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CTLA4 blockade abrogates KEAP1/STK11-related resistance to PD-(L)1 inhibitors
Ferdinandos Skoulidis1, Haniel A Araujo2, Minh Truong Do2
1Department of Thoracic and Head and Neck Medical Oncology, University of Texas MD Anderson Cancer Center, Houston, TX, USA. fskoulidis@mdanderson.org.
Abstract:
For patients with advanced non-small-cell lung cancer (NSCLC), dual immune checkpoint blockade (ICB) with CTLA4 inhibitors and PD-1 or PD-L1 inhibitors (hereafter, PD-(L)1 inhibitors) is associated with higher rates of anti-tumour activity and immune-related toxicities, when compared with treatment with PD-(L)1 inhibitors alone. However, there are currently no validated biomarkers to identify which patients will benefit from dual ICB1,2. Here we show that patients with NSCLC who have mutations in the STK11 and/or KEAP1 tumour suppressor genes derived clinical benefit from dual ICB with the PD-L1 inhibitor durvalumab and the CTLA4 inhibitor tremelimumab, but not from durvalumab alone, when added to chemotherapy in the randomized phase III POSEIDON trial3. Unbiased genetic screens identified loss of both of these tumour suppressor genes as independent drivers of resistance to PD-(L)1 inhibition, and showed that loss of Keap1 was the strongest genomic predictor of dual ICB efficacy-a finding that was confirmed in several mouse models of Kras-driven NSCLC. In both mouse models and patients, KEAP1 and STK11 alterations were associated with an adverse tumour microenvironment, which was characterized by a preponderance of suppressive myeloid cells and the depletion of CD8+ cytotoxic T cells, but relative sparing of CD4+ effector subsets. Dual ICB potently engaged CD4+ effector cells and reprogrammed the tumour myeloid cell compartment towards inducible nitric oxide synthase (iNOS)-expressing tumoricidal phenotypes that-together with CD4+ and CD8+ T cells-contributed to anti-tumour efficacy. These data support the use of chemo-immunotherapy with dual ICB to mitigate resistance to PD-(L)1 inhibition in patients with NSCLC who have STK11 and/or KEAP1 alterations.
Insights
Patients with advanced non-small cell lung cancer (NSCLC) and STK11/KEAP1 mutations benefit from dual immune checkpoint blockade (ICB) plus chemotherapy. This combination overcomes resistance to PD-(L)1 inhibitors alone, improving anti-tumor activity.
Area of Science:
- Oncology
- Immunology
- Genetics
Background:
- Dual immune checkpoint blockade (ICB) with CTLA4 and PD-(L)1 inhibitors shows higher anti-tumor activity but also toxicities in advanced non-small cell lung cancer (NSCLC) compared to PD-(L)1 inhibitors alone.
- No validated biomarkers currently exist to predict patient benefit from dual ICB.
Purpose of the Study:
- To identify biomarkers predicting benefit from dual ICB in NSCLC patients.
- To investigate the efficacy of dual ICB in patients with STK11 and/or KEAP1 tumor suppressor gene mutations.
Main Methods:
- Analysis of the randomized phase III POSEIDON trial data.
- Unbiased genetic screens in NSCLC models.
- Evaluation of tumor microenvironment in mouse models and patients.
Main Results:
- Patients with STK11/KEAP1 mutations showed clinical benefit from dual ICB (durvalumab plus tremelimumab) plus chemotherapy, but not from durvalumab alone.
- Loss of KEAP1 was the strongest genomic predictor of dual ICB efficacy.
- STK11/KEAP1 alterations were linked to an immunosuppressive tumor microenvironment, with depletion of CD8+ T cells but sparing of CD4+ effector cells.
- Dual ICB reprogrammed myeloid cells and engaged CD4+ effector cells, contributing to anti-tumor efficacy.
Conclusions:
- STK11 and/or KEAP1 alterations predict benefit from dual ICB in NSCLC patients treated with chemo-immunotherapy.
- Dual ICB can overcome resistance to PD-(L)1 inhibition in this patient subgroup.
- Targeting STK11/KEAP1-mutated NSCLC with dual ICB represents a promising therapeutic strategy.
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