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NKG2A Is a Therapeutic Vulnerability in Immunotherapy Resistant MHC-I Heterogeneous Triple-Negative Breast Cancer
Brandie C Taylor1, Xiaopeng Sun1, Paula I Gonzalez-Ericsson2,3
1Cancer Biology Program, Vanderbilt University, Nashville, Tennessee.
Heterogeneous MHC-I expression in triple-negative breast cancer (TNBC) causes resistance to immunotherapy. Targeting NKG2A alongside PD-L1 therapy can overcome this resistance by restoring immune responses.
Area of Science:
- Immunology
- Oncology
- Cancer Research
Background:
- Immune checkpoint inhibition (ICI) shows promise in cancer treatment, but resistance, particularly in triple-negative breast cancer (TNBC), remains a challenge.
- MHC-I expression is crucial for antigen presentation and T-cell-mediated immunotherapy.
- Intratumor heterogeneity in MHC-I expression is observed in TNBC patients.
Purpose of the Study:
- To investigate the role of MHC-I expression heterogeneity in driving resistance to immunotherapy in TNBC.
- To identify potential therapeutic strategies to overcome immunotherapy resistance in TNBC.
Main Methods:
- Analysis of intratumor MHC-I expression heterogeneity in TNBC patients.
- Utilized murine models to study the impact of MHC-I loss and heterogeneity on antitumor immunity and ICI response.
- Employed spatial technologies to correlate MHC-I heterogeneity with clinical resistance to anti-PD-L1 therapy and NK:T-cell ratios in human breast tumors.
- Investigated the role of NKG2A in suppressing NK-cell function in MHC-I heterogeneous tumors.
Main Results:
- Loss of MHC-I in murine models abrogated antitumor immunity and ICI response.
- Intratumor MHC-I heterogeneity promoted NK cell infiltration in an IFNγ-dependent manner.
- MHC-I heterogeneity in human breast tumors correlated with resistance to anti-PD-L1 therapy and increased NK:T-cell ratios.
- MHC-I heterogeneous tumors relied on NKG2A to inhibit NK cell activity.
Conclusions:
- Heterogeneous MHC-I expression is a key mechanism of clinical resistance to anti-PD-L1 therapy in TNBC.
- Combining anti-NKG2A and anti-PD-L1 therapies restored complete response in preclinical models of MHC-I heterogeneous TNBC.
- This combination strategy holds promise for enhancing patient benefit in clinical trials for TNBC.
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