Hua Q X, Shoelson S E, Inouye K, Weiss M A
Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, MA 02115.
Proc Natl Acad Sci U S A. 1993 Jan 15;90(2):582-6. doi: 10.1073/pnas.90.2.582.
The solution structure of a diabetes-associated mutant human insulin (insulin Los Angeles; PheB24-->Ser) was determined by 13C-edited NMR spectroscopy and distance-geometry/simulated annealing calculations. Among vertebrate insulins PheB24 is invariant, and in crystal structures the aromatic ring appears to anchor the putative receptor-binding surface through long-range packing interactions in the hydrophobic core. B24 substitutions are of particular interest in relation to the mechanism of receptor binding. In one analogue ([GlyB24]insulin), partial unfolding of the B chain has been observed with paradoxical retention of near-native bioactivity. The present study of [SerB24]insulin extends this observation: relative to [GlyB24]insulin, near-native structure is restored despite significant loss of function. To our knowledge, our results provide the first structural study of a diabetes-associated mutant insulin and support the hypothesis that insulin undergoes a change in conformation on receptor binding.
通过13C编辑核磁共振光谱法以及距离几何/模拟退火计算,确定了一种与糖尿病相关的突变型人胰岛素(胰岛素洛杉矶;苯丙氨酸B24→丝氨酸)的溶液结构。在脊椎动物胰岛素中,苯丙氨酸B24是不变的,并且在晶体结构中,芳香环似乎通过疏水核心中的长程堆积相互作用来锚定假定的受体结合表面。就受体结合机制而言,B24取代特别令人感兴趣。在一种类似物([甘氨酸B24]胰岛素)中,已观察到B链部分展开,但却反常地保留了接近天然的生物活性。目前对[丝氨酸B24]胰岛素的研究扩展了这一观察结果:相对于[甘氨酸B24]胰岛素,尽管功能显著丧失,但接近天然的结构得以恢复。据我们所知,我们的结果首次对与糖尿病相关的突变型胰岛素进行了结构研究,并支持了胰岛素在与受体结合时构象会发生变化这一假说。