Department of Applied Chemistry, Graduate School of Engineering, Tohoku University, Aoba-ku, Sendai, Japan.
J Mol Model. 2009 Nov;15(11):1349-70. doi: 10.1007/s00894-009-0494-1. Epub 2009 Apr 29.
Fast and proper assessment of bio macro-molecular complex structural rigidity as a measure of structural stability can be useful in systematic studies to predict molecular function, and can also enable the design of rapid scoring functions to rank automatically generated bio-molecular complexes. Based on the graph theoretical approach of Jacobs et al. [Jacobs DJ, Rader AJ, Kuhn LA, Thorpe MF (2001) Protein flexibility predictions using graph theory. Proteins: Struct Funct Genet 44:150-165] for expressing molecular flexibility, we propose a new scheme to analyze the structural stability of bio-molecular complexes. This analysis is performed in terms of the identification in interacting subunits of clusters of flappy amino acids (those constituting regions of potential internal motion) that undergo an increase in rigidity at complex formation. Gains in structural rigidity of the interacting subunits upon bio-molecular complex formation can be evaluated by expansion of the network of intra-molecular inter-atomic interactions to include inter-molecular inter-atomic interaction terms. We propose two indices for quantifying this change: one local, which can express localized (at the amino acid level) structural rigidity, the other global to express overall structural stability for the complex. The new system is validated with a series of protein complex structures reported in the protein data bank. Finally, the indices are used as scoring coefficients to rank automatically generated protein complex decoys.
快速准确地评估生物大分子复合物的结构刚性,作为结构稳定性的衡量标准,可用于预测分子功能的系统研究,也可以设计快速评分函数,自动对生物大分子复合物进行排序。基于 Jacobs 等人的图论方法[Jacobs DJ, Rader AJ, Kuhn LA, Thorpe MF (2001) 使用图论预测蛋白质的柔性。蛋白质:结构功能遗传 44:150-165]来表示分子柔性,我们提出了一种新的方案来分析生物大分子复合物的结构稳定性。这种分析是根据在相互作用的亚基中识别出松散的氨基酸簇(构成潜在内部运动区域的那些氨基酸),这些氨基酸在复合物形成时刚性增加。生物大分子复合物形成时相互作用亚基的结构刚性增加可以通过扩展分子内原子间相互作用网络来包括分子间原子间相互作用项来评估。我们提出了两种量化这种变化的指标:一个是局部的,可以在氨基酸水平上表达局部结构刚性,另一个是整体的,用于表达复合物的整体结构稳定性。新系统通过一系列在蛋白质数据库中报告的蛋白质复合物结构进行了验证。最后,将这些指标用作评分系数,对自动生成的蛋白质复合物诱饵进行排序。