Proton-decoupled CPMG: A better experiment for measuring 15N R2 relaxation in disordered proteins

被引:16
作者
Yuwen, Tairan [1 ]
Skrynnikov, Nikolai R. [1 ]
机构
[1] Purdue Univ, Dept Chem, W Lafayette, IN 47907 USA
基金
美国国家科学基金会;
关键词
N-15; relaxation; Intrinsically disordered proteins; CPMG experiment; Spin-lock experiment; Ubiquitin; alpha-Spectrin SH3 domain; Solvent exchange; Backbone dynamics; Arginine side-chain dynamics; Spin simulations; MODEL-FREE ANALYSIS; ROTATIONAL DIFFUSION ANISOTROPY; MOLECULAR-DYNAMICS SIMULATIONS; NUCLEAR-MAGNETIC-RESONANCE; NMR SPIN-RELAXATION; BACKBONE DYNAMICS; CHEMICAL-SHIFTS; HYDROGEN-EXCHANGE; HETERONUCLEAR NMR; LIGAND-BINDING;
D O I
10.1016/j.jmr.2013.08.008
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
N-15 R-2 relaxation is one of the most informative experiments for characterization of intrinsically disordered proteins (IDPs). Small changes in nitrogen R-2 rates are often used to determine how IDPs respond to various biologically relevant perturbations such as point mutations, posttranslational modifications and weak ligand interactions. However collecting high-quality N-15 relaxation data can be difficult. Of necessity, the samples of IDPs are often prepared with low protein concentration and the measurement time can be limited because of rapid sample degradation. Furthermore, due to hardware limitations standard experiments such as N-15 spin-lock and CPMG can sample the relaxation decay only to ca. 150 ms. This is much shorter than N-15 T-2 times in disordered proteins at or near physiological temperature. As a result, the sampling of relaxation decay profiles in these experiments is suboptimal, which further lowers the precision of the measurements. Here we report a new implementation of the proton-decoupled (PD) CPMG experiment which allows one to sample N-15 R-2 relaxation decay up to ca. 0.5-1 s. The new experiment has been validated through comparison with the well-established spin-lock measurement. Using dilute samples of denatured ubiquitin, we have demonstrated that PD-CPMG produces up to 3-fold improvement in the precision of the data. It is expected that for intrinsically disordered proteins the gains may be even more substantial. We have also shown that this sequence has a number of favorable properties: (i) the spectra are recorded with narrow linewidth in nitrogen dimension; (ii) N-15 offset correction is small and easy to calculate; (iii) the experiment is immune to various spurious effects arising from solvent exchange; (iv) the results are stable with respect to pulse miscalibration and rf field inhomogeneity; (v) with minimal change, the pulse sequence can also be used to measure R-2 relaxation of N-15(epsilon) spins in arginine side chains. We anticipate that the new experiment will be a valuable addition to the NMR toolbox for studies of IDPs. (c) 2013 Elsevier Inc. All rights reserved.
引用
收藏
页码:155 / 169
页数:15
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