Chang Shou-Lin, Tjandra Nico
Laboratory of Biophysical Chemistry, Building 50, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, MD 20892, USA.
J Magn Reson. 2005 May;174(1):43-53. doi: 10.1016/j.jmr.2005.01.008.
The NMR spin-lattice relaxation rate (R1) and the rotating-frame spin-lattice relaxation rate (R1rho) of amide 15N and carbonyl 13C (13C') of the uniformly 13C- and 15N-labeled ubiquitin were measured at different temperatures and field strengths to investigate the temperature dependence of overall rotational diffusion and local backbone motion. Correlation between the order parameter of the N-H vector, SNH2, and that of the carbonyl carbon, S2C', was investigated. The effective S2C' was estimated from the direct fit of the experimental relaxation rates and from the slope of 2R2-R1 vs. B2 using Lipari-Szabo formalism. The average SNH2 decreased by 5.9%, while the average S2C' decreased by 4.6% from 15 to 47 degrees C. At the extreme low and high temperatures the difference in the temperature dependence of the order parameters vanishes. At the intermediate temperatures they do not change by the same amount but they follow the same trend. On the same peptide plane along the protein sequence, S2C' and SNH2 are highly correlated. The results suggest that fast local motion experienced at the site of the N-H vector and carbonyl nucleus is more complicated than previously thought and it cannot be easily described by one single type of motion in a broad range of temperature.
在不同温度和场强下,测量了均匀13C和15N标记的泛素的酰胺15N和羰基13C(13C')的核磁共振自旋晶格弛豫率(R1)和旋转框架自旋晶格弛豫率(R1rho),以研究整体旋转扩散和局部主链运动的温度依赖性。研究了N-H向量的序参数SNH2与羰基碳的序参数S2C'之间的相关性。通过实验弛豫率的直接拟合以及使用Lipari-Szabo形式主义的2R2-R1对B2的斜率来估计有效S2C'。从15℃到47℃,平均SNH2下降了5.9%,而平均S2C'下降了4.6%。在极低和极高温度下,序参数温度依赖性的差异消失。在中间温度下,它们的变化量不同,但趋势相同。在沿着蛋白质序列的同一肽平面上,S2C'和SNH2高度相关。结果表明,在N-H向量和羰基核位置经历的快速局部运动比以前认为的更复杂,并且在广泛的温度范围内不能简单地用单一类型的运动来描述。