Abstract

The molecular basis of epithelial ovarian cancer (EOC) dissemination is still poorly understood. Previously, we identified the mannose receptor LY75 gene as hypomethylated in high-grade (HG) serous EOC tumors, compared to normal ovarian tissues. LY75 represents endocytic receptor expressed on dendritic cells and so far, has been primarily studied for its role in antigen processing and presentation. Here we demonstrate that LY75 is overexpressed in advanced EOC and that LY75 suppression induces mesenchymal-to-epithelial transition (MET) in EOC cell lines with mesenchymal morphology (SKOV3 and TOV112), accompanied by reduction of their migratory and invasive capacity in vitro and enhanced tumor cell colonization and metastatic growth in vivo. LY75 knockdown in SKOV3 cells also resulted in predominant upregulation of functional pathways implicated in cell proliferation and metabolism, while pathways associated with cell signaling and adhesion, complement activation and immune response were mostly suppressed. Moreover, LY75 suppression had an opposite effect on EOC cell lines with epithelial phenotype (A2780s and OV2008), by directing epithelial-to-mesenchymal transition (EMT) associated with reduced capacity for in vivo EOC cell colonization, as similar/identical signaling pathways were reversely regulated, when compared to mesenchymal LY75 knockdown EOC cells.To our knowledge, this is the first report of a gene displaying such pleiotropic effects in sustaining the cellular phenotype of EOC cells and points to novel functions of this receptor in modulating EOC dissemination. Our data also support previous findings regarding the superior capacity of epithelial cancer cells in metastatic colonization of distant sites, compared to cancer cells with mesenchymal-like morphology.

Highlights

  • Epithelial ovarian cancer (EOC) accounts for 4% of all cancers in women and is the leading cause of death from gynecologic malignancies [1]

  • We initially evaluated LY75 protein expression by immunohistochemistry (IHC) in numerous serous epithelial ovarian cancer (EOC) tumor and normal ovarian tissue samples, using tissue microarrays (TMAs)

  • Alternative methylation analysis in independent set of serous HG serous EOC tumors confirmed the hypomethylation status of the putative LY75 promoter region in the tumor samples compared to normal ovarian tissues (Supplemental Figure 1), which is indicative for possible implications of epigenetic mechanisms in the control of LY75 expression in EOC

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Summary

Introduction

Epithelial ovarian cancer (EOC) accounts for 4% of all cancers in women and is the leading cause of death from gynecologic malignancies [1]. Alternative methylation analysis (using the bisulfite sequencing PCR, or BSP approach) in independent set of serous HG serous EOC tumors confirmed the hypomethylation status of the putative LY75 promoter region in the tumor samples compared to normal ovarian tissues (Supplemental Figure 1), which is indicative for possible implications of epigenetic mechanisms in the control of LY75 expression in EOC.

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