Institute of Biophysics, National Research Council, Genoa, Italy.
J Neurochem. 2010 May;113(3):796-806. doi: 10.1111/j.1471-4159.2010.06649.x. Epub 2010 Feb 17.
The P2X(7) receptor (P2X(7)R) is an ATP-gated cation channel whose biophysical properties remain to be unravelled unequivocally. Its activity is modulated by divalent cations and organic messengers such as arachidonic acid (AA). In this study, we analysed the differential modulation of magnesium (Mg(2+)) and AA on P2X(7)R by measuring whole-cell currents and intracellular Ca(2+) (Ca(2+)) and Na(+) (Na(+)) dynamics in HEK293 cells stably expressing full-length P2X(7)R and in cells endowed with the P2X(7)R variant lacking the entire C-terminus tail (trP2X(7)R), which is thought to control the pore activation. AA induced a robust potentiation of the P2X(7)R- and trP2X(7)R-mediated Ca(2+) rise but did not affect the ionic currents in both conditions. Extracellular Mg(2+) reduced the P2X7R- and trP2X(7)R-mediated Ca(2+) rise in a dose-dependent manner through a competitive mechanism. The modulation of the magnitude of the P2X(7)R-mediated ionic current and Na(+) rise were strongly dependent on Mg(2+) concentration but occurred in a non-competitive manner. In contrast, in cells expressing the trP2X(7)R, the small ionic currents and Na(+) signals were totally insensitive to Mg(2+). Collectively, these results support the tenet of a functional structure of P2X(7)R possessing at least two distinct conductive pathways one for Ca(2+) and another for monovalent ions, with the latter which depends on the presence of the receptor C-terminus.
P2X(7) 受体 (P2X(7)R) 是一种 ATP 门控阳离子通道,其生物物理特性仍有待明确。其活性受二价阳离子和花生四烯酸 (AA) 等有机信使的调节。在这项研究中,我们通过测量 HEK293 细胞中稳定表达全长 P2X(7)R 的细胞和缺乏整个 C 末端尾部 (trP2X(7)R) 的细胞中的全细胞电流以及细胞内 Ca(2+) (Ca(2+)) 和 Na(+) (Na(+)) 动力学,分析了 Mg(2+) (Mg(2+)) 和 AA 对 P2X(7)R 的差异调节。trP2X(7)R),据认为它控制孔激活。AA 强烈增强了 P2X(7)R 和 trP2X(7)R 介导的 Ca(2+) 升高,但在两种情况下均不影响离子电流。细胞外 Mg(2+) 通过竞争性机制以剂量依赖的方式降低 P2X7R 和 trP2X(7)R 介导的 Ca(2+) 升高。P2X(7)R 介导的离子电流和 Na(+) 升高幅度的调节强烈依赖于 Mg(2+) 浓度,但以非竞争性方式发生。相比之下,在表达 trP2X(7)R 的细胞中,小离子电流和 Na(+) 信号对 Mg(2+) 完全不敏感。总的来说,这些结果支持 P2X(7)R 的功能结构的原则,该结构至少具有两个不同的传导途径,一个用于 Ca(2+),另一个用于单价离子,后者取决于受体 C 末端的存在。