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Transmembrane Serine Protease TMPRSS11B promotes an acidified tumor microenvironment and immune suppression in lung
Abstract:
Lung cancer is the leading cause of cancer-related deaths worldwide. Existing therapeutic options have limited efficacy, particularly for lung squamous cell carcinoma (LUSC), underscoring the critical need for the identification of new therapeutic targets. We previously demonstrated that the Transmembrane Serine Protease TMPRSS11B promotes transformation of human bronchial epithelial cells and enhances lactate export from LUSC cells. To determine the impact of TMPRSS11B activity on the host immune system and the tumor microenvironment (TME), we evaluated the effect of Tmprss11b depletion in a syngeneic mouse model. Tmprss11b depletion significantly reduced tumor burden in immunocompetent mice and triggered an infiltration of immune cells. RNA FISH analysis and spatial transcriptomics in the autochthonous Rosa26-Sox2-Ires-Gfp LSL/LSL ; Nkx2-1 fl/fl ; Lkb 1 fl/fl (SNL) model revealed an enrichment of Tmprss11b expression in LUSC tumors, specifically in Krt13 + hillock-like cells. Ultra-pH sensitive nanoparticle imaging and metabolite analysis identified regions of acidification, elevated lactate, and enrichment of M2-like macrophages in LUSC tumors. These results demonstrate that TMPRSS11B promotes an acidified and immunosuppressive TME and nominate this enzyme as a therapeutic target in LUSC.
Insights
Transmembrane Serine Protease TMPRSS11B fuels lung squamous cell carcinoma (LUSC) growth by creating an immunosuppressive tumor microenvironment (TME). Targeting TMPRSS11B may offer a new therapeutic strategy for LUSC patients.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Lung cancer, particularly lung squamous cell carcinoma (LUSC), has limited treatment options and high mortality.
- Transmembrane Serine Protease 11B (TMPRSS11B) was previously shown to promote cell transformation and lactate export in LUSC.
- The role of TMPRSS11B in modulating the tumor microenvironment (TME) and host immune response in LUSC remains unclear.
Purpose of the Study:
- To investigate the impact of TMPRSS11B on the host immune system and TME in LUSC.
- To identify TMPRSS11B as a potential therapeutic target for LUSC.
Main Methods:
- Syngeneic mouse model with Tmprss11b depletion.
- RNA Fluorescence in situ hybridization (FISH) and spatial transcriptomics in the SNL mouse model.
- Ultra-pH sensitive nanoparticle imaging and metabolite analysis.
Main Results:
- Tmprss11b depletion significantly reduced tumor burden and increased immune cell infiltration in immunocompetent mice.
- Tmprss11b expression was enriched in Krt13+ hillock-like cells within LUSC tumors.
- LUSC tumors exhibited localized acidification, elevated lactate levels, and an enrichment of M2-like macrophages.
Conclusions:
- TMPRSS11B promotes an acidified and immunosuppressive TME in LUSC.
- TMPRSS11B is a promising therapeutic target for LUSC.
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