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Resistance to Durvalumab and Durvalumab plus Tremelimumab Is Associated with Functional STK11 Mutations in Patients
Nabendu Pore1, Song Wu1, Nathan Standifer1
1AstraZeneca, Gaithersburg, Maryland.
Abstract:
Mutations in the STK11 (LKB1) gene regulate resistance to PD-1/PD-L1 blockade. This study evaluated this association in patients with nonsquamous non-small cell lung cancer (NSCLC) enrolled in three phase I/II trials. STK11 mutations were associated with resistance to the anti-PD-L1 antibody durvalumab (alone/with the anti-CTLA4 antibody tremelimumab) independently of KRAS mutational status, highlighting STK11 as a potential driver of resistance to checkpoint blockade. Retrospective assessments of tumor tissue, whole blood, and serum revealed a unique immune phenotype in patients with STK11 mutations, with increased expression of markers associated with neutrophils (i.e., CXCL2, IL6), Th17 contexture (i.e., IL17A), and immune checkpoints. Associated changes were observed in the periphery. Reduction of STAT3 in the tumor microenvironment using an antisense oligonucleotide reversed immunotherapy resistance in preclinical STK11 knockout models. These results suggest that STK11 mutations may hinder response to checkpoint blockade through mechanisms including suppressive myeloid cell biology, which could be reversed by STAT3-targeted therapy. SIGNIFICANCE: Patients with nonsquamous STK11-mutant (STK11mut) NSCLC are less likely than STK11 wild-type (STK11wt) patients to respond to anti-PD-L1 ± anti-CTLA4 immunotherapies, and their tumors show increased expression of genes and cytokines that activate STAT3 signaling. Preclinically, STAT3 modulation reverses this resistance, suggesting STAT3-targeted agents as potential combination partners for immunotherapies in STK11mut NSCLC.This article is highlighted in the In This Issue feature, p. 2659.
Insights
Mutations in the STK11 gene are linked to resistance against PD-1/PD-L1 immunotherapy in non-small cell lung cancer. Targeting STAT3 may reverse this resistance, offering new therapeutic strategies for STK11-mutant NSCLC patients.
Area of Science:
- Oncology
- Immunotherapy
- Genetics
Background:
- Mutations in the STK11 (LKB1) gene are implicated in cancer development and progression.
- Immune checkpoint inhibitors (ICIs) like PD-1/PD-L1 blockade have revolutionized cancer treatment.
- Understanding resistance mechanisms to ICIs is crucial for improving patient outcomes.
Purpose of the Study:
- To investigate the association between STK11 mutations and resistance to PD-1/PD-L1 blockade in nonsquamous non-small cell lung cancer (NSCLC).
- To explore the immune phenotype associated with STK11 mutations.
- To evaluate the therapeutic potential of targeting STAT3 in STK11-mutant NSCLC.
Main Methods:
- Retrospective analysis of patients with nonsquamous NSCLC from three phase I/II trials.
- Assessment of STK11 mutational status in tumor tissue.
- Analysis of immune markers in tumor tissue, blood, and serum.
- Preclinical studies using STK11 knockout models and STAT3 inhibition.
Main Results:
- STK11 mutations were significantly associated with resistance to anti-PD-L1 (durvalumab) and anti-CTLA4 (tremelimumab) immunotherapy.
- STK11-mutant tumors exhibited a unique immune phenotype with increased expression of neutrophil-related markers, Th17 cytokines, and immune checkpoints.
- STAT3 pathway modulation in preclinical models reversed immunotherapy resistance in STK11-mutant settings.
Conclusions:
- STK11 mutations are a potential driver of resistance to checkpoint blockade in nonsquamous NSCLC.
- The immune phenotype in STK11-mutant NSCLC involves suppressive myeloid cell biology.
- STAT3-targeted therapies represent a promising strategy for combination with ICIs in STK11-mutant NSCLC.
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