NCR Biotech Science Cluster, Translational Health Science and Technology Institute (THSTI), 3rd Milestone, Faridabad-Gurugram Expressway, Faridabad, Haryana 121001, India.
Delhi Pharmaceutical Sciences and Research University (DPSRU), Delhi 110017, India.
J Chem Inf Model. 2021 Jan 25;61(1):358-384. doi: 10.1021/acs.jcim.0c01080. Epub 2021 Jan 12.
The dynamics and plasticity of the PD-1/PD-L1 axis are the bottlenecks for the discovery of small-molecule antagonists to perturb this interaction interface significantly. Understanding the process of this protein-protein interaction (PPI) is of fundamental biological interest in structure-based drug designing. Food and Drug Administration (FDA)-approved anti-PD-1 monoclonal antibodies (mAbs) are the first-in-class with distinct binding modes to access this axis clinically; however, their mechanistic aspects remain elusive. Here, we have unveiled the interactive interfaces with PD-L1 and mAbs to investigate the native plasticity of PD-1 at global (structural and dynamical) and local (residue side-chain orientations) levels. We found that the structural stability and coordinated C movements are increased in the presence of PD-1's binding partners. The rigorous analysis of these PPIs using computational biophysical approaches revealed PD-1's intrinsic plasticity, its concerted loops' movement (BC, FG, and CC'), distal side-chain motions, and the thermodynamic landscape, which are perturbed remarkably from its unbound to bound states. Based on intra-/inter-residues' contact networks and energetics, the have been identified that were found to be essential to arrest the dynamical motions of PD-1 significantly for the rational design of therapeutic agents by mimicking the mAbs mechanism.
PD-1/PD-L1 轴的动力学和可塑性是发现小分子拮抗剂以显著干扰这种相互作用界面的瓶颈。在基于结构的药物设计中,理解这种蛋白质-蛋白质相互作用(PPI)的过程具有基本的生物学意义。食品和药物管理局(FDA)批准的抗 PD-1 单克隆抗体(mAb)是具有独特结合模式的同类首创药物,可在临床上进入该轴;然而,它们的机制方面仍然难以捉摸。在这里,我们揭示了与 PD-L1 和 mAb 的相互作用界面,以研究 PD-1 在全局(结构和动力学)和局部(残基侧链取向)水平上的固有可塑性。我们发现,在 PD-1 的结合伴侣存在的情况下,结构稳定性和协调的 C 运动增加。使用计算生物物理方法对这些 PPI 的严格分析揭示了 PD-1 的固有可塑性、其协同环的运动(BC、FG 和 CC')、远端侧链运动和热力学景观,这些都从其无结合态到结合态发生了显著的扰动。基于内/间残基接触网络和能量学,确定了一些关键残基,这些残基对于通过模拟 mAb 机制来合理设计治疗剂以显著抑制 PD-1 的动力学运动是必不可少的。