Braet Katleen, Aspeslagh Sandrine, Vandamme Wouter, Willecke Klaus, Martin Patricia E M, Evans W Howard, Leybaert Luc
Department of Physiology and Pathophysiology, Ghent University, De Pintelaan, Ghent, Belgium.
J Cell Physiol. 2003 Nov;197(2):205-13. doi: 10.1002/jcp.10365.
Recently, ATP has gained much interest as an extracellular messenger involved in the communication of calcium signals between cells. The mechanism of ATP release is, however, still a matter of debate. In the present study we investigated the possible contribution of connexin hemichannels or ion channels in the release of ATP in GP8, a rat brain endothelial cell line. Release of ATP was triggered by photoactivation of InsP(3) or by reducing the extracellular calcium concentration. Both trigger protocols induced ATP release significantly above baseline. InsP(3)-triggered ATP release was completely blocked by alpha-glycyrrhetinic acid (alpha-GA), the connexin mimetic peptides gap 26 and 27, and the trivalent ions gadolinium and lanthanum. ATP release triggered by zero calcium was, in addition to these substances, also blocked by flufenamic acid (FFA), niflumic acid, and NPPB. Gap 27 selectively blocked zero calcium-triggered ATP release in connexin-43 transfected HeLa cells, while having no effect in wild-type and connexin-32 transfected cells. Of all the agents used, only alpha-GA, FFA and NPPB significantly reduced gap junctional coupling. In conclusion, InsP(3) and zero calcium-triggered ATP release show major similarities but also some differences in their sensitivity to the agents applied. It is suggested that both stimuli trigger ATP release through the same mechanism, which is connexin-dependent, permeable in both directions, potently blocked by connexin mimetic peptides, and consistent with the opening of connexin hemichannels.
最近,三磷酸腺苷(ATP)作为一种参与细胞间钙信号传导的细胞外信使引起了广泛关注。然而,ATP的释放机制仍是一个有争议的问题。在本研究中,我们调查了连接蛋白半通道或离子通道在大鼠脑内皮细胞系GP8中ATP释放过程中的可能作用。通过光激活肌醇三磷酸(InsP(3))或降低细胞外钙浓度来触发ATP的释放。两种触发方案均诱导ATP释放显著高于基线水平。InsP(3)触发的ATP释放被α-甘草次酸(α-GA)、连接蛋白模拟肽gap 26和27以及三价离子钆和镧完全阻断。除了这些物质外,零钙触发的ATP释放还被氟芬那酸(FFA)、尼氟酸和5-硝基-2-(3-苯丙胺)苯甲酸(NPPB)阻断。Gap 27选择性地阻断了连接蛋白43转染的HeLa细胞中零钙触发的ATP释放,而对野生型和连接蛋白32转染的细胞没有影响。在所有使用的试剂中,只有α-GA、FFA和NPPB显著降低了间隙连接耦合。总之,InsP(3)和零钙触发的ATP释放显示出主要的相似性,但在对所应用试剂的敏感性方面也存在一些差异。研究表明,两种刺激均通过相同的机制触发ATP释放,该机制依赖于连接蛋白,双向通透,能被连接蛋白模拟肽有效阻断,并且与连接蛋白半通道的开放一致。