Department of Microbiology and Molecular Genetics, Hadassah Medical School, Institute for Medical Research Israel-Canada, The Hebrew University, Jerusalem, Israel.
PLoS One. 2011 Apr 29;6(4):e18934. doi: 10.1371/journal.pone.0018934.
Flexible peptides that fold upon binding to another protein molecule mediate a large number of regulatory interactions in the living cell and may provide highly specific recognition modules. We present Rosetta FlexPepDock ab-initio, a protocol for simultaneous docking and de-novo folding of peptides, starting from an approximate specification of the peptide binding site. Using the Rosetta fragments library and a coarse-grained structural representation of the peptide and the receptor, FlexPepDock ab-initio samples efficiently and simultaneously the space of possible peptide backbone conformations and rigid-body orientations over the receptor surface of a given binding site. The subsequent all-atom refinement of the coarse-grained models includes full side-chain modeling of both the receptor and the peptide, resulting in high-resolution models in which key side-chain interactions are recapitulated. The protocol was applied to a benchmark in which peptides were modeled over receptors in either their bound backbone conformations or in their free, unbound form. Near-native peptide conformations were identified in 18/26 of the bound cases and 7/14 of the unbound cases. The protocol performs well on peptides from various classes of secondary structures, including coiled peptides with unusual turns and kinks. The results presented here significantly extend the scope of state-of-the-art methods for high-resolution peptide modeling, which can now be applied to a wide variety of peptide-protein interactions where no prior information about the peptide backbone conformation is available, enabling detailed structure-based studies and manipulation of those interactions.
能够与另一个蛋白质分子结合并折叠的柔性肽在活细胞中介导了大量的调节相互作用,并且可能提供高度特异性的识别模块。我们提出了 Rosetta FlexPepDock ab-initio,这是一种用于同时对接和从头折叠肽的协议,从肽结合位点的近似规范开始。使用 Rosetta 片段库和肽和受体的粗粒度结构表示,FlexPepDock ab-initio 有效地同时对可能的肽骨架构象和刚性体在给定结合位点的受体表面上的取向的空间进行采样。对粗粒度模型的后续全原子细化包括受体和肽的完整侧链建模,从而产生高分辨率模型,其中关键的侧链相互作用得到了再现。该方案应用于一个基准测试,其中肽在其结合的骨架构象或在其自由的、未结合的形式上建模在受体上。在 18/26 个结合案例和 7/14 个未结合案例中确定了接近天然的肽构象。该方案在各种二级结构的肽上表现良好,包括具有不寻常的转弯和扭曲的卷曲肽。这里呈现的结果大大扩展了用于高分辨率肽建模的最新方法的范围,现在可以将其应用于各种没有肽骨架构象先验信息的肽-蛋白相互作用,从而能够进行详细的基于结构的研究和对这些相互作用的操作。