Laboratoire de Physico-Chimie Informatique, Unité de Chimie Physique Théorique et Structurale, Department of Chemistry, NAmur MEdicine and Drug Innovation Center (NAMEDIC), Namur Institute of Structured Matter (NISM), University of Namur, Rue de Bruxelles 61, 5000, Namur, Belgium.
University of Nantes, CEISAM UMR CNRS 6230, UFR Sciences et Techniques, 2 Rue de la Houssinière, BP 92208, 44322, Nantes Cedex 03, France.
J Comput Aided Mol Des. 2018 Nov;32(11):1295-1313. doi: 10.1007/s10822-018-0172-4. Epub 2018 Oct 28.
The CD2-CD58 protein-protein interaction is known to favor the recognition of antigen presenting cells by T cells. The structural, energetics, and dynamical properties of three known cyclic CD58 ligands, named P6, P7, and RTD-c, are studied through molecular dynamics (MD) simulations and molecular docking calculations. The ligands are built so as to mimic the C and F β-strands of protein CD2, connected via turn inducers. The MD analyses focus on the location of the ligands with respect to the experimental binding site and on the direct and water-mediated hydrogen bonds (H bonds) they form with CD58. Ligand P6, with a sequence close to the experimental β-strands of CD2, presents characteristics that explain its higher experimental affinity, e.g., the lower mobility and flexibility at the CD58 surface, and the larger number and occurrence frequency of ligand-CD58 H bonds. For the two other ligands, the structural modifications lead to changes in the binding pattern with CD58 and its dynamics. In parallel, a large set of molecular docking calculations, carried out with various search spaces and docking algorithms, are compared to provide a consensus view of the preferred ligand binding modes. The analysis of the ligand side chain locations yields results that are consistent with the CD2-CD58 crystal structure and suggests various binding modes of the experimentally identified hot spot of the ligands, i.e., Tyr86. P6 is shown to form a number of contacts that are also present in the experimental CD2-CD58 structure.
CD2-CD58 蛋白-蛋白相互作用有利于 T 细胞识别抗原呈递细胞。通过分子动力学(MD)模拟和分子对接计算研究了三种已知的环状 CD58 配体,分别命名为 P6、P7 和 RTD-c 的结构、能量和动力学特性。这些配体的构建旨在模拟蛋白 CD2 的 C 和 F β-链,通过转角诱导物连接。MD 分析主要集中在配体相对于实验结合位点的位置,以及它们与 CD58 形成的直接和水介导氢键(H 键)。配体 P6 的序列与 CD2 的实验 β-链非常接近,具有较高的实验亲和力,例如在 CD58 表面的较低迁移率和灵活性,以及更多数量和出现频率的配体-CD58 H 键。对于另外两种配体,结构修饰导致与 CD58 的结合模式及其动力学发生变化。同时,进行了大量的分子对接计算,使用各种搜索空间和对接算法进行比较,以提供配体结合模式的共识观点。对接计算分析配体侧链位置的结果与 CD2-CD58 晶体结构一致,并提出了实验鉴定的配体热点的各种结合模式,即 Tyr86。结果表明 P6 形成了许多与实验 CD2-CD58 结构中存在的接触。