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Updated: Feb 18, 2026

Identifying PD-1/PD-L1 Inhibitors with Surface Plasmon Resonance Technology
Published on: May 2, 2025
Structural basis of the therapeutic anti-PD-L1 antibody atezolizumab
Fei Zhang1, Xiaoqiang Qi2, Xiaoxiao Wang3
1Hongqiao International Institute of Medicine, Shanghai Tongren Hospital/Faculty of Basic Medicine, Key Laboratory of Cell Differentiation and Apoptosis of The Chinese Ministry of Education, Shanghai Jiao Tong University School of Medicine, Shanghai, China.
Abstract:
Monoclonal antibodies targeting PD-1/PD-L1 signaling pathway have achieved unprecedented success in cancer treatment over the last few years. Atezolizumab is the first PD-L1 monoclonal antibody approved by US FDA for cancer therapy; however the molecular basis of atezolizumab in blocking PD-1/PD-L1 interaction is not fully understood. Here we have solved the crystal structure of PD-L1/atezolizumab complex at 2.9 angstrom resolution. The structure shows that atezolizumab binds the front beta-sheet of PD-L1 through three CDR loops from the heavy chain and one CDR loop from the light chain. The binding involves extensive hydrogen-bonding and hydrophobic interactions. Notably there are multiple aromatic residues from the CDR loops forming Pi-Pi stacking or cation-Pi interactions within the center of the binding interface and the buried surface area is more than 2000 Å2, which is the largest amongst all the known PD-L1/antibody structures. Mutagenesis study revealed that two hot-spot residues (E58, R113) of PD-L1 contribute significantly to the binding of atezolizumab. The structure also shows that atezolizumab binds PD-L1 with a distinct heavy and light chain orientation and it blocks PD-1/PD-L1 interaction through competing with PD-1 for the same PD-L1 surface area. Taken together, the complex structure of PD-L1/atezolizumab solved here revealed the molecular mechanism of atezolizumab in immunotherapy and provides basis for future monoclonal antibody optimization and rational design of small chemical compounds targeting PD-L1 surface.
Insights
Atezolizumab, a PD-L1 antibody, blocks cancer immune evasion by binding PD-L1. Its crystal structure reveals key interactions, guiding future immunotherapy drug design.
Area of Science:
- Immunology
- Structural Biology
- Oncology
Background:
- Monoclonal antibodies targeting the PD-1/PD-L1 pathway are effective cancer therapies.
- Atezolizumab is a key PD-L1 inhibitor, but its binding mechanism requires elucidation.
Purpose of the Study:
- To determine the crystal structure of the PD-L1/atezolizumab complex.
- To elucidate the molecular basis of atezolizumab's interaction with PD-L1.
Main Methods:
- X-ray crystallography to solve the PD-L1/atezolizumab complex structure at 2.9 angstrom resolution.
- Mutagenesis studies to identify key binding residues.
Main Results:
- The crystal structure reveals atezolizumab binds PD-L1 via extensive hydrogen-bonding and hydrophobic interactions, including Pi-Pi and cation-Pi stacking.
- A large buried surface area (>2000 Ų) and specific hot-spot residues (E58, R113) on PD-L1 are critical for binding.
- Atezolizumab competes with PD-1 for the same PD-L1 surface, blocking the interaction.
Conclusions:
- The determined structure elucidates atezolizumab's mechanism of action in cancer immunotherapy.
- This structural information provides a foundation for optimizing existing antibodies and designing novel small molecule inhibitors targeting PD-L1.
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