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Updated: Jun 7, 2025

Analysis of Cell Cycle Position in Mammalian Cells
Published on: January 21, 2012
TRBP2, a Major Component of the RNAi Machinery, Is Subjected to Cell Cycle-Dependent Regulation in Human Cancer Cells
Eleni I Theotoki1,2, Panos Kakoulidis2,3, Athanassios D Velentzas1
1Section of Cell Biology and Biophysics, Department of Biology, School of Science, National and Kapodistrian University of Athens (NKUA), 157 01 Athens, Greece.
Background:
Transactivation Response Element RNA-binding Protein (TRBP2) is a double-stranded RNA-binding protein widely known for its critical contribution to RNA interference (RNAi), a conserved mechanism of gene-expression regulation mediated through small non-coding RNA moieties (ncRNAs). Nevertheless, TRBP2 has also proved to be involved in other molecular pathways and biological processes, such as cell growth, organism development, spermatogenesis, and stress response. Mutations or aberrant expression of TRBP2 have been previously associated with diverse human pathologies, including Alzheimer's disease, cardiomyopathy, and cancer, with TRBP2 playing an essential role(s) in proliferation, invasion, and metastasis of tumor cells.
Methods:
Hence, the present study aims to investigate, via employment of advanced flow cytometry, immunofluorescence, cell transgenesis and bioinformatics technologies, new, still elusive, functions and properties of TRBP2, particularly regarding its cell cycle-specific control during cancer cell division.
Results:
We have identified a novel, mitosis-dependent regulation of TRBP2 protein expression, as clearly evidenced by the lack of its immunofluorescence-facilitated detection during mitotic phases, in several human cancer cell lines of different tissue origin. Notably, the obtained TRBP2-downregulation patterns seem to derive from molecular mechanisms that act independently of oncogenic activities (e.g., malignancy grade), metastatic capacities (e.g., low versus high), and mutational signatures (e.g., p53-/- or p53ΔΥ126) of cancer cells.
Conclusions:
Taken together, we herein propose that TRBP2 serves as a novel cell cycle-dependent regulator, likely exerting mitosis-suppression functions, and, thus, its mitosis-specific downregulation can hold strong promise to be exploited for the efficient and successful prognosis, diagnosis, and (radio-/chemo-)therapy of diverse human malignancies, in the clinic.
Insights
Transactivation Response Element RNA-binding Protein 2 (TRBP2) is downregulated during mitosis in cancer cells. This novel cell cycle regulation suggests TRBP2 may suppress mitosis and could be a target for cancer therapy.
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- Transactivation Response Element RNA-binding Protein 2 (TRBP2) is a key protein in RNA interference and cellular processes like growth and development.
- Aberrant TRBP2 expression is linked to human diseases, including cancer, where it influences tumor cell proliferation and metastasis.
Purpose of the Study:
- To investigate the elusive functions and properties of TRBP2.
- To explore TRBP2's cell cycle-specific control during cancer cell division.
Main Methods:
- Advanced flow cytometry
- Immunofluorescence
- Cell transgenesis
- Bioinformatics technologies
Main Results:
- A novel, mitosis-dependent regulation of TRBP2 protein expression was identified.
- TRBP2 immunofluorescence detection was absent during mitotic phases in various human cancer cell lines.
- TRBP2 downregulation mechanisms appear independent of cancer cell malignancy, metastatic potential, or specific mutations.
Conclusions:
- TRBP2 acts as a novel cell cycle-dependent regulator, potentially suppressing mitosis.
- Mitosis-specific TRBP2 downregulation offers promise for cancer prognosis, diagnosis, and therapy.
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