Department of Microbiology and Molecular Genetics, Insitute for Medical Research Israel-Canada, Hadassah Medical School, The Hebrew University, Jerusalem, 91120 Israel.
Proteins. 2010 Jul;78(9):2029-40. doi: 10.1002/prot.22716.
A wide range of regulatory processes in the cell are mediated by flexible peptides that fold upon binding to globular proteins. Computational efforts to model these interactions are hindered by the large number of rotatable bonds in flexible peptides relative to typical ligand molecules, and the fact that different peptides assume different backbone conformations within the same binding site. In this study, we present Rosetta FlexPepDock, a novel tool for refining coarse peptide-protein models that allows significant changes in both peptide backbone and side chains. We obtain high resolution models, often of sub-angstrom backbone quality, over an extensive and general benchmark that is based on a large nonredundant dataset of 89 peptide-protein interactions. Importantly, side chains of known binding motifs are modeled particularly well, typically with atomic accuracy. In addition, our protocol has improved modeling quality for the important application of cross docking to PDZ domains. We anticipate that the ability to create high resolution models for a wide range of peptide-protein complexes will have significant impact on structure-based functional characterization, controlled manipulation of peptide interactions, and on peptide-based drug design.
细胞内的一系列广泛的调控过程是由柔性肽介导的,这些肽在与球状蛋白结合时会发生折叠。由于柔性肽中相对于典型配体分子的旋转键数量较多,以及不同肽在同一结合位点中采用不同的骨架构象,因此对这些相互作用进行建模的计算工作受到了阻碍。在这项研究中,我们提出了 Rosetta FlexPepDock,这是一种用于改进粗肽-蛋白模型的新工具,它允许肽骨架和侧链发生显著变化。我们在一个广泛而通用的基准上获得了高分辨率模型,该基准基于一个包含 89 个肽-蛋白相互作用的大型非冗余数据集。重要的是,已知结合基序的侧链通常可以达到原子精度,建模效果特别好。此外,我们的方案还提高了 PDZ 结构域交叉对接这一重要应用的建模质量。我们预计,为广泛的肽-蛋白复合物创建高分辨率模型的能力将对基于结构的功能特征描述、对肽相互作用的控制操作以及基于肽的药物设计产生重大影响。