P2X7 receptor: the regulator of glioma tumor development and survival.
Damian MatyśniakVira ChumakNatalia NowakArtur KuklaLilya LehkaMagdalena OslislokPaweł PomorskiPublished in: Purinergic signalling (2021)
P2X7 is an ionotropic nucleotide receptor, forming the cation channel upon ATP stimulation. It can also function as a large membrane pore as well as transmit ATP-dependent signal without forming a channel at all. P2X7 activity in somatic cells is well-known, but remains poorly studied in glioma tumors. The current paper presents the comprehensive study of P2X7 activity in C6 and glioma cell line showing the wide range of effects the receptor has on glioma biology. We observed that P2X7 stimulation boosts glioma cell proliferation and increases cell viability. P2X7 activation promoted cell adhesion, mitochondria depolarization, and reactive oxygen species overproduction in C6 cells. P2X7 receptor also influenced glioma tumor growth in vivo via activation of pro-survival signaling pathways and ATP release. Treatment with Brilliant Blue G, a selective P2X7 antagonist, effectively inhibited glioma tumor development; decreased the expression of negative prognostic cancer markers pro-survival and epithelial-mesenchymal transition (EMT)-related proteins; and modulated the immune response toward glioma tumor in vivo. Finally, pathway-specific enrichment analysis of the microarray data from human patients also showed an upregulation of P2X7 receptor in gliomas from grades I to III. The presented results shed more light on the role of P2X7 receptor in the biology of this disease.
Keyphrases
- epithelial mesenchymal transition
- immune response
- cell proliferation
- induced apoptosis
- reactive oxygen species
- signaling pathway
- poor prognosis
- binding protein
- end stage renal disease
- endothelial cells
- cell adhesion
- squamous cell carcinoma
- chronic kidney disease
- inflammatory response
- gene expression
- dendritic cells
- anti inflammatory
- pi k akt
- toll like receptor
- transforming growth factor
- long non coding rna
- endoplasmic reticulum stress
- genome wide
- smoking cessation
- papillary thyroid
- replacement therapy
- solid state