Esposito Luciana, Balasco Nicole, De Simone Alfonso, Berisio Rita, Vitagliano Luigi
Institute of Biostructures and Bioimaging, CNR, Via Mezzocannone 16, 80134 Napoli, Italy.
Institute of Biostructures and Bioimaging, CNR, Via Mezzocannone 16, 80134 Napoli, Italy ; Seconda Università di Napoli, Via Vivaldi 43, 81100 Caserta, Italy.
Biomed Res Int. 2013;2013:326914. doi: 10.1155/2013/326914. Epub 2013 Dec 26.
Several investigations performed in the last two decades have unveiled that geometrical parameters of protein backbone show a remarkable variability. Although these studies have provided interesting insights into one of the basic aspects of protein structure, they have been conducted on globular and water-soluble proteins. We report here a detailed analysis of backbone geometrical parameters in nonglobular proteins/peptides. We considered membrane proteins and two distinct fibrous systems (amyloid-forming and collagen-like peptides). Present data show that in these systems the local conformation plays a major role in dictating the amplitude of the bond angle N-C(α)-C and the propensity of the peptide bond to adopt planar/nonplanar states. Since the trends detected here are in line with the concept of the mutual influence of local geometry and conformation previously established for globular and water-soluble proteins, our analysis demonstrates that the interplay of backbone geometrical parameters is an intrinsic and general property of protein/peptide structures that is preserved also in nonglobular contexts. For amyloid-forming peptides significant distortions of the N-C(α)-C bond angle, indicative of sterical hidden strain, may occur in correspondence with side chain interdigitation. The correlation between the dihedral angles Δω/ψ in collagen-like models may have interesting implications for triple helix stability.
在过去二十年中进行的多项研究揭示,蛋白质主链的几何参数呈现出显著的变异性。尽管这些研究为蛋白质结构的一个基本方面提供了有趣的见解,但它们是针对球状和水溶性蛋白质进行的。我们在此报告对非球状蛋白质/肽中主链几何参数的详细分析。我们考虑了膜蛋白和两种不同的纤维系统(形成淀粉样蛋白的肽和类胶原蛋白肽)。目前的数据表明,在这些系统中,局部构象在决定键角N-C(α)-C的幅度以及肽键采取平面/非平面状态的倾向方面起着主要作用。由于这里检测到的趋势与先前为球状和水溶性蛋白质建立的局部几何形状和构象相互影响的概念一致,我们的分析表明,主链几何参数的相互作用是蛋白质/肽结构的一种内在和普遍特性,在非球状环境中也得以保留。对于形成淀粉样蛋白的肽,N-C(α)-C键角的显著扭曲表明存在空间隐藏应变,可能与侧链相互交错有关。类胶原蛋白模型中二面角Δω/ψ之间的相关性可能对三螺旋稳定性具有有趣的影响。