Department of NMR-based Structural Biology, Max Planck Institute for Biophysical Chemistry, Am Fassberg 11, 37077, Göttingen, Germany.
J Biomol NMR. 2014 May;59(1):15-22. doi: 10.1007/s10858-014-9820-8. Epub 2014 Mar 1.
We have recently presented band-selective homonuclear cross-polarization (BSH-CP) as an efficient method for CO-CA transfer in deuterated as well as protonated solid proteins. Here we show how the BSH-CP CO-CA transfer block can be incorporated in a set of three-dimensional (3D) solid-state NMR (ssNMR) pulse schemes tailored for resonance assignment of proteins at high static magnetic fields and moderate magic-angle spinning rates. Due to the achieved excellent transfer efficiency of 33 % for BSH-CP, a complete set of 3D spectra needed for unambiguous resonance assignment could be rapidly recorded within 1 week for the model protein ubiquitin. Thus we expect that BSH-CP could replace the typically used CO-CA transfer schemes in well-established 3D ssNMR approaches for resonance assignment of solid biomolecules.
我们最近提出了带选择性同核交叉极化(BSH-CP)作为一种有效的 CO-CA 转移方法,用于氘化和质子化的固体蛋白质。在这里,我们展示了如何将 BSH-CP CO-CA 转移块整合到一组三维(3D)固态 NMR(ssNMR)脉冲方案中,这些方案专为在高静磁场和中等魔角旋转速率下对蛋白质进行共振分配而设计。由于 BSH-CP 实现了 33%的优异转移效率,因此可以在 1 周内快速记录完整的 3D 光谱,用于对模型蛋白泛素进行明确的共振分配。因此,我们预计 BSH-CP 可以取代传统的 CO-CA 转移方案,成为用于固体生物分子共振分配的成熟 3D ssNMR 方法中常用的方法。