Mitochondrial dysfunction is involved in P2X7 receptor-mediated neuronal cell death

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Abstract

P2X7 receptor (P2X7R) is known to be a 'death receptor' in immune cells, but its functional expression in non-immune cells such as neurons is controversial. Here, we examined the involvement of P2X7R activation and mitochondrial dysfunction in ATP-induced neuronal death in cultured cortical neurons. In P2X7R- and pannexin-1-expressing neuron cultures, 5 or more mM ATP or 0.1 or more mM BzATP induced neuronal death including apoptosis, and cell death was prevented by oxATP, P2X7R-selective antagonists. ATP-treated neurons exhibited Ca2+ entry and YO-PRO-1 uptake, the former being inhibited by oxATP and A438079, and the latter by oxATP and carbenoxolone, while P2X7R antagonism with oxATP, but not pannexin-1 blocking with carbenoxolone, prevented the ATP-induced neuronal death. The ATP treatment induced reactive oxygen species generation through activation of NADPH oxidase and activated poly(ADP-ribose) polymerase, but both of them made no or negligible contribution to the neuronal death. Rhodamine123 efflux from neuronal mitochondria was increased by the ATP-treatment and was inhibited by oxATP, and a mitochondrial permeability transition pore inhibitor, cyclosporine A, significantly decreased the ATP-induced neuronal death. In ATP-treated neurons, the cleavage of pro-caspase-3 was increased, and caspase inhibitors, Q-VD-OPh and Z-DEVD-FMK, inhibited the neuronal death. The cleavage of apoptosis-inducing factor was increased, and calpain inhibitors, MDL28170 and PD151746, inhibited the neuronal death. These findings suggested that P2X7R was functionally expressed by cortical neuron cultures, and its activation-triggered Ca2+ entry and mitochondrial dysfunction played important roles in the ATP-induced neuronal death. We proposed the following cascade for P2X7R-mediated neuronal death: activation of P2X7R evokes Ca2+ influx via ion channels of P2X7R, increase in the [Ca2+]i causes mitochondrial dysfunction, and then caspase- and AIF-dependent neuronal apoptosis is induced. We think these findings should provide a new strategy for the treatment of ATP-related brain injuries. © 2012 International Society for Neurochemistry.

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Nishida, K., Nakatani, T., Ohishi, A., Okuda, H., Higashi, Y., Matsuo, T., … Nagasawa, K. (2012). Mitochondrial dysfunction is involved in P2X7 receptor-mediated neuronal cell death. Journal of Neurochemistry, 122(6), 1118–1128. https://doi.org/10.1111/j.1471-4159.2012.07868.x

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