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A PRRX1 Signature Identifies TIM-3 and VISTA as Potential Immune Checkpoint Targets in a Subgroup of Microsatellite
Vigdis Nygaard1, Anne Hansen Ree2,3, Vegar Johansen Dagenborg1,2,4
1Department of Tumor Biology, Institute for Cancer Research, Oslo University Hospital, Oslo, Norway.
Abstract:
Disease recurrence and drug resistance are major challenges in the clinical management of patients with colorectal cancer liver metastases (CLM), and because tumors are generally microsatellite stable (MSS), responses to immune therapies are poor. The mesenchymal phenotype is overrepresented in treatment-resistant cancers and is associated with an immunosuppressed microenvironment. The aim of this work was to molecularly identify and characterize a mesenchymal subgroup of MSS CLM to identify novel therapeutic approaches. We here generated a mesenchymal gene expression signature by analysis of resection specimens from 38 patients with CLM using ranked expression level of the epithelial-to-mesenchymal transition-related transcription factor PRRX1. Downstream pathway analysis based on the resulting gene signature was performed and independent, publicly available datasets were used to validate the findings. A subgroup comprising 16% of the analyzed CLM samples were classified as mesenchymal, or belonging to the PRRX1 high group. Analysis of the PRRX1 signature genes revealed a distinct immunosuppressive phenotype with high expression of immune checkpoints HAVCR2/TIM-3 and VISTA, in addition to the M2 macrophage marker CD163. The findings were convincingly validated in datasets from three external CLM cohorts. Upregulation of immune checkpoints HAVCR2/TIM-3 and VISTA in the PRRX1 high subgroup is a novel finding, and suggests immune evasion beyond the PD-1/PD-L1 axis, which may contribute to poor response to PD-1/PD-L1-directed immune therapy in MSS colorectal cancer. Importantly, these checkpoints represent potential novel opportunities for immune-based therapy approaches in a subset of MSS CLM.
Significance:
CLM is an important cause of colorectal cancer mortality where the majority of patients have yet to benefit from immunotherapies. In this study of gene expression profiling analyses, we uncovered novel immune checkpoint targets in a subgroup of patients with MSS CLMs harboring a mesenchymal phenotype.
Insights
Researchers identified a mesenchymal subgroup in microsatellite stable colorectal cancer liver metastases (MSS CLM) with high PRRX1 expression. This subgroup exhibits an immunosuppressive phenotype, suggesting new therapeutic targets beyond PD-1/PD-L1 for MSS CLM treatment.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Colorectal cancer liver metastases (CLM) pose significant challenges due to disease recurrence and drug resistance.
- Microsatellite stable (MSS) CLM tumors generally exhibit poor responses to current immune therapies.
- A mesenchymal phenotype is linked to treatment resistance and an immunosuppressed tumor microenvironment.
Purpose of the Study:
- To molecularly identify and characterize a mesenchymal subgroup within MSS CLM.
- To discover novel therapeutic targets for treatment-resistant MSS CLM.
- To investigate the immune microenvironment associated with the mesenchymal phenotype in MSS CLM.
Main Methods:
- Gene expression profiling of 38 MSS CLM resection specimens.
- Development of a mesenchymal gene expression signature based on the transcription factor PRRX1.
- Validation of the signature and findings in independent, publicly available CLM datasets.
Main Results:
- A mesenchymal subgroup (PRRX1-high) was identified, comprising 16% of the analyzed MSS CLM samples.
- The PRRX1-high subgroup displayed a distinct immunosuppressive phenotype.
- Upregulation of immune checkpoints HAVCR2/TIM-3 and VISTA, along with the M2 macrophage marker CD163, was observed in the PRRX1-high subgroup.
Conclusions:
- The PRRX1-high subgroup in MSS CLM exhibits an immunosuppressive phenotype characterized by novel immune checkpoint expression (HAVCR2/TIM-3, VISTA).
- This immune evasion mechanism may explain the poor response to PD-1/PD-L1 therapies in MSS CLM.
- These identified immune checkpoints represent potential novel therapeutic targets for immune-based treatment strategies in a subset of MSS CLM patients.
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