Trellet Mikael, Melquiond Adrien S J, Bonvin Alexandre M J J
Computational Structural Biology Group, Bijvoet Center for Biomolecular Research, Faculty of Science, Chemistry, Utrecht University, Padualaan 8, 3584 CH, Utrecht, The Netherlands.
Methods Mol Biol. 2015;1268:221-39. doi: 10.1007/978-1-4939-2285-7_10.
Despite their biological importance in many regulatory processes, protein-peptide recognition mechanisms are difficult to study experimentally at the structural level because of the inherent flexibility of peptides and the often transient interactions on which they rely. Complementary methods like biomolecular docking are therefore required. The prediction of the three-dimensional structure of protein-peptide complexes raises unique challenges for computational algorithms, as exemplified by the recent introduction of protein-peptide targets in the blind international experiment CAPRI (Critical Assessment of PRedicted Interactions). Conventional protein-protein docking approaches are often struggling with the high flexibility of peptides whose short sizes impede protocols and scoring functions developed for larger interfaces. On the other side, protein-small ligand docking methods are unable to cope with the larger number of degrees of freedom in peptides compared to small molecules and the typically reduced available information to define the binding site. In this chapter, we describe a protocol to model protein-peptide complexes using the HADDOCK web server, working through a test case to illustrate every steps. The flexibility challenge that peptides represent is dealt with by combining elements of conformational selection and induced fit molecular recognition theories.
尽管蛋白质 - 肽识别机制在许多调节过程中具有生物学重要性,但由于肽固有的灵活性以及它们所依赖的通常是短暂的相互作用,在结构水平上通过实验研究这些机制很困难。因此需要诸如生物分子对接等互补方法。蛋白质 - 肽复合物三维结构的预测给计算算法带来了独特的挑战,最近在盲法国际实验CAPRI(预测相互作用的关键评估)中引入蛋白质 - 肽靶点就证明了这一点。传统的蛋白质 - 蛋白质对接方法常常难以应对肽的高灵活性,肽的短尺寸阻碍了为更大界面开发的协议和评分函数。另一方面,与小分子相比,蛋白质 - 小配体对接方法无法应对肽中更多的自由度以及通常用于定义结合位点的可用信息减少的问题。在本章中,我们描述了一种使用HADDOCK网络服务器对蛋白质 - 肽复合物进行建模的协议,并通过一个测试案例来阐述每一个步骤。肽所代表的灵活性挑战通过结合构象选择和诱导契合分子识别理论的要素来解决。