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Structural basis for mouse LAG3 interactions with the MHC class II molecule I-Ab
Qianqian Ming1, Daniel Antfolk1, David A Price2
1Moffitt Cancer Center and Research Institute, Department of Immunology, Tampa, FL, 33612, USA.
Nature Communications
|August 29, 2024
Summary
Lymphocyte activation gene-3 (LAG3) binds to MHC-II, suppressing T cell activation. This structural study reveals LAG3
Area of Science:
- Immunology
- Structural Biology
- Cancer Research
Background:
- Lymphocyte-activation gene-3 (LAG3) is an immune checkpoint protein that binds Major Histocompatibility Complex Class II (MHC-II) to inhibit T cell responses.
- LAG3 inhibitors are approved for melanoma treatment, but the structural basis of LAG3-MHC-II interaction is not fully understood.
- Understanding this interaction is crucial for developing novel cancer immunotherapies.
Purpose of the Study:
- To determine the high-resolution structure of the mouse LAG3 protein bound to the MHC-II molecule I-Ab.
- To elucidate the molecular mechanisms by which LAG3 binding to MHC-II suppresses T cell activation.
- To investigate the implications for therapeutic strategies targeting the LAG3-MHC-II pathway.
Main Methods:
- X-ray crystallography to determine the 3.84 Å-resolution structure of the LAG3-MHC-II complex.
- Analysis of the protein-protein interface to identify key binding residues and interactions.
- Antibody epitope mapping to assess the binding sites of existing LAG3 inhibitors.
Main Results:
- The structure reveals that domain 1 of LAG3 binds to a conserved region of MHC-II, spanning both α2 and β2 subdomains.
- LAG3 dimerization induces specific spacing between MHC-II molecules, potentially leading to suboptimal T cell receptor signaling.
- The LAG3-MHC-II binding interface overlaps with the binding site for the T cell coreceptor CD4, suggesting interference with CD4-MHC-II interactions.
- Existing LAG3 inhibitors were found not to target the MHC-II binding interface of LAG3.
Conclusions:
- The structural insights provide a detailed understanding of how LAG3 engages MHC-II on the cell surface.
- LAG3-mediated suppression of T cell activation may occur through disruption of CD4-MHC-II interactions and altered MHC-II clustering.
- The distinct binding sites of current inhibitors suggest diverse mechanisms for LAG3 antagonism, opening avenues for next-generation therapeutics.
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