Institute for Pharmaceutical and Medicinal Chemistry, Department of Mathematics and Natural Sciences, Heinrich-Heine-University, Düsseldorf, Germany.
J Chem Inf Model. 2012 Jan 23;52(1):120-33. doi: 10.1021/ci200322s. Epub 2011 Dec 27.
Protein-protein interfaces are considered difficult targets for small-molecule protein-protein interaction modulators (PPIMs ). Here, we present for the first time a computational strategy that simultaneously considers aspects of energetics and plasticity in the context of PPIM binding to a protein interface. The strategy aims at identifying the determinants of small-molecule binding, hot spots, and transient pockets, in a protein-protein interface in order to make use of this knowledge for predicting binding modes of and ranking PPIMs with respect to their affinity. When applied to interleukin-2 (IL-2), the computationally inexpensive constrained geometric simulation method FRODA outperforms molecular dynamics simulations in sampling hydrophobic transient pockets. We introduce the PPIAnalyzer approach for identifying transient pockets on the basis of geometrical criteria only. A sequence of docking to identified transient pockets, starting structure selection based on hot spot information, RMSD clustering and intermolecular docking energies, and MM-PBSA calculations allows one to enrich IL-2 PPIMs from a set of decoys and to discriminate between subgroups of IL-2 PPIMs with low and high affinity. Our strategy will be applicable in a prospective manner where nothing else than a protein-protein complex structure is known; hence, it can well be the first step in a structure-based endeavor to identify PPIMs.
蛋白质-蛋白质界面被认为是小分子蛋白质-蛋白质相互作用调节剂 (PPIMs) 的难靶标。在这里,我们首次提出了一种计算策略,该策略同时考虑了结合到蛋白质界面时的能量学和可塑性方面。该策略旨在识别小分子结合、热点和瞬态口袋的决定因素,以便利用这些知识预测 PPIM 的结合模式并根据亲和力对其进行排序。当应用于白细胞介素-2 (IL-2) 时,计算成本低廉的受限几何模拟方法 FRODA 在采样疏水性瞬态口袋方面优于分子动力学模拟。我们引入了 PPIAnalyzer 方法,仅基于几何标准来识别瞬态口袋。一系列基于识别的瞬态口袋的对接、基于热点信息的起始结构选择、RMSD 聚类和分子间对接能以及 MM-PBSA 计算,可用于从一组诱饵中富集 IL-2 PPIM,并区分低亲和性和高亲和性的 IL-2 PPIM 亚组。我们的策略将以前瞻性的方式应用,除了蛋白质-蛋白质复合物结构外,一无所知;因此,它很可能是基于结构的识别 PPIMs 的第一步。