de Alba Eva, Tjandra Nico
Laboratory of Molecular Biophysics, National Heart, Lung, and Blood Institute, National Institutes of Health, 50 South Drive, Bethesda, Maryland, 20892, USA.
J Biomol NMR. 2006 May;35(1):1-16. doi: 10.1007/s10858-006-0028-4. Epub 2006 May 19.
The effects of cross-correlated relaxation in Quantitative J methods are analyzed. One-bond 1H-13C scalar and dipolar couplings of protein methine and methylene sites are obtained by monitoring proton and carbon magnetization in Quantitative J experiments. We find that scalar and dipolar couplings of the same pair of nuclei vary depending on the type of magnetization involved. These discrepancies can be as large as several Hz for methylene moieties. The contribution of dynamic frequency shifts, which are known to affect J couplings, is too small to explain the observed differences. We show that processes of magnetization transfer originated by cross-correlated relaxation are largely responsible for these discrepancies. We estimate the error transferred to methylene J values by cross-correlation interference, and show that is close to the experimentally observed one. Furthermore, this analysis indicates that cross-correlated relaxation effects under isotropic and anisotropic media differ, indicating that errors are not cancelled in residual dipolar coupling measurements.
分析了定量J方法中交叉相关弛豫的影响。通过在定量J实验中监测质子和碳的磁化强度,获得了蛋白质次甲基和亚甲基位点的一键1H-13C标量和偶极耦合。我们发现,同一对原子核的标量和偶极耦合会根据所涉及的磁化类型而变化。对于亚甲基部分,这些差异可能高达几赫兹。已知会影响J耦合的动态频率偏移的贡献太小,无法解释观察到的差异。我们表明,由交叉相关弛豫引起的磁化转移过程在很大程度上导致了这些差异。我们估计了交叉相关干扰转移到亚甲基J值的误差,并表明该误差与实验观察到的误差接近。此外,该分析表明,各向同性和各向异性介质下的交叉相关弛豫效应不同,这表明在残余偶极耦合测量中误差不会抵消。