Torda A E, Norton R S
Biopolymers. 1989 Mar;28(3):703-16. doi: 10.1002/bip.360280303.
Spin-spin and spin-lattice 1H-nmr relaxation times of the sea anemone polypeptide anthopleurin-A were measured at frequencies of 200, 300, 400, and 500 MHz. Relaxation times were fitted iteratively by least squares regression to the isotropic tumbling model, Woessner's model for anisotropic motion, and Lipari and Szabo's "model-independent" model. Data for aromatic and aliphatic methine protons could not be fitted satisfactority using the isotropic model. Good fits were obtained, however, using the model-independent approach, indicating that high-frequency internal motions of the polypeptide backbone were significant. In addition, a range of tau c values from 2.2 to 3.2 ns was obtained for various methine protons, suggesting that overall rotational reorientation of the molecule was anisotropic. Methyl group relaxation data were fitted satisfactorily by Woessner's model. Some assessment has been made of the effect of experimental errors on the quality of fit to the data, as well as of the contribution of experimental values at certain frequencies to definition of the spectral density function.
在200、300、400和500兆赫的频率下测量了海葵多肽刺胞素-A的自旋-自旋和自旋-晶格1H-核磁共振弛豫时间。通过最小二乘法回归将弛豫时间迭代拟合到各向同性翻滚模型、沃斯纳的各向异性运动模型以及利帕里和萨博的“与模型无关”模型。使用各向同性模型无法令人满意地拟合芳香族和脂肪族次甲基质子的数据。然而,使用与模型无关的方法获得了良好的拟合结果,表明多肽主链的高频内部运动很显著。此外,对于各种次甲基质子获得了2.2至3.2纳秒的一系列τc值,表明分子的整体旋转重取向是各向异性的。甲基基团弛豫数据通过沃斯纳模型得到了满意的拟合。已经对实验误差对数据拟合质量的影响以及某些频率下的实验值对谱密度函数定义的贡献进行了一些评估。