Gronenborn A M, Clore G M
Laboratory of Chemical Physics, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, MD 20892.
J Biomol NMR. 1994 May;4(3):455-8. doi: 10.1007/BF00179351.
We have examined the 13C alpha and 13C beta chemical shifts of a number of proteins and found that their values at the N-terminal end of a helix provide a good predictor for the presence of a capping box. A capping box consists of a hydrogen-bonded cycle of four amino acids in which the side chain of the N-cap residue forms a hydrogen bond with the backbone amide of the N3 residue, whose side chain in turn may accept a hydrogen bond from the amide of the N-cap residue. The N-cap residue exhibits characteristic values for its backbone torsion angles, with phi and psi clustering around 94 +/- 15 degrees and 167 +/- 5 degrees, respectively. This is manifested by a 1-2 ppm upfield shift of the 13 C alpha resonance and a 1-4 ppm downfield shift of the 13C beta resonance, relative to their random coil values, and is mainly associated with the unusually large value of psi. The residues following the N-cap residue exhibit downfield shifts of 1-3 ppm for the 13C alpha resonances and small upfield shifts for the 13C beta ones, typical of an alpha-helix.
我们研究了多种蛋白质的13Cα和13Cβ化学位移,发现螺旋N端的这些值能很好地预测封端盒的存在。封端盒由四个氨基酸形成的氢键环组成,其中N端封端残基的侧链与N3残基的主链酰胺形成氢键,而N3残基的侧链又可接受来自N端封端残基酰胺的氢键。N端封端残基的主链扭转角呈现出特征值,其φ和ψ角分别聚集在94±15°和167±5°左右。相对于它们在无规卷曲状态下的值,这表现为13Cα共振有1 - 2 ppm的上移,13Cβ共振有1 - 4 ppm的下移,且主要与ψ值异常大有关。N端封端残基之后的残基,其13Cα共振有1 - 3 ppm的下移,13Cβ共振有小幅度的上移,这是α螺旋的典型特征。