于各种生物样品的实验要求。强烈期望在不久的将来,La-SSS 概念必须成为实验室 SAXS 的常规选择。