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Increased Expression of the RBPMS Splice Variants Inhibits Cell Proliferation in Ovarian Cancer Cells
Robert J Rabelo-Fernández1,2, Ricardo A Noriega Rivera3, Yasmarie Santana Rivera4
1Department of Biology, University of Puerto Rico at Rio Piedras, San Juan, PR 00925, USA.
Abstract:
RNA-Binding Protein with Multiple Splicing (RBPMS) is a member of family proteins that bind to nascent RNA transcripts and regulate their splicing, localization, and stability. Evidence indicates that RBPMS controls the activity of transcription factors associated with cell growth and proliferation, including AP-1 and Smads. Three major RBPMS protein splice variants (RBPMSA, RBPMSB, and RBPMSC) have been described in the literature. We previously reported that reduced RBPMS levels decreased the sensitivity of ovarian cancer cells to cisplatin treatment. However, little is known about the biological role of the RBPMS splice variants in ovarian cancer cells. We performed RT-PCR and Western blots and observed that both RBPMSA and RBPMSC are reduced at the mRNA and protein levels in cisplatin resistant as compared with cisplatin sensitive ovarian cancer cells. The mRNA and protein levels of RBPMSB were not detectable in any of the ovarian cancer cells tested. To better understand the biological role of each RBPMSA and RBPMSC, we transfected these two splice variants in the A2780CP20 and OVCAR3CIS cisplatin resistant ovarian cancer cells and performed cell proliferation, cell migration, and invasion assays. Compared with control clones, a significant reduction in the number of colonies, colony size, cell migration, and invasion was observed with RBPMSA and RBPMSC overexpressed cells. Moreover, A2780CP20-RBPMSA and A2780CP20-RBPMSC clones showed reduced senescence-associated β-galactosidase (β-Gal)-levels when compared with control clones. A2780CP20-RBPMSA clones were more sensitive to cisplatin treatment as compared with A2780CP20-RBPMSC clones. The A2780CP20-RBPMSA and A2780CP20-RBPMSC clones subcutaneously injected into athymic nude mice formed smaller tumors as compared with A2780CP20-EV control group. Additionally, immunohistochemical analysis showed lower proliferation (Ki67) and angiogenesis (CD31) staining in tissue sections of A2780CP20-RBPMSA and A2780CP20-RBPMSC tumors compared with controls. RNAseq studies revealed many common RNA transcripts altered in A2780CP20-RBPMSA and A2780CP20-RBPMSC clones. Unique RNA transcripts deregulated by each RBPMS variant were also observed. Kaplan-Meier (KM) plotter database information identified clinically relevant RBPMSA and RBPMSC downstream effectors. These studies suggest that increased levels of RBPMSA and RBPMSC reduce cell proliferation in ovarian cancer cells. However, only RBPMSA expression levels were associated with the sensitivity of ovarian cancer cells to cisplatin treatment.
Insights
RNA-Binding Protein with Multiple Splicing (RBPMS) splice variants, RBPMSA and RBPMSC, were reduced in cisplatin-resistant ovarian cancer. Overexpression of RBPMSA and RBPMSC inhibited tumor growth, but only RBPMSA impacted cisplatin sensitivity.
Area of Science:
- Molecular Biology
- Cancer Research
- RNA Biology
Background:
- RNA-Binding Protein with Multiple Splicing (RBPMS) regulates RNA processing and influences cell growth.
- Three RBPMS splice variants (RBPMSA, RBPMSB, RBPMSC) exist, with limited understanding of their roles in ovarian cancer.
- Previous work linked reduced RBPMS to decreased cisplatin sensitivity in ovarian cancer cells.
Purpose of the Study:
- To investigate the biological roles of RBPMSA and RBPMSC splice variants in ovarian cancer.
- To determine the effect of RBPMSA and RBPMSC overexpression on cisplatin resistance, cell proliferation, migration, and invasion.
- To explore the impact of RBPMS variants on tumor growth and identify downstream effectors.
Main Methods:
- RT-PCR and Western blot analysis to assess RBPMS variant expression in sensitive and resistant ovarian cancer cells.
- Transfection of RBPMSA and RBPMSC into cisplatin-resistant ovarian cancer cell lines (A2780CP20, OVCAR3CIS).
- Cell proliferation, migration, invasion assays, senescence assays, in vivo tumor formation studies in athymic nude mice, RNA sequencing, and Kaplan-Meier plotter analysis.
Main Results:
- RBPMSA and RBPMSC were downregulated at mRNA and protein levels in cisplatin-resistant ovarian cancer cells; RBPMSB was undetectable.
- Overexpression of RBPMSA and RBPMSC significantly reduced colony formation, cell migration, invasion, and tumor growth in vivo.
- RBPMSA overexpression, more than RBPMSC, increased sensitivity to cisplatin treatment and reduced tumor proliferation and angiogenesis.
Conclusions:
- Increased RBPMSA and RBPMSC levels inhibit ovarian cancer cell proliferation and tumor growth.
- RBPMSA expression is specifically associated with increased sensitivity to cisplatin treatment in ovarian cancer.
- RBPMS variants play distinct roles in ovarian cancer progression and treatment response, highlighting potential therapeutic targets.
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