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Published on: January 12, 2020
Phenotypic and Functional Analyses of B7S1 in Ovarian Cancer
Dongli Cai1, Fang Wang2, Changgang Wang3
1Clinical and Translational Research Center, Shanghai First Maternity and Infant Hospital, School of Medicine,Tongji University, Shanghai, China.
Abstract:
Background: Although programmed death (PD) ligand 1 (PD-L1)/PD-1 inhibitors show potent and durable antitumor effects in a variety of tumors, their efficacy in patients with OvCa is modest. Thus, additional immunosuppressive mechanisms beyond PD-L1/PD-1 need to be identified. Methods: The mRNA expression profiles of OvCa patients were obtained from The Cancer Genome Atlas (TCGA) database. The expression and clinical characteristics of VTCN1 (encoding B7S1) in OvCa were analyzed. The molecular interaction network, Gene Ontology (GO) analysis and Gene set enrichment analysis (GSEA) were used to functionally annotate and predict signaling pathways of VTCN1 in OvCa. Moreover, 32 treatment-naïve patients with OvCa were recruited to assess B7S1 expression. The cytotoxic immune phenotypes in distinct subgroups were analyzed. Results: B7S1 expression was increased in tumor sections compared with that in normal tissues from OvCa patients at both the mRNA and protein levels. VTCN1 expression was significantly correlated with the mRNA expression levels of several other co-inhibitory immune checkpoints. B7S1 protein was found to be highly expressed in CD45+CD68+ myeloid cells, whereas its putative receptor was expressed in CD8+ tumor-infiltrating lymphocytes (TILs). Furthermore, expression of B7S1 in antigen-presenting cells (APCs) was significantly correlated with the cytolytic function of CD8+ TILs. Functional annotations indicated that VTCN1 was involved in regulating T cell-mediated immune responses and participated in the activation of a variety of classic signaling pathways related to the progression of human cancer. Conclusion: In OvCa, B7S1 was highly expressed and may initiate dysfunction of CD8+ TILs, which could be targeted for cancer immunotherapy.
Insights
B7S1 is highly expressed in ovarian cancer (OvCa) and may impair CD8+ T cells. Targeting B7S1 presents a potential strategy for OvCa immunotherapy.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- Programmed death (PD) ligand 1 (PD-L1)/PD-1 inhibitors have limited efficacy in ovarian cancer (OvCa).
- Identifying additional immunosuppressive mechanisms is crucial for improving OvCa treatment.
- The role of VTCN1 (encoding B7S1) in OvCa immunity requires further investigation.
Purpose of the Study:
- To investigate the expression and role of VTCN1/B7S1 in ovarian cancer (OvCa).
- To explore the relationship between B7S1 and immune cell function in OvCa.
- To evaluate B7S1 as a potential therapeutic target for OvCa immunotherapy.
Main Methods:
- Analysis of mRNA expression profiles from The Cancer Genome Atlas (TCGA) database for OvCa patients.
- Assessment of VTCN1 expression and clinical characteristics, including molecular interaction networks, Gene Ontology (GO), and Gene set enrichment analysis (GSEA).
- Evaluation of B7S1 protein expression in treatment-naïve OvCa patients and analysis of cytotoxic immune phenotypes.
Main Results:
- B7S1 mRNA and protein levels were elevated in OvCa tissues compared to normal tissues.
- VTCN1 expression correlated with other co-inhibitory immune checkpoints.
- B7S1 was highly expressed in myeloid cells and associated with CD8+ T cell dysfunction, impacting T cell-mediated immune responses.
Conclusions:
- B7S1 is upregulated in ovarian cancer and may contribute to CD8+ tumor-infiltrating lymphocyte (TIL) dysfunction.
- Targeting B7S1 offers a potential novel strategy for enhancing OvCa immunotherapy.
- Further research into B7S1's role in T cell regulation is warranted for developing new cancer treatments.

