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Probing Slow Protein Dynamics by Adiabatic R1ρ and R2ρ NMR Experiments

机译:通过绝热R1ρ和R2ρNMR实验探究慢的蛋白质动力学

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摘要

Slow μs/ms dynamics involved in protein folding, binding, catalysis, and allostery are currently detected using NMR dispersion experiments such as CPMG (Carr−Purcell−Meiboom−Gill) or spin-lock R. In these methods, protein dynamics are obtained by analyzing relaxation dispersion curves obtained from either changing the time spacing between 180° pulses or by changing the effective spin-locking field strength. In this Communication, we introduce a new method to induce a dispersion of relaxation rates. Our approach relies on altering the shape of the adiabatic full passage pulse and is conceptually different from existing approaches. By changing the nature of the adiabatic radiofrequency irradiation, we are able to obtain rotating frame R and R dispersion curves that are sensitive to slow μs/ms protein dynamics (demonstrated with ubiquitin). The strengths of this method are to (a) extend the dynamic range of the relaxation dispersion analysis, (b) avoid the need for multiple magnetic field strengths to extract dynamic parameters, (c) measure accurate relaxation rates that are independent of frequency offset, and (d) reduce the stress to NMR hardware (e.g., cryoprobes).
机译:目前使用NMR分散实验(例如CPMG(Carr-Purcell-Meiboom-Gill)或自旋锁R )检测到涉及蛋白质折叠,结合,催化和变构的慢μs/ ms动力学。在这些方法中,通过分析通过改变180°脉冲之间的时间间隔或通过改变有效的自旋锁定场强度而获得的弛豫色散曲线来获得蛋白质动力学。在本交流中,我们介绍了一种诱导松弛率分散的新方法。我们的方法依赖于改变绝热全通脉冲的形状,并且在概念上与现有方法不同。通过改变绝热射频辐射的性质,我们能够获得对慢速μs/ ms蛋白质动力学敏感的旋转帧R 和R 色散曲线(已展示)与泛素)。此方法的优点是(a)扩展弛豫色散分析的动态范围,(b)避免需要多个磁场强度来提取动态参数,(c)测量独立于频率偏移的准确弛豫率, (d)降低对NMR硬件(例如,低温探针)的应力。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2010年第29期|p.9979-9981|共3页
  • 作者

    Silvia Mangia;

  • 作者单位

    Center for Magnetic Resonance Research, Department of Radiology, Department of Biochemistry, Molecular Biology and Biophysics, and Department of Chemistry, University of Minnesota, Minneapolis, Minnesota 55455;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 00:50:20

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