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Enrichment and Characterization of the Tumor Immune and Non-immune Microenvironments in Established Subcutaneous Murine Tumors
Published on: June 7, 2018
Genomic Characterization of Six Virus-Associated Cancers Identifies Changes in the Tumor Immune Microenvironment and
Frederick S Varn1, Evelien Schaafsma1, Yue Wang1
1Department of Molecular and Systems Biology, Geisel School of Medicine at Dartmouth, Hanover, New Hampshire.
Abstract:
Viruses affect approximately 20% of all human cancers and induce expression of immunogenic viral oncoproteins that make these tumors potent targets for immune checkpoint inhibitors. In this study, we apply computational tools to The Cancer Genome Atlas (TCGA) and other genomic datasets to define how virus infection shapes the tumor immune microenvironment and genetic architecture of 6 virus-associated tumor types. Across cancers, the cellular composition of the microenvironment varied by viral status, with virus-positive tumors often exhibiting increased infiltration of cytolytic cell types compared with their virus-negative counterparts. Analyses of the infiltrating T-cell receptor repertoire in these patients revealed that Epstein-Barr virus infection was associated with decreased receptor diversity in multiple cancers, suggesting an antigen-driven clonal T-cell response. Tissue-specific gene-expression signatures capturing virus-associated transcriptomic changes successfully predicted virus status in independent datasets and were associated with both immune- and proliferation-related features that were predictive of patient prognosis. Together, the analyses presented suggest viruses have distinct effects in different tumors, with implications for immunotherapy.Significance: This study utilizes TCGA and other genomic datasets to further our understanding of how viruses affect the tumor immune response in different cancer types.Graphical Abstract: http://cancerres.aacrjournals.org/content/canres/78/22/6413/F1.large.jpg Cancer Res; 78(22); 6413-23. ©2018 AACR.
Insights
Viruses influence cancer by altering the tumor immune microenvironment and genetic makeup. This study reveals virus-positive tumors often have more immune cells, impacting immunotherapy effectiveness.
Area of Science:
- Oncology
- Virology
- Immunology
Background:
- Viruses are implicated in approximately 20% of human cancers, producing oncoproteins that can be targeted by immunotherapies.
- Understanding how viral infections shape the tumor immune microenvironment is crucial for developing effective cancer treatments.
Purpose of the Study:
- To computationally analyze The Cancer Genome Atlas (TCGA) and other genomic datasets.
- To define the impact of virus infection on the tumor immune microenvironment and genetic architecture in six virus-associated cancer types.
Main Methods:
- Utilized TCGA and other genomic datasets for computational analysis.
- Analyzed cellular composition of the tumor microenvironment based on viral status.
- Examined T-cell receptor repertoire diversity in virus-infected patients.
Main Results:
- Virus-positive tumors showed increased infiltration of cytolytic immune cells compared to virus-negative tumors.
- Epstein-Barr virus infection correlated with reduced T-cell receptor diversity, suggesting an antigen-driven response.
- Identified gene-expression signatures that predict viral status and are linked to immune and proliferation features impacting prognosis.
Conclusions:
- Viral infections have distinct effects on different tumor types, influencing the tumor immune microenvironment.
- These findings have significant implications for the application of cancer immunotherapies targeting virus-associated tumors.
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