Tislelizumab uniquely binds to the CC' loop of PD-1 with slow-dissociated rate and complete PD-L1 blockage

  • FEBS Open Bio. 2021 Mar;11(3):782-792. doi: 10.1002/2211-5463.13102.
Yuan Hong  1 Yingcai Feng  1 Hanzi Sun  1 Bo Zhang  1 Hongfu Wu  1 Qing Zhu  1 Yucheng Li  1 Tong Zhang  1 Yilu Zhang  1 Xinxin Cui  1 Zhuo Li  1 Xiaomin Song  1 Kang Li  1 Mike Liu  1 Ye Liu  1
Affiliations
  • 1. BeiGene Global Research, BeiGene (Beijing) Co., Ltd., China.
Abstract

Programmed cell death protein 1 (PD-1), an immune checkpoint receptor expressed by activated T, B, and NK cells, is a well-known target for Cancer Immunotherapy. Tislelizumab (BGB-A317) is an anti-PD-1 antibody that has recently been approved for treatment of Hodgkin's lymphoma and urothelial carcinoma. Here, we show that tislelizumab displayed remarkable antitumor efficacy in a B16F10/GM-CSF mouse model. Structural biology and Surface plasmon resonance (SPR) analyses revealed unique epitopes of tislelizumab, and demonstrated that the CC' loop of PD-1, a region considered to be essential for binding to PD-1 ligand 1 (PD-L1) but not reported as targeted by Other therapeutic antibodies, significantly contributes to the binding of tislelizumab. The binding surface of tislelizumab on PD-1 overlaps largely with that of the PD-L1. SPR analysis revealed the extremely slow dissociation rate of tislelizumab from PD-1. Both structural and functional analyses align with the observed ability of tislelizumab to completely block PD-1/PD-L1 interaction, broadening our understanding of the mechanism of action of anti-PD-1 antibodies.

Keywords
BGB-A317; PD-1; anti-PD-1 antibody; epitope mapping; tislelizumab.
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