弛豫优化相关光谱 ROCSY,用于分配大型蛋白质中的 1H 或 13C 自旋系统。

IF 2 3区 化学 Q3 BIOCHEMICAL RESEARCH METHODS
M. Rafid Feisal , Shaista Goel , Kevin Y.L. Mak , Albert Wu , Philip B. Liu , Peter M. Hwang
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引用次数: 0

摘要

大型系统的溶液核磁共振研究受到快速信号衰减的阻碍。我们在此引入ROCSY(松弛优化的总相关光谱),它通过最小化在横向平面上花费的时间来最大化j耦合连接的自旋网络的传输效率。硬脉冲被替换成由Ernst和同事首先开发的Clean-CITY TOCSY脉冲元件,允许更长的磁化沿z轴对齐的延迟。这有以下结果:1)横向弛豫最小化,2)共振偏移效应最小化,3)通过空间核过载增强(NOE)增加了j耦合介导的磁化转移。该技术的主要缺点是硬脉冲产生的额外热量和额外的通过空间NOE磁化转移的分析复杂性。我们证明了在十二烷基磷胆碱洗涤剂胶束中富含15n的PagP(一种含有161个残基的完整膜蛋白)样品中不可能使用传统的1H-TOCSY进行halfphato - hn相关性。我们还在一个富含13c的15N、13c的心脏肌钙蛋白C n端结构域样品中证实了与13C-TOCSY相比的增强信噪比。因此,我们建议ROCSY可用于在任何利用TOCSY的蛋白质NMR实验中增强信号,在更高分子量的系统中可以看到更大的增强。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Relaxation-optimized correlation spectroscopy ROCSY for assigning 1H or 13C spin systems in large proteins

Relaxation-optimized correlation spectroscopy ROCSY for assigning 1H or 13C spin systems in large proteins
Solution NMR studies of large systems are hampered by rapid signal decay. We hereby introduce ROCSY (relaxation-optimized total correlation spectroscopy), which maximizes transfer efficiency across J-coupling-connected spin networks by minimizing the amount of time magnetization spends in the transverse plane. Hard pulses are substituted into the Clean-CITY TOCSY pulse element first developed by Ernst and co-workers, allowing for longer delays in which magnetization is aligned along the z-axis. This has the following consequences: 1) transverse relaxation is minimized, 2) resonance offset effects are minimized, 3) and through-space nuclear Overhauser enhancement (NOE) adds to J-coupling-mediated magnetization transfer. The major drawbacks of the technique are additional heat generation produced by the hard pulses and complication of analysis by the additional through-space NOE magnetization transfer. We demonstrate Halpha-to-HN correlations not possible using conventional 1H-TOCSY in a 15N-enriched sample of PagP (a 161-residue integral membrane protein) in dodecylphosphocholine detergent micelles. We also demonstrate enhanced signal-to-noise compared to 13C-TOCSY in a 15N,13C-enriched sample of cardiac troponin C N-terminal domain. We thus propose that ROCSY can be used to boost signal in any protein NMR experiment that utilizes TOCSY, with greater enhancements seen in higher molecular weight systems.
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来源期刊
CiteScore
3.80
自引率
13.60%
发文量
150
审稿时长
69 days
期刊介绍: The Journal of Magnetic Resonance presents original technical and scientific papers in all aspects of magnetic resonance, including nuclear magnetic resonance spectroscopy (NMR) of solids and liquids, electron spin/paramagnetic resonance (EPR), in vivo magnetic resonance imaging (MRI) and spectroscopy (MRS), nuclear quadrupole resonance (NQR) and magnetic resonance phenomena at nearly zero fields or in combination with optics. The Journal''s main aims include deepening the physical principles underlying all these spectroscopies, publishing significant theoretical and experimental results leading to spectral and spatial progress in these areas, and opening new MR-based applications in chemistry, biology and medicine. The Journal also seeks descriptions of novel apparatuses, new experimental protocols, and new procedures of data analysis and interpretation - including computational and quantum-mechanical methods - capable of advancing MR spectroscopy and imaging.
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