Liu Wenping, Jin Haoyu, Chen Ting, Zhang Gangping, Lai Shengsheng, Liu Guangjian
Guangdong Food and Drug Vocational College, Guangzhou, China.
Clinical Data Center, Guangzhou Women and Children's Medical Center, Guangzhou Medical University, Guangzhou, China.
Front Mol Biosci. 2020 Sep 15;7:574759. doi: 10.3389/fmolb.2020.574759. eCollection 2020.
The blockade of immune checkpoints, such as programmed death receptor 1 (PD-1) and programmed death ligand 1 protein (PD-L1), is a promising therapeutic approach in cancer immunotherapy. Nivolumab, a humanized IgG4 antibody targeting PD-1, was approved by the US Food and Drug Administration for several cancers in 2014. Crystal structures of the nivolumab/PD-1 complex show that the epitope of PD-1 locates at the IgV domain (including the FG and BC loops) and the N-terminal loop. Although the N-terminal loop of PD-1 has been shown to play a dominant role in the complex interface of the static structure, its role in the dynamic binding process has not been illustrated clearly. Here, eight molecular systems were established for nivolumab/PD-1 complex, and long-time molecular dynamics simulations were performed for each. Results showed that the N-terminal loop of PD-1 prefers to bind with nivolumab to stabilize the interface between IgV and nivolumab. Furthermore, the binding of the N-terminal loop with nivolumab induces the rebinding between the IgV domain and nivolumab. Thus, we proposed a two-step binding model for the nivolumab/PD-1 binding, where the interface switches to a high-affinity state with the help of the N-terminal loop. This finding suggests that the N-terminal loop of PD-1 might be a potential target for anti-PD-1 antibody design, which could serve as an important gatekeeper for the anti-PD-1 antibody binding.
阻断免疫检查点,如程序性死亡受体1(PD-1)和程序性死亡配体1蛋白(PD-L1),是癌症免疫治疗中一种很有前景的治疗方法。纳武单抗是一种靶向PD-1的人源化IgG4抗体,于2014年被美国食品药品监督管理局批准用于治疗多种癌症。纳武单抗/PD-1复合物的晶体结构表明,PD-1的表位位于IgV结构域(包括FG环和BC环)以及N端环。虽然PD-1的N端环在静态结构的复合物界面中起主导作用,但其在动态结合过程中的作用尚未明确阐明。在此,建立了八个纳武单抗/PD-1复合物的分子系统,并对每个系统进行了长时间的分子动力学模拟。结果表明,PD-1的N端环更倾向于与纳武单抗结合,以稳定IgV和纳武单抗之间的界面。此外,N端环与纳武单抗的结合诱导了IgV结构域与纳武单抗的重新结合。因此,我们提出了纳武单抗/PD-1结合的两步结合模型,其中在N端环的帮助下,界面切换到高亲和力状态。这一发现表明,PD-1的N端环可能是抗PD-1抗体设计的潜在靶点,它可以作为抗PD-1抗体结合的重要守门人。