Honig B, Ray A, Levinthal C
Proc Natl Acad Sci U S A. 1976 Jun;73(6):1974-8. doi: 10.1073/pnas.73.6.1974.
Conformational energy calculations are used to analyze the interactions of structural substructures in subtilisin BPN. These substructures are kept fixed or "rigid" so that the only variables in the calculations are the backbone segments that separate them. The flexible segments are assumed to be free turns. Using this representation of the protein it is possible to predict both a likely order of events along a folding pathway and preferred modes of conformational changes of the native protein. Moreover, when the native structure has been perturbed by moving the substructures apart, it is possible to assess the range of interactions that return the protein, upon energy minimization, to its original conformation. These results suggest an approach to the folding problem based on the piecemeal formation of tertiary structure from smaller prefolded fragments.
构象能量计算用于分析枯草杆菌蛋白酶BPN中结构亚结构的相互作用。这些亚结构保持固定或“刚性”,因此计算中唯一的变量是分隔它们的主链片段。柔性片段被假定为自由旋转。使用这种蛋白质表示法,可以预测沿折叠途径可能的事件顺序以及天然蛋白质构象变化的优选模式。此外,当通过将亚结构分开来扰动天然结构时,在能量最小化后,可以评估使蛋白质恢复到其原始构象的相互作用范围。这些结果提出了一种基于从较小的预折叠片段逐步形成三级结构的折叠问题解决方法。