Sato A, Nishimura S, Ohkubo T, Kyogoku Y, Koyama S, Kobayashi M, Yasuda T, Kobayashi Y
Research Laboratory, Fujisawa Pharmaceutical Co., Ltd., Osaka.
J Biochem. 1992 Apr;111(4):529-36. doi: 10.1093/oxfordjournals.jbchem.a123791.
Human insulin-like growth factor-I (IGF-I) was studied by two-dimensional 1H-NMR spectroscopy. Resonance assignments were obtained for all the backbone protons and almost all of the sidechain protons of the total 70 amino acid residues, using sequence-specific assignment procedures. The secondary structure elements of human IGF-I were identified by investigation of the sequential and medium range NOEs as a preliminary step in determining the three-dimensional structure of this protein by means of distance geometry calculations. The typical NOEs of d alpha beta(i,i + 3) and d alpha N(i,i + 3), as well as the successive strong NOEs of dNN connectivities and slowly exchanging amide protons confirmed the presence of three helical segments corresponding to the sequence regions, Ala8-Cys18, Gly42-Cys48, and Leu54-Cys61, and the existence of a beta-turn in the Gly19-Gly22 region. Our results definitely indicate that the secondary structure of human IGF-I in solution is consistent with that of insulin in the crystalline state.
采用二维¹H-NMR光谱法对人胰岛素样生长因子-I(IGF-I)进行了研究。利用序列特异性归属程序,对总共70个氨基酸残基的所有主链质子和几乎所有侧链质子进行了共振归属。作为通过距离几何计算确定该蛋白质三维结构的初步步骤,通过研究序列和中等范围的核Overhauser效应(NOE)来鉴定人IGF-I的二级结构元件。dαβ(i,i + 3)和dαN(i,i + 3)的典型NOE,以及dNN连接性和缓慢交换酰胺质子的连续强NOE,证实了对应于序列区域Ala8-Cys18、Gly42-Cys48和Leu54-Cys61的三个螺旋片段的存在,以及在Gly19-Gly22区域存在一个β-转角。我们的结果明确表明,溶液中人IGF-I的二级结构与结晶态胰岛素的二级结构一致。