Expression of PVRL4, a molecular target for cancer treatment, is transcriptionally regulated by FOS
Tomoyuki Nanamiya1, Kiyoko Takane1, Kiyoshi Yamaguchi1
1Division of Clinical Genome Research, The Institute of Medical Science, The University of Tokyo, Tokyo 108‑8639, Japan.
Abstract:
PVRL4 (or nectin‑4) is a promising therapeutic target since its upregulated expression is found in a wide range of human cancer types. Enfortumab vedotin, an antibody‑drug conjugate targeting PVRL4, is clinically used for the treatment of urothelial bladder cancer. In addition, rMV‑SLAMblind, a genetically engineered oncolytic measles virus, can infect cancer cells and induce apoptosis through interaction with PVRL4. Although PVRL4 transcript levels are elevated in breast, lung and ovarian cancer, the mechanisms of its upregulation have not yet been uncovered. To clarify the regulatory mechanisms of elevated PVRL4 expression in breast cancer cells, Assay for Transposase‑Accessible Chromatin‑sequencing and chromatin immunoprecipitation‑sequencing (ChIP‑seq) data were used to search for its regulatory regions. Using breast cancer cells, an enhancer region was ultimately identified. Additional analyses, including ChIP and reporter assays, demonstrated that FOS interacted with the PVRL4 enhancer region, and that alterations of the FOS‑binding motifs in the enhancer region decreased reporter activity. Consistent with these data, exogenous expression of FOS enhanced the reporter activity and PVRL4 expression in breast cancer cells. Furthermore, RNA‑seq analysis using breast cancer cells treated with PVRL4 small interfering RNA revealed its possible involvement in the cytokine response and immune system. These data suggested that FOS was involved, at least partly, in the regulation of PVRL4 expression in breast cancer cells, and that elevated PVRL4 expression may regulate the response of cancer cells to cytokines and the immune system.
Insights
The study identified that FOS regulates the expression of PVRL4 (nectin-4) in breast cancer cells. This finding may explain how elevated PVRL4 impacts cancer cell responses to cytokines and the immune system.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genomics
Background:
- PVRL4 (nectin-4) is upregulated in various cancers and is a target for therapies like enfortumab vedotin.
- The mechanisms driving elevated PVRL4 expression in cancers, particularly breast cancer, remain unclear.
Purpose of the Study:
- To investigate the regulatory mechanisms behind elevated PVRL4 expression in breast cancer cells.
- To identify specific transcription factors involved in PVRL4 gene regulation.
Main Methods:
- Assay for Transposase-Accessible Chromatin-sequencing (ATAC-seq) and Chromatin Immunoprecipitation-sequencing (ChIP-seq) were employed to identify regulatory regions.
- ChIP assays and reporter assays were used to validate FOS interaction with the PVRL4 enhancer.
- RNA-sequencing (RNA-seq) was performed on cells treated with PVRL4 small interfering RNA.
Main Results:
- An enhancer region regulating PVRL4 was identified in breast cancer cells.
- FOS was found to interact with this PVRL4 enhancer region, and alterations in FOS-binding motifs reduced reporter activity.
- Exogenous FOS expression increased reporter activity and PVRL4 expression in breast cancer cells.
- PVRL4 was implicated in cytokine response and immune system regulation.
Conclusions:
- FOS plays a role in regulating PVRL4 expression in breast cancer.
- Elevated PVRL4 expression may influence breast cancer cell responses to cytokines and immune signaling.
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