Department of Molecular Reproduction, Development and Genetics, Indian Institute of Science, Bangalore, Karnataka 560 012, India.
Proteins. 2011 Nov;79(11):3108-22. doi: 10.1002/prot.23138. Epub 2011 Aug 30.
Single chain fragment variables (ScFvs) have been extensively employed in studying the protein-protein interactions. ScFvs derived from phage display libraries have an additional advantage of being generated against a native antigen, circumventing loss of information on conformational epitopes. In the present study, an attempt has been made to elucidate human chorionic gonadotropin (hCG)-luteinizing hormone (LH) receptor interactions by using a neutral and two inhibitory ScFvs against hCG. The objective was to dock a computationally derived model of these ScFvs onto the crystal structure of hCG and understand the differential roles of the mapped epitopes in hCG-LH receptor interactions. An anti-hCG ScFv, whose epitope was mapped previously using biochemical tools, served as the positive control for assessing the quality of docking analysis. To evaluate the role of specific side chains at the hCG-ScFv interface, binding free energy as well as residue interaction energies of complexes in solution were calculated using molecular mechanics Poisson-Boltzmann/surface area method after performing the molecular dynamic simulations on the selected hCG-ScFv models and validated using biochemical and SPR analysis. The robustness of these calculations was demonstrated by comparing the theoretically determined binding energies with the experimentally obtained kinetic parameters for hCG-ScFv complexes. Superimposition of hCG-ScFv model onto a model of hCG complexed with the 51-266 residues of LH receptor revealed importance of the residues previously thought to be unimportant for hormone binding and response. This analysis provides an alternate tool for understanding the structure-function analysis of ligand-receptor interactions.
单链片段变量 (ScFvs) 已被广泛用于研究蛋白质-蛋白质相互作用。从噬菌体展示文库中获得的 ScFvs 具有针对天然抗原产生的额外优势,可以避免构象表位信息的丢失。在本研究中,尝试使用针对 hCG 的中性和两种抑制性 ScFv 来阐明 hCG-促黄体生成激素 (LH) 受体相互作用。目的是将这些 ScFv 的计算衍生模型对接至 hCG 的晶体结构,并了解映射表位在 hCG-LH 受体相互作用中的差异作用。一种抗 hCG ScFv 的表位先前使用生化工具进行了映射,作为评估对接分析质量的阳性对照。为了评估 hCG-ScFv 界面上特定侧链的作用,使用分子力学泊松-玻尔兹曼/表面积方法计算了结合自由能以及复合物在溶液中的残基相互作用能,在对选定的 hCG-ScFv 模型进行分子动力学模拟后进行了计算,并使用生化和 SPR 分析进行了验证。通过将理论确定的结合能与 hCG-ScFv 复合物的实验获得的动力学参数进行比较,证明了这些计算的稳健性。将 hCG-ScFv 模型叠加到与 LH 受体的 51-266 个残基结合的 hCG 模型上,揭示了先前认为对激素结合和反应不重要的残基的重要性。该分析为理解配体-受体相互作用的结构-功能分析提供了一种替代工具。