Shi Fan, Zhang Tong, Li Juan, Shi Chaowei, Xiang Shengqi
MOE Key Lab for Cellular Dynamics, School of Life Sciences, Division of Life Sciences and Medicine, University of Science and Technology of China, Hefei 230026, China.
Hefei National Laboratory for Physical Sciences at Microscale, University of Science and Technology of China, Hefei 230026, China.
Biophys Rep. 2024 Aug 31;10(4):201-212. doi: 10.52601/bpr.2024.240014.
Sedimentation solid-state NMR is a novel method for sample preparation in solid-state NMR (ssNMR) studies. It involves the sedimentation of soluble macromolecules such as large protein complexes. By utilizing ultra-high centrifugal forces, the molecules in solution are driven into a high-concentrated hydrogel, resulting in a sample suitable for solid-state NMR. This technique has the advantage of avoiding the need for chemical treatment, thus minimizing the loss of sample biological activity. Sediment ssNMR has been successfully applied to a variety of non-crystalline protein solids, significantly expanding the scope of solid-state NMR research. In theory, using this method, any biological macromolecule in solution can be transferred into a sedimented solute appropriate for solid-state NMR analysis. However, specialized equipment and careful handling are essential for effectively collecting and loading the sedimented solids to solid-state NMR rotors. To improve efficiency, we have designed a series of loading tools to achieve the loading process from the solution to the rotor in one step. In this paper, we illustrate the sample preparation process of sediment NMR using the H1.4-NCP complex, which consists of linker histone H1.4 and nucleosome core particle, as an example.
沉降固态核磁共振是固态核磁共振(ssNMR)研究中一种新型的样品制备方法。它涉及可溶性大分子(如大型蛋白质复合物)的沉降。通过利用超高离心力,溶液中的分子被驱入高浓度水凝胶中,从而得到适合固态核磁共振的样品。该技术的优点是无需化学处理,从而将样品生物活性的损失降至最低。沉降ssNMR已成功应用于多种非晶态蛋白质固体,显著扩展了固态核磁共振研究的范围。理论上,使用这种方法,溶液中的任何生物大分子都可以转化为适合固态核磁共振分析的沉降溶质。然而,专用设备和仔细操作对于有效地将沉降固体收集并装入固态核磁共振转子至关重要。为了提高效率,我们设计了一系列加载工具,以实现从溶液到转子的一步加载过程。在本文中,我们以由连接组蛋白H1.4和核小体核心颗粒组成的H1.4-NCP复合物为例,说明沉降核磁共振的样品制备过程。