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Loss of miR-29a/b1 Cluster Reprograms the Tumor Microenvironment and Contributes to Immunosuppression in Lung Cancer
Natalie K Horvat1, Myritney Saint-Cloud1, Raihaanah Bint Abdullah Muslim1
1Department of Hematology and Medical Oncology, Emory University, Atlanta, Georgia.
Abstract:
Immune checkpoint inhibitors (ICI), including those that block PD-1/PD-L1, have revolutionized therapy for patients with non-small cell lung cancer. However, most patients demonstrate no clinical benefit or acquire resistance, even when tumors express PD-L1. This highlights the critical need to dissect tumor survival dependencies to overcome resistance. Using our Kras/p53-driven lung cancer models that demonstrate acquired or intrinsic resistance to ICIs, we performed single-cell RNA sequencing (scRNA-seq) and focused on predicted upstream regulators of differentially expressed genes in the malignant cell cluster of resistant tumors. We found that the micro-RNA miR-29 was downregulated in tumors with anti-PD-1 resistance and that this was associated with significant upregulation of a multitude of miR-29 targets. Furthermore, we found that expression of Enpp2/ATX, a gene encoding an immunosuppressive molecule, was modulated due to miR-29 loss. Reexpression of miR-29 in anti-PD-1-resistant models reduced ATX expression in tumor cells, diminished the fibrotic microenvironment, and increased CD8+ T-cell infiltration. These alterations promoted response to ICIs in an anti-PD-1-resistant model by rewiring the tumor-immune microenvironment, specifically through increased CD8+ T-cell infiltration, reduction of suppressive Ly6C+ monocytes, and a concomitant increase in proinflammatory macrophages. Additional analysis of publicly available RNA-seq data revealed that tumors from patients with lung adenocarcinoma with high miR-29 had increased CD8A and decreased CD14 expression and broad enrichment in immunoregulatory pathways. Together, these data provide evidence that the miR-29 family regulates the tumor microenvironment, including antitumor immune-related pathways in lung cancer, through control of ATX among other target genes, with implications for ICI response.
Insights
MicroRNA miR-29 loss in lung cancer correlates with resistance to immune checkpoint inhibitors (ICI). Restoring miR-29 re-sensitizes tumors to ICI by modulating the tumor microenvironment and enhancing anti-tumor immunity.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Immune checkpoint inhibitors (ICI) targeting PD-1/PD-L1 have transformed non-small cell lung cancer (NSCLC) therapy.
- Therapeutic resistance to ICI remains a significant clinical challenge, necessitating the identification of novel resistance mechanisms and therapeutic targets.
Purpose of the Study:
- To investigate the molecular mechanisms underlying acquired or intrinsic resistance to ICI in Kras/p53-driven lung cancer models.
- To identify key regulators of tumor survival and immune evasion in the context of ICI resistance.
Main Methods:
- Single-cell RNA sequencing was employed on lung cancer models resistant to anti-PD-1 therapy.
- Bioinformatic analysis focused on identifying upstream regulators of differentially expressed genes in malignant cells.
- Expression analysis of microRNA-29 (miR-29) and its targets, including Enpp2/ATX, was performed.
- Functional studies involved re-expression of miR-29 in resistant models and analysis of the tumor microenvironment.
Main Results:
- Downregulation of miR-29 was observed in tumors resistant to anti-PD-1 therapy, associated with upregulation of miR-29 targets.
- Loss of miR-29 correlated with increased expression of Enpp2/ATX, an immunosuppressive enzyme.
- Re-expression of miR-29 in resistant models reduced ATX, diminished fibrosis, and increased CD8+ T-cell infiltration.
- These miR-29-mediated changes promoted ICI response by enhancing anti-tumor immunity and altering immune cell populations.
Conclusions:
- The miR-29 family plays a critical role in regulating the tumor microenvironment and immune response in lung cancer.
- miR-29 controls ATX expression, influencing ICI sensitivity.
- Targeting miR-29 or its downstream pathways may represent a viable strategy to overcome ICI resistance in lung adenocarcinoma.
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