Lee L, Sykes B D
Biochemistry. 1980 Jul 8;19(14):3208-14. doi: 10.1021/bi00555a017.
The substitution of the paramagnetic lanthanide ion ytterbium for the calcium ion in the EF calcium binding site of carp parvalbumin results in a series of 1H NMR resonances which are shifted well outside of the envelope of the 1H NMR spectrum of the diamagnetic form of the protein. The line broadening of these shifted resonances has been measured as a function of 1H NMR frequency between 200 and 400 MHz, and the spin-lattice relaxation rates have been measured at 270 MHz. The analysis of the relaxation rates based upon the theories of Vega & Fiat [Vega, A. J., & Fiat, D. (1976) Mol. Phys. 31, 347-355] and Guéron [Guéron, M. (1975) J. Magn. Reson. 19, 58-66] indicates that a major contribution to the line widths comes from the novel susceptibility relaxation mechanism and that the metal to proton distances can be directly calculated from this contribution.
在鲤鱼小清蛋白的EF钙结合位点中,用顺磁性镧系离子镱取代钙离子,会产生一系列的¹H NMR共振信号,这些信号的位移远远超出了该蛋白质抗磁性形式的¹H NMR谱包络范围。已测量了这些位移共振信号的线宽随200至400 MHz之间¹H NMR频率的变化情况,并在270 MHz下测量了自旋晶格弛豫率。基于Vega与Fiat [Vega, A. J., & Fiat, D. (1976) Mol. Phys. 31, 347 - 355]以及Guéron [Guéron, M. (1975) J. Magn. Reson. 19, 58 - 66]的理论对弛豫率进行分析表明,线宽的主要贡献来自于新型的磁化率弛豫机制,并且金属与质子之间的距离可以直接根据这一贡献来计算。