P2X7 receptor activation leads to increased cell death in a radiosensitive human glioma cell line
Marina Petersen Gehring1, Talita Carneiro Brandão Pereira, Rafael Fernandes Zanin
1Laboratório de Farmacologia Aplicada, PUCRS, Av. Ipiranga, 6681, Prédio 12C, Sala 148, Partenon, Porto Alegre, RS, Brazil.
Abstract:
Gliomas are the most lethal tumors of central nervous system. ATP is an important signaling molecule in CNS and it is a selective P2X7 purinergic receptor ligand at high concentrations. Herein, we investigated whether the activation of P2X7R might be implicated in death of a radiosensitive human glioma lineage. The effects of P2X7R agonists (ATP and BzATP) and irradiation (2 Gy) on glioma cells were analyzed by MTT assay and annexin-V/PI determination, whereas mRNA and protein P2X7R expression was assessed by qRT-PCR and flow cytometry, respectively. P2X7R pore formation was functionality examined by analyzing ethidium bromide uptake. The human glioma cells U-138 MG and U-251 MG were resistant to death when treated with either ATP (5 mM) or BzATP (100 μM), but the radiosensitive M059J glioma cells displayed a significant decrease of cell viability (32.4 ± 4.1 % and 25.6 ± 3.3 %, respectively). The M059J lineage expresses significantly higher mRNA P2X7R levels when compared to the U-138 MG and U-251 cell lines (0.40 ± 0.00; 0.28 ± 0.01, and 0.31 ± 0.01, respectively), and irradiation upregulated P2X7R expression (0.55 ± 0.08) in this lineage. Noteworthy, P2X7R protein doubled after irradiation on M059J lineage, and increased in 50 % and 42.6 % when comparing M059J-irradiated to irradiated U-138 MG and U-251 MG cells, respectively. Ethidium bromide uptake was significantly increased in 104 % and 77.8 % when comparing M059J to U-138 MG and U-251MG, respectively. Finally, the selective P2X7R antagonist A740003 significantly decreased the cell death caused by irradiation. We provide novel evidence indicating that M059J human glioma cell line is ATP-P2X7R sensitive, pointing out the relevance of the purinergic P2X7R on glioma radiosensitivity.
Insights
Radiosensitive glioma cells show increased cell death upon activation of the P2X7 receptor (P2X7R) by ATP. Blocking P2X7R with an antagonist reduced irradiation-induced cell death, highlighting P2X7R
Area of Science:
- Neuro-oncology
- Cellular signaling
- Radiotherapy research
Background:
- Gliomas are aggressive central nervous system tumors.
- Adenosine triphosphate (ATP) acts as a signaling molecule in the CNS.
- The P2X7 receptor (P2X7R) is a purinergic receptor activated by ATP.
Purpose of the Study:
- To investigate the role of P2X7R activation in the cell death of a radiosensitive human glioma cell line.
- To determine if P2X7R is implicated in glioma radiosensitivity.
Main Methods:
- MTT assay and annexin-V/PI staining to assess cell viability and apoptosis.
- Quantitative real-time PCR (qRT-PCR) for P2X7R mRNA expression.
- Flow cytometry for P2X7R protein expression.
- Ethidium bromide uptake assay to evaluate P2X7R pore formation.
- Treatment with P2X7R agonists (ATP, BzATP) and irradiation (2 Gy).
- Use of a selective P2X7R antagonist (A740003).
Main Results:
- Radiosensitive M059J glioma cells exhibited significant cell death upon ATP or BzATP treatment, unlike resistant U-138 MG and U-251 MG cells.
- M059J cells showed higher basal P2X7R mRNA expression compared to U-138 MG and U-251 MG cells.
- Irradiation upregulated P2X7R mRNA and protein expression in M059J cells.
- Irradiation significantly increased P2X7R pore formation in M059J cells.
- The P2X7R antagonist A740003 reduced irradiation-induced cell death in M059J cells.
Conclusions:
- The M059J human glioma cell line is sensitive to ATP-mediated P2X7R activation.
- P2X7R plays a significant role in the radiosensitivity of M059J glioma cells.
- Targeting P2X7R may represent a novel therapeutic strategy to enhance glioma radiosensitivity.
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