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Compensated second-order recoupling: application to third spin assisted recoupling

机译:补偿的第二次再挂钩:适用于第三旋转辅助再挂钩

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摘要

We consider the effect of phase shifts in the context of second-order recoupling techniques in solid-state NMR. Notably we highlight conditions leading to significant improvements for the Third Spin Assisted Recoupling (TSAR) mechanism and demonstrate the benefits of resulting techniques for detecting long-distance transfer in biomolecular systems. The modified pulse sequences of PAR and PAIN-CP, Phase-Shifted Proton Assisted Recoupling (AH-PS-PAR) and Phase-Shifted Proton-Assisted Insensitive Nuclei Cross Polarization (ABH-PS-PAIN-CP), still rely on cross terms between heteronuclear dipolar couplings involving assisting protons that mediate zero-quantum polarization transfer between low-γ nuclei (13C–13C, 15N–15N, 15N–13C polarization transfer). Using Average Hamiltonian Theory we show that phase inversion compensates off-resonance contributions and yields improved polarization transfer as well as substantial broadening of the matching conditions. PS-TSAR greatly improves on the standard TSAR based methods because it alleviates their sensitivity to precise RF settings which significantly enhances robustness of the experiments. We demonstrate these new methods on a 19.6 kDa protein (U–[15N, 13C]-YajG) at high magnetic fields (up to 900 MHz 1H frequency) and fast sample spinning (up to 65 kHz MAS frequency).
机译:我们考虑相移在固态NMR中的二阶重旋技术的背景下的效果。值得注意的是,我们突出了导致第三旋转辅助再旋转(TSAR)机制的显着改进的条件,并证明了用于检测生物分子系统中长距离转移的技术的益处。 PAR和疼痛-CP的改性脉冲序列,相移质子辅助再旋转(AH-PS-PAR)和相移质子辅助不敏感核交叉极化(ABH-PS-PAC-CP),仍然依赖于横向术语在涉及辅助质子的异核偶极偶联之间,辅助质子介导低γ核( 13-sup> c- 13℃, 15 n-之间的零量子偏振转移 15 n, 15 n- 13 c偏振传递)。使用平均汉密尔顿理论,我们表明相位反转补偿了偏离共振贡献,并产生改善的偏振转移以及大幅扩大匹配条件。 PS-TSAR大大提高了标准的TSAR基础方法,因为它可以减轻它们对精确RF设置的敏感性,这显着提高了实验的鲁棒性。我们在高磁场(高达900MHz 1的u - [ 15 n, 13-sup> n, 13-sup> c] -yajg)上展示了这些新方法 h频率)和快速样品旋转(高达65 kHz MAS频率)。

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