利用固态核磁共振研究作为沉积溶质的大型生物分子。

Fan Shi, Tong Zhang, Juan Li, Chaowei Shi, Shengqi Xiang
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引用次数: 0

摘要

沉降固态核磁共振是固态核磁共振(ssNMR)研究中一种新颖的样品制备方法。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,溶液中的分子被驱赶到高浓度的水凝胶中,从而得到适合固态 NMR 的样品。这种技术的优点是无需进行化学处理,从而最大限度地减少了样品生物活性的损失。沉淀 ssNMR 已成功应用于多种非结晶蛋白质固体,极大地扩展了固态 NMR 研究的范围。从理论上讲,使用这种方法可以将溶液中的任何生物大分子转移到适合固态 NMR 分析的沉淀溶质中。然而,要有效地收集沉淀固体并将其装载到固态 NMR 转子上,必须使用专门的设备并小心处理。为了提高效率,我们设计了一系列装载工具,以便一步完成从溶液到转子的装载过程。本文以由连接组蛋白 H1.4 和核小体核心颗粒组成的 H1.4-NCP167 复合物为例,说明了沉积 NMR 的样品制备过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Studying large biomolecules as sedimented solutes with solid-state NMR.

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-NCP167 complex, which consists of linker histone H1.4 and nucleosome core particle, as an example.

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