γδ T cells are effectors of immunotherapy in cancers with HLA class I defects
Natasja L de Vries1,2, Joris van de Haar3,4,5, Vivien Veninga3,4
1Department of Pathology, Leiden University Medical Center, Leiden, The Netherlands.
Abstract:
DNA mismatch repair-deficient (MMR-d) cancers present an abundance of neoantigens that is thought to explain their exceptional responsiveness to immune checkpoint blockade (ICB)1,2. Here, in contrast to other cancer types3-5, we observed that 20 out of 21 (95%) MMR-d cancers with genomic inactivation of β2-microglobulin (encoded by B2M) retained responsiveness to ICB, suggesting the involvement of immune effector cells other than CD8+ T cells in this context. We next identified a strong association between B2M inactivation and increased infiltration by γδ T cells in MMR-d cancers. These γδ T cells mainly comprised the Vδ1 and Vδ3 subsets, and expressed high levels of PD-1, other activation markers, including cytotoxic molecules, and a broad repertoire of killer-cell immunoglobulin-like receptors. In vitro, PD-1+ γδ T cells that were isolated from MMR-d colon cancers exhibited enhanced reactivity to human leukocyte antigen (HLA)-class-I-negative MMR-d colon cancer cell lines and B2M-knockout patient-derived tumour organoids compared with antigen-presentation-proficient cells. By comparing paired tumour samples from patients with MMR-d colon cancer that were obtained before and after dual PD-1 and CTLA-4 blockade, we found that immune checkpoint blockade substantially increased the frequency of γδ T cells in B2M-deficient cancers. Taken together, these data indicate that γδ T cells contribute to the response to immune checkpoint blockade in patients with HLA-class-I-negative MMR-d colon cancers, and underline the potential of γδ T cells in cancer immunotherapy.
Insights
DNA mismatch repair-deficient (MMR-d) cancers with β2-microglobulin (B2M) inactivation remain responsive to immune checkpoint blockade (ICB). This response is linked to increased infiltration of γδ T cells, suggesting their role in immunotherapy for these cancers.
Area of Science:
- Immunology
- Oncology
- Genetics
Background:
- DNA mismatch repair-deficient (MMR-d) cancers typically exhibit high neoantigen loads, correlating with exceptional responsiveness to immune checkpoint blockade (ICB).
- Genomic inactivation of β2-microglobulin (B2M), essential for HLA class I expression, is observed in some MMR-d cancers.
Purpose of the Study:
- To investigate the mechanism of sustained ICB response in MMR-d cancers with B2M inactivation.
- To identify the immune cells involved in ICB response in the context of B2M deficiency.
Main Methods:
- Analysis of 21 MMR-d cancers with genomic B2M inactivation.
- Assessment of immune cell infiltration, focusing on γδ T cells, in tumor samples.
- In vitro functional assays of γδ T cells.
- Comparison of tumor samples before and after dual PD-1 and CTLA-4 blockade.
Main Results:
- 95% of MMR-d cancers with B2M inactivation retained responsiveness to ICB.
- A strong association was found between B2M inactivation and increased infiltration of Vδ1 and Vδ3 γδ T cells.
- PD-1+ γδ T cells showed enhanced reactivity to HLA class I-negative cancer cells and B2M-knockout organoids.
- ICB treatment significantly increased γδ T cell frequency in B2M-deficient cancers.
Conclusions:
- γδ T cells contribute to ICB response in HLA class I-negative MMR-d cancers.
- These findings highlight the potential of γδ T cells as a therapeutic target in cancer immunotherapy, particularly for B2M-deficient tumors.
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