Department of Environmental Biochemistry, Kyoto Pharmaceutical University, 5 Nakauchi-cho, Misasagi, Yamashina-ku, Kyoto 607-8414, Japan.
Metallomics. 2017 Dec 1;9(12):1839-1851. doi: 10.1039/c7mt00257b.
Neuron-glia communication mediated by neuro- and glio-transmitters such as ATP and zinc is crucial for the maintenance of brain homeostasis, and its dysregulation is found under pathological conditions. It is reported that under oxidative stress-loaded conditions, astrocytes exhibit increased intra- and extra-cellular labile zinc, the latter triggering microglial M1 activation, while the pathophysiological role of the former remains unrevealed. In this study, we examined whether the oxidative stress-induced increase of intracellular labile zinc is involved in the P2X7 receptor (P2X7R)-mediated regulation of astrocytic engulfing activity. The exposure of cultured astrocytes to sub-lethal oxidative stress through their treatment with 400 μM HO increased intracellular labile zinc, of which the concentration reached a peak level of approximately 2 μM at 2 h after the treatment. In astrocytes under sub-lethal oxidative stress, the uptake of YO-PRO-1 and latex beads as markers for P2X7R channel/pore activity and astrocytic engulfing activity, respectively, was decreased, and these decreased activities were accompanied by decreased expression of P2X7R at the plasma membrane via intracellular labile zinc-mediated translocation of it. With the oxidative stress, the expression level of full length P2X7R relative to that of its splice variants in astrocytes was decreased, leading to a decrease of the relative expression of the trimer consisting of full length P2X7R. Collectively, sub-lethal oxidative stress induces an astrocytic modal shift from the normal resting engulfing mode to the activated astrogliosis mode via an intracellular labile zinc-mediated decrease of the functional expression of P2X7R.
神经递质和神经胶质递质(如 ATP 和锌)介导的神经元-胶质细胞通讯对于维持脑内环境稳态至关重要,其失调与病理条件下有关。据报道,在氧化应激负荷条件下,星形胶质细胞表现出细胞内和细胞外不稳定锌的增加,后者触发小胶质细胞 M1 激活,而前者的病理生理作用仍未揭示。在本研究中,我们研究了氧化应激诱导的细胞内不稳定锌增加是否参与 P2X7 受体(P2X7R)介导的星形胶质细胞吞噬活性的调节。通过用 400μM HO 处理培养的星形胶质细胞,使其暴露于亚致死氧化应激下,增加了细胞内不稳定锌的浓度,其中处理后约 2 小时达到约 2μM 的峰值水平。在亚致死氧化应激下的星形胶质细胞中,P2X7R 通道/孔活性和星形胶质细胞吞噬活性的标志物 YO-PRO-1 和乳胶珠的摄取减少,并且这些活性的减少伴随着通过细胞内不稳定锌介导的易位,细胞膜上的 P2X7R 表达减少。随着氧化应激的发生,星形胶质细胞中全长 P2X7R 相对于其剪接变体的表达水平降低,导致由全长 P2X7R 组成的三聚体的相对表达降低。总之,亚致死氧化应激通过细胞内不稳定锌介导的 P2X7R 功能表达减少,诱导星形胶质细胞从正常静息吞噬模式向激活的星形胶质细胞增生模式转变。