Bertini I, Felli I C, Luchinat C
Magnetic Resonance Center (CERM), University of Florence, Italy.
J Biomol NMR. 2000 Dec;18(4):347-55. doi: 10.1023/a:1026785228634.
The Ca2 calbindin protein in which one calcium has been substituted with Ce(III), Yb(III) and Dy(III) displays substantial alignment in high magnetic fields due to the high anisotropy of the metal magnetic susceptibility. This property has allowed the measurement of residual dipolar coupling contributions to 1J(HN) and 2J(HH) couplings of asparagine and glutamine NH2 moieties. Such data have been used to aid structural characterization of these groups. The exploitation of auto-orientation of magnetic anisotropic metalloproteins represents a step ahead in the investigation of the conformational space of peripheral residues that are not fixed by the protein folding.
其中一个钙被铈(III)、镱(III)和镝(III)取代的钙结合蛋白,由于金属磁化率的高各向异性,在高磁场中显示出显著的排列。这一特性使得能够测量天冬酰胺和谷氨酰胺NH2基团对1J(HN)和2J(HH)耦合的剩余偶极耦合贡献。这些数据已被用于辅助这些基团的结构表征。利用磁各向异性金属蛋白的自动取向代表了在研究未被蛋白质折叠固定的外围残基构象空间方面向前迈进了一步。