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Targeting LLT1 as a potential immunotherapy option for cancer patients non-responsive to existing checkpoint
Tirtha Mandal1, Soorya Gnanasegaran1, Golding Rodrigues2
1Zumutor Biologics, Bangalore, Karnataka, India.
Background:
High levels of LLT1 expression have been found in several cancers, where it interacts with CD161 on NK cells to facilitate tumor immune escape. Targeting LLT1 could potentially relieve this inhibitory signal and enhance anti-tumor responses mediated through NK cells. Using the 'The Cancer Genome Atlas' (TCGA) database, we investigated the role of LLT1 in the tumor microenvironment (TME) across various cancers. Identifying such biomarkers could create new therapeutic options for patients in addition to complementing existing immunotherapies.
Methods:
LLT1 expression was evaluated in 33 cancers using TCGA transcriptome data. Univariate Cox regression analysis was employed to assess the correlation of LLT1 expression with patient survival. The relationship between LLT1 expression with immune infiltrates, immune gene signatures, and cancer genomic biomarkers (TMB, MSI, and MMR) was also investigated. Immunofluorescence studies were conducted to validate LLT1 expression in tumors. Furthermore, using the CRI iAtlas data, we evaluated LLT1 distribution and its correlation with other immune checkpoint genes in patients non-responsive to existing immune checkpoint therapies across multiple solid cancers.
Results:
High expression of LLT1 was observed in 12 cancers, including BRCA, CHOL, ESCA, GBM, HNSC, KIRC, KIRP, LIHC, LUAD, STAD, SARC, and PCPG. In certain cancers like COAD, KICH, and KIRC, high LLT1 expression was associated with poor prognosis. Further analysis revealed that upregulated LLT1 was associated with an abundance of NK and T cell infiltrates in the TME, as well as exhaustive immune biomarkers, and inversely associated with pro-inflammatory and tumor suppressor signatures. High LLT1 expression is also positively correlated with genomic biomarkers in certain cancers. Immunofluorescence studies confirmed moderate to high LLT1 expression in immune-resistant prostate cancer, glioma, ovarian cancer, and immune-sensitive liver cancer cell lines. An independent assessment of clinical cohorts from CRI iAtlas showed a correlation of upregulated LLT1 with multiple immunosuppressive genes in patients non-responsive to current ICIs.
Conclusions:
The biomarker analysis revealed a clear association between elevated LLT1 expression and an immunosuppressive TME in patient cohorts from TCGA and clinical databases. Therefore, this study provides a foundation for utilizing LLT1 as a potential target to improve clinical responses in ICI non-responsive patients with upregulated LLT1.
Insights
High LLT1 expression correlates with an immunosuppressive tumor microenvironment (TME) and poor prognosis in many cancers. Targeting LLT1 may improve responses in patients non-responsive to immune checkpoint inhibitors (ICIs).
Area of Science:
- Immunology and Cancer Research
- Molecular Biology and Genomics
Background:
- High levels of Lectin-like transcript 1 (LLT1) are observed in various cancers, where it promotes tumor immune escape by interacting with CD161 on Natural Killer (NK) cells.
- Targeting LLT1 offers a potential strategy to overcome immune evasion and enhance NK cell-mediated anti-tumor immunity.
Purpose of the Study:
- To investigate the role of LLT1 in the tumor microenvironment (TME) across a wide range of cancers using The Cancer Genome Atlas (TCGA) database.
- To identify LLT1 as a potential biomarker for predicting patient prognosis and response to immunotherapies.
Main Methods:
- Analyzed LLT1 expression in 33 cancer types using TCGA transcriptome data.
- Correlated LLT1 expression with patient survival, immune cell infiltrates, immune gene signatures, and cancer genomic biomarkers (TMB, MSI, MMR) via univariate Cox regression.
- Validated LLT1 expression using immunofluorescence and assessed its correlation with immune checkpoint inhibitors (ICIs) non-responsive cohorts using CRI iAtlas data.
Main Results:
- Elevated LLT1 expression was found in 12 cancers, associated with poor prognosis in COAD, KICH, and KIRC.
- Upregulated LLT1 correlated with increased NK and T cell infiltrates, immune exhaustion markers, and positively with genomic biomarkers in the TME.
- LLT1 expression was linked to immunosuppressive genes in patients non-responsive to current ICIs, confirmed by immunofluorescence and clinical cohort analysis.
Conclusions:
- Elevated LLT1 expression is a biomarker for an immunosuppressive TME across multiple cancer types.
- LLT1 represents a promising therapeutic target to enhance clinical responses in patients with upregulated LLT1 who are non-responsive to ICIs.
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