Burton D R, Forsén S, Karlström G, Dwek R A, McLaughlin A C, Wain-Hobson S
Eur J Biochem. 1976 Dec 11;71(2):519-28. doi: 10.1111/j.1432-1033.1976.tb11140.x.
Longitudinal and traverse proton magnetic relaxation rates for water in the hydration sphere of Gd(III) bound to non-immune rabbit IgG (immunoglobulin G) have been determined over a wide range of frequencies (4-84 MHz) at constant temperature (19 degrees C) using pulsed nuclear magnetic resonance spectrometry. The rates have also been determined at temperatures between 0 and 40 degrees C for two frequencies (61 and 84 MHz). The rates were fitted to existing theory using a computer least-squares procedure. Further computer analysis was then carried out to determine the sensitivity of the best-fit error to variation in the variable parameters in the theoretical expressions used. These include the water co-ordination number (q) for which it was found large variations could occur (between approximately 2 and 8) for only small changes in the error of best-fit. It was concluded that a slow exchange contribution to the relaxation rates was important in deciding which parameters are poorly determined. A rotational correlation time (tau r) was obtained which suggested there might be considerable internal motion of the Fc region (C-terminal half of heavy-chain dimer) of the IgG molecule. However the possibility of large errors in this value prevented unequivocal conclusions being drawn.
利用脉冲核磁共振光谱法,在恒定温度(19摄氏度)下,于很宽的频率范围(4 - 84兆赫)内测定了与非免疫兔免疫球蛋白G(IgG)结合的钆(III)水合球中水的纵向和横向质子磁弛豫率。还在0至40摄氏度之间的温度下,针对两个频率(61和84兆赫)测定了弛豫率。使用计算机最小二乘法程序将这些弛豫率与现有理论进行拟合。接着进行了进一步的计算机分析,以确定最佳拟合误差对所用理论表达式中可变参数变化的敏感度。这些参数包括水配位数(q),发现对于最佳拟合误差的微小变化,水配位数可能会出现很大变化(大约在2至8之间)。得出的结论是,弛豫率的慢交换贡献对于确定哪些参数难以精确测定很重要。获得了一个旋转相关时间(τr),这表明IgG分子的Fc区域(重链二聚体的C末端一半)可能存在相当大的内部运动。然而,该值存在较大误差的可能性使得无法得出明确结论。