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MCPIP1 overexpression in human neuroblastoma cell lines causes cell-cycle arrest by G1/S checkpoint block
Elżbieta Boratyn1, Iwona Nowak1, Elżbieta Karnas2,3
1Laboratory of Molecular Genetics and Virology, Faculty of Biochemistry, Biophysics, and Biotechnology, Jagiellonian University, Kraków, Poland.
Abstract:
Monocyte chemoattractant protein-1-induced protein 1 (MCPIP1) has a multidomain structure, which assures its pleiotropic activity. The physiological functions of this protein include repression of inflammatory processes and the prevention of immune disorders. The influence of MCPIP1 on the cell cycle of cancer cells has not been sufficiently elucidated. A previous study by our group reported that overexpression of MCPIP1 affects the cell viability, inhibits the activation of the phosphoinositide-3 kinase/mammalian target of rapamycin signalling pathway, and reduces the stability of the MYCN oncogene in neuroblastoma (NB) cells. Furthermore, a decrease in expression and phosphorylation levels of cyclin-dependent kinase (CDK) 1, which has a key role in the M phase of the cell cycle, was observed. On the basis of these previous results, the purpose of our present study was to elucidate the influence of MCPIP1 on the cell cycle of NB cells. It was confirmed that ectopic overexpression of MCPIP1 in two human NB cell lines, KELLY and BE(2)-C, inhibited cell proliferation. Furthermore, flow cytometric analyses and imaging of the cell cycle with a fluorescence ubiquitination cell-cycle indicator test, demonstrated that overexpression of MCPIP1 causes an accumulation of NB cells in the G1 phase of the cell cycle, while the possibility of an increase in G0 phase due to induction of quiescence or senescence was excluded. Additional assessment of the molecular machinery responsible for the transition between the cell-cycle phases confirmed that MCPIP1 overexpression reduced the expression of cyclins A2, B1, D1, D3, E1, and E2 and decreased the phosphorylation of CDK2 and CDK4, as well as retinoblastoma protein. In conclusion, the present results indicated a relevant impact of overexpression of MCPIP1 on the cell cycle, namely a block of the G1/S cell-cycle checkpoint, resulting in arrest of NB cells in the G1 phase.
Insights
Monocyte chemoattractant protein-1-induced protein 1 (MCPIP1) overexpression inhibits neuroblastoma cell proliferation by arresting them in the G1 phase. This occurs via blocking the G1/S cell-cycle checkpoint and reducing key cell-cycle regulators.
Area of Science:
- Molecular Biology
- Cell Biology
- Oncology
Background:
- Monocyte chemoattractant protein-1-induced protein 1 (MCPIP1) is a pleiotropic protein involved in inflammation and immune responses.
- Its role in cancer cell cycle regulation, particularly in neuroblastoma (NB), remains unclear.
- Previous studies indicated MCPIP1 affects NB cell viability and key signaling pathways.
Purpose of the Study:
- To elucidate the influence of MCPIP1 on the cell cycle progression of neuroblastoma cells.
- To investigate the specific cell cycle phase affected by MCPIP1 overexpression.
- To identify the molecular mechanisms underlying MCPIP1's effect on the NB cell cycle.
Main Methods:
- Ectopic overexpression of MCPIP1 in human NB cell lines (KELLY and BE(2)-C).
- Cell proliferation assays, flow cytometry, and fluorescence ubiquitination cell-cycle indicator (FUCCI) imaging.
- Analysis of cell-cycle regulatory proteins, including cyclins and cyclin-dependent kinases (CDKs).
Main Results:
- MCPIP1 overexpression significantly inhibited proliferation in KELLY and BE(2)-C neuroblastoma cells.
- Flow cytometry and FUCCI analyses revealed an accumulation of NB cells in the G1 phase.
- MCPIP1 overexpression reduced the expression of cyclins A2, B1, D1, D3, E1, and E2, and decreased phosphorylation of CDK2, CDK4, and retinoblastoma protein.
Conclusions:
- MCPIP1 overexpression induces a G1 phase cell-cycle arrest in neuroblastoma cells.
- This arrest is mediated by the blockage of the G1/S cell-cycle checkpoint.
- MCPIP1 plays a significant role in regulating the neuroblastoma cell cycle.
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