[No authors listed]
In the tumor microenvironment, extracellular nucleotides are released and accumulate, and can activate the P2Y2 receptor (P2Y2R), which regulates various responses in tumor cells, resulting in tumor progression and metastasis. Moreover, the inflammasome has recently been reported to be associated with tumor progression. However, the role of P2Y2R in inflammasome activation in breast cancer cells is not yet well defined. Therefore, in this study, we investigated the role of P2Y2R in inflammasome-mediated tumor progression in breast cancer using breast cancer cells and radiotherapy-resistant (RTâR) breast cancer cells. We established RTâR-breast cancer cells (RTâRâMDAâMBâ231, RTâRâMCFâ7, and RTâR-T47D cells) by repeated irradiation (2 Gy each, 25 times) in a previous study. In this study, we found that the RTâR breast cancer cells exhibited an increased release of adenosine triphosphate (ATP) and P2Y2R activity. In particular, the RTâRâMDAâMBâ231 cells derived from highly metastatic MDAâMBâ231 cells, exhibited a markedly increased ATP release, which was potentiated by tumor necrosis factor (TNF)-α. The MDAâMBâ231 cells exhibited inflammasome activation, as measured by caspaseâ1 activity and interleukin (IL)-1β secretion following treatment with TNFâα and ATP; these effects were enhanced in the RTâRâMDAâMBâ231 cells. However, the increased caspaseâ1 activities and ILâ1β secretion levels induced in response to treatment with TNFâα or ATP were significantly reduced by P2Y2R knockdown or the presence of apyrase in both the MDAâMBâ231 and RTâRâMDAâMBâ231 cells, suggesting the involvement of ATP-activated P2Y2R in inflammasome activation. In addition, TNFâα and ATP increased the invasive and colony-forming ability of the MDAâMBâ231 and RTâRâMDAâMBâ231 cells, and these effects were caspaseâ1-dependent. Moreover, matrix metalloproteinase (MMP)-9 activity was modulated by caspase-1, in a P2Y2R-dependent manner in the MDAâMBâ231 and RTâRâMDAâMBâ231 cells. Finally, nude mice injected with the RTâRâMDAâMBâ231-EV cells (transfected with the empty vector) exhibited increased tumor growth, and higher levels of MMP-9 in their tumors and ILâ1β levels in their serum compared with the mice injected with the RTâRâMDAâMBâ231-P2Y2R shRNA cells (transfected with P2Y2R shRNA). On the whole, the findings of this study suggest that extracellular ATP promotes tumor progression in RTâR-breast cancer cells and breast cancer cells by modulating invasion and associated molecules through the P2Y2R-inflammasome activation pathway.
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