Istituto di Biostrutture e Bioimmagini, CNR, Napoli, Italy.
Istituto di Calcolo e Reti ad Alte Prestazioni, CNR, Napoli, Italy.
Biomed Res Int. 2017;2017:2617629. doi: 10.1155/2017/2617629. Epub 2017 Oct 15.
Proteins frequently assume complex three-dimensional structures characterized by marginal thermodynamic stabilities. In this scenario, deciphering the folding code of these molecular giants with clay feet is a cumbersome task. Studies performed in last years have shown that the interplay between backbone geometry and local conformation has an important impact on protein structures. Although the variability of several geometrical parameters of protein backbone has been established, the role of the structural context in determining these effects has been hitherto limited to the valence bond angle (NC C). We here investigated the impact of different factors on the observed variability of backbone geometry and peptide bond planarity. These analyses corroborate the notion that the local conformation expressed in terms of (, ) dihedrals plays a predominant role in dictating the variability of these parameters. The impact of secondary structure is limited to bond angles which involve atoms that are usually engaged in H-bonds and, therefore, more susceptible to the structural context. Present data also show that the nature of the side chain has a significant impact on angles such as NC C and C C C. In conclusion, our analyses strongly support the use of variability of protein backbone geometry in structure refinement, validation, and prediction.
蛋白质经常呈现出具有边缘热力学稳定性的复杂三维结构。在这种情况下,破译这些“有缺陷的”分子巨无霸的折叠密码是一项繁琐的任务。近年来的研究表明,骨架几何形状和局部构象之间的相互作用对蛋白质结构有重要影响。尽管已经确定了蛋白质骨架的几个几何参数的可变性,但结构背景在确定这些影响方面的作用迄今为止仅限于价键角(NC C)。我们在这里研究了不同因素对骨架几何形状和肽键平面性观察到的可变性的影响。这些分析证实了这样一种观点,即用(,)二面角表示的局部构象在决定这些参数的可变性方面起着主导作用。二级结构的影响仅限于涉及通常参与氢键的原子的键角,因此更容易受到结构背景的影响。目前的数据还表明,侧链的性质对 NC C 和 C C C 等角度有重大影响。总之,我们的分析强烈支持在结构精修、验证和预测中使用蛋白质骨架几何形状的可变性。