Morishima Ken, Inoue Rintaro, Nakagawa Tatsuo, Shimizu Masahiro, Sakamoto Ritsuki, Oda Tatsuro, Mayumi Koichi, Sugiyama Masaaki
Institute for Integrated Radiation and Nuclear Science Kyoto University Kumatori, Sennan-gun Osaka590-0494 Japan.
Unisoku Co. Ltd, 2-4-3 Kasugano, Hirakata, Osaka573-0131, Japan.
J Appl Crystallogr. 2025 Feb 11;58(Pt 2):595-602. doi: 10.1107/S1600576725000779. eCollection 2025 Apr 1.
Biomacromolecular solutions inevitably contain impurities in addition to the target biomacromolecules. This has been a major obstacle to achieving high-precision solution scattering measurements. To overcome this problem, small-angle X-ray scattering (SAXS) coupled with size-exclusion chromatography (SEC-SAXS) has been developed. This method involves injecting the solution eluted by SEC directly into a measurement cell and conducting SAXS measurements during the elution of the target biomacromolecule. This technique has resulted in a paradigm shift in biomacromolecule solution scattering. Currently, the application of the SEC-SAXS system to small-angle neutron scattering (SANS) is being advanced. However, since the target biomacro-mol-ecules in the sample solution are not only purified but also diluted by SEC and pass through the sample cell in a short time, this method is being implemented in SANS instruments at high neutron flux. Here, we developed a new type of SEC-SANS system that can operate effectively with a SANS instrument at medium neutron flux. Its key innovation is the design and optimization of a dedicated flow path that allows for the storage of only the target biomolecules eluted from SEC in the sample cell. This innovation enables long-duration measurements, termed the 'stopping mode', for SEC samples. Consequently, this method allows for acquiring high-precision solution scattering data for target biomacromol-ecules, enabling SEC-SANS measurements even with SANS instruments at medium neutron flux.
生物大分子溶液中除了目标生物大分子外不可避免地含有杂质。这一直是实现高精度溶液散射测量的主要障碍。为了克服这个问题,人们开发了结合尺寸排阻色谱的小角X射线散射技术(SEC-SAXS)。该方法包括将尺寸排阻色谱洗脱的溶液直接注入测量池,并在目标生物大分子洗脱过程中进行小角X射线散射测量。这项技术导致了生物大分子溶液散射领域的范式转变。目前,尺寸排阻色谱-小角中子散射(SEC-SANS)系统在小角中子散射(SANS)中的应用正在推进。然而,由于样品溶液中的目标生物大分子不仅被尺寸排阻色谱纯化,还被稀释,并且在短时间内通过样品池,因此该方法正在高中子通量的小角中子散射仪器中实施。在此,我们开发了一种新型的尺寸排阻色谱-小角中子散射系统,它可以在中等中子通量的小角中子散射仪器上有效运行。其关键创新在于设计和优化了一条专用流路,该流路允许仅将尺寸排阻色谱洗脱的目标生物分子储存在样品池中。这一创新实现了对尺寸排阻色谱样品的长时间测量,即“停止模式”。因此,该方法能够获取目标生物大分子的高精度溶液散射数据,即使使用中等中子通量的小角中子散射仪器也能进行尺寸排阻色谱-小角中子散射测量。