Bradbury J H, Brown L R
Eur J Biochem. 1977 Jun 15;76(2):573-82. doi: 10.1111/j.1432-1033.1977.tb11627.x.
The amino groups of insulin have been studied by 1H and 13C nuclear magnetic resonance spectroscopy in insulin, zinc-free insulin and methylated insulin. By difference spectroscopy it is possible to follow the shift with pH of the epsilon-CH2 and delta-CH2 proton resonances of lysine-B29 in insulin. In methylated insulin the dimethyl proton resonances of glycine-A1, phenylalanine-B1 and lysine-B29 can be followed as a function of pH. In native insulin pKapp values of 6.7 and 8.0 are obtained for phenylalanine-B1 and glycine-A1 (the assignment is tentative) and 11.2 for lysine-B29. Separate resonances have been observed from the lysine-B29 Nepsilon-(CH3)2 group for the monomeric and dimeric forms of methylated insulin, which indicates a small change in the environment of lysine-B29 on dimerisation. The nuclear magnetic resonance spectral characteristics of these groups are, in general, consistent with the overall structure of the crystal form of the 2-zinc insulin hexamer.
已通过氢-1和碳-13核磁共振光谱法对胰岛素、无锌胰岛素和甲基化胰岛素中的氨基进行了研究。通过差示光谱法,可以追踪胰岛素中赖氨酸-B29的ε-CH2和δ-CH2质子共振随pH值的变化。在甲基化胰岛素中,甘氨酸-A1、苯丙氨酸-B1和赖氨酸-B29的二甲基质子共振可作为pH值的函数进行追踪。在天然胰岛素中,苯丙氨酸-B1和甘氨酸-A1的表观pK值为6.7和8.0(该归属为暂定),赖氨酸-B29的表观pK值为11.2。已观察到甲基化胰岛素单体和二聚体形式的赖氨酸-B29 Nε-(CH3)2基团的单独共振,这表明赖氨酸-B29在二聚化时环境发生了微小变化。这些基团的核磁共振光谱特征总体上与2-锌胰岛素六聚体晶体形式的整体结构一致。