8SR0 image
Entry Detail
PDB ID:
8SR0
EMDB ID:
Title:
CryoEM structure of a therapeutic antibody (favezelimab) bound to human LAG3 local refined
Biological Source:
Source Organism:
Host Organism:
PDB Version:
Deposition Date:
2023-05-05
Release Date:
2023-09-06
Method Details:
Experimental Method:
Resolution:
3.53 Å
Aggregation State:
PARTICLE
Reconstruction Method:
SINGLE PARTICLE
Macromolecular Entities
Polymer Type:polypeptide(L)
Description:Lymphocyte activation gene 3 protein
Chain IDs:A (auth: X), D
Chain Length:525
Number of Molecules:2
Biological Source:Homo sapiens
Polymer Type:polypeptide(L)
Description:favezelimab Fab heavy chain
Chain IDs:B (auth: Y), E (auth: H)
Chain Length:252
Number of Molecules:2
Biological Source:Mus musculus
Polymer Type:polypeptide(L)
Description:favezelimab Fab light chain
Chain IDs:C (auth: Z), F (auth: L)
Chain Length:238
Number of Molecules:2
Biological Source:Mus musculus
Ligand Molecules
Primary Citation
CryoEM structure of a therapeutic antibody (favezelimab) bound to human LAG3 determined using a bivalent Fab as fiducial marker.
Structure 31 1149 ? (2023)
PMID: 37619561 DOI: 10.1016/j.str.2023.07.013

Abstact

Lymphocyte activation gene 3 protein (LAG3) is an inhibitory receptor that is upregulated on exhausted T cells in tumors. LAG3 is a major target for cancer immunotherapy with many anti-LAG3 antibodies in clinical trials. However, there is no structural information on the epitopes recognized by these antibodies. We determined the single-particle cryoEM structure of a therapeutic antibody (favezelimab) bound to LAG3 to 3.5 Å resolution, revealing that favezelimab targets the LAG3-binding site for MHC class II, its canonical ligand. The small size of the complex between the conventional (monovalent) Fab of favezelimab and LAG3 (∼100 kDa) presented a challenge for cryoEM. Accordingly, we engineered a bivalent version of Fab favezelimab that doubled the size of the Fab-LAG3 complex and conferred a highly identifiable shape to the complex that facilitated particle selection and orientation for image processing. This study establishes bivalent Fabs as new fiducial markers for cryoEM analysis of small proteins.

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