Improta Roberto, Vitagliano Luigi, Esposito Luciana
Istituto di Biostrutture e Bioimmagini, Consiglio Nazionale delle Ricerche (CNR), Napoli, I-80134, Italy.
Proteins. 2015 Nov;83(11):1973-86. doi: 10.1002/prot.24876. Epub 2015 Sep 22.
The elucidation of the mutual influence between peptide bond geometry and local conformation has important implications for protein structure refinement, validation, and prediction. To gain insights into the structural determinants and the energetic contributions associated with protein/peptide backbone plasticity, we here report an extensive analysis of the variability of the peptide bond angles by combining statistical analyses of protein structures and quantum mechanics calculations on small model peptide systems. Our analyses demonstrate that all the backbone bond angles strongly depend on the peptide conformation and unveil the existence of regular trends as function of ψ and/or φ. The excellent agreement of the quantum mechanics calculations with the statistical surveys of protein structures validates the computational scheme here employed and demonstrates that the valence geometry of protein/peptide backbone is primarily dictated by local interactions. Notably, for the first time we show that the position of the H(α) hydrogen atom, which is an important parameter in NMR structural studies, is also dependent on the local conformation. Most of the trends observed may be satisfactorily explained by invoking steric repulsive interactions; in some specific cases the valence bond variability is also influenced by hydrogen-bond like interactions. Moreover, we can provide a reliable estimate of the energies involved in the interplay between geometry and conformations.
阐明肽键几何形状与局部构象之间的相互影响,对蛋白质结构的优化、验证和预测具有重要意义。为了深入了解与蛋白质/肽主链可塑性相关的结构决定因素和能量贡献,我们在此报告了一项广泛的分析,通过结合蛋白质结构的统计分析和对小模型肽系统的量子力学计算,来研究肽键角的变异性。我们的分析表明,所有主链键角都强烈依赖于肽的构象,并揭示了作为ψ和/或φ函数的规律趋势的存在。量子力学计算与蛋白质结构统计调查的出色吻合,验证了此处采用的计算方案,并表明蛋白质/肽主链的价键几何形状主要由局部相互作用决定。值得注意的是,我们首次表明,H(α)氢原子的位置(这是NMR结构研究中的一个重要参数)也取决于局部构象。通过引入空间排斥相互作用,可以令人满意地解释观察到的大多数趋势;在某些特定情况下,价键变异性也受类似氢键相互作用的影响。此外,我们可以对几何形状与构象之间相互作用所涉及的能量提供可靠估计。