首页> 美国卫生研究院文献>The Journal of General Physiology >TRPM7 is a molecular substrate of ATP-evoked P2X7-like currents in tumor cells
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TRPM7 is a molecular substrate of ATP-evoked P2X7-like currents in tumor cells

机译:TRPM7是肿瘤细胞中ATP诱发的P2X7样电流的分子底物

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摘要

Within the ion channel–coupled purine receptor (P2X) family, P2X7 has gained particular interest because of its role in immune responses and in the growth control of several malignancies. Typical hallmarks of P2X7 are nonselective and noninactivating cation currents that are elicited by high concentrations (0.1–10 mM) of extracellular ATP. Here, we observe spurious ATP-induced currents in HEK293 cells that neither express P2X7 nor display ATP-induced Ca2+ influx or Yo-Pro-1 uptake. Although the biophysical properties of these ionic currents resemble those of P2X7 in terms of their reversal potential close to 0 mV, nonrectifying current-voltage relationship, current run-up during repeated ATP application, and augmentation in bath solutions containing low divalent cation (DIC) concentrations, they are poorly inhibited by established P2X7 antagonists. Because high ATP concentrations reduce the availability of DICs, these findings prompted us to ask whether other channel entities may become activated by our experimental regimen. Indeed, a bath solution with no added DICs yields similar currents and also a rapidly inactivating Na+-selective conductance. We provide evidence that TRPM7 and ASIC1a (acid-sensing ion channel type Ia)-like channels account for these noninactivating and phasic current components, respectively. Furthermore, we find ATP-induced currents in rat C6 glioma cells, which lack functional P2X receptors but express TRPM7. Thus, the observation of an atypical P2X7-like conductance may be caused by the activation of TRPM7 by ATP, which scavenges free DICs and thereby releases TRPM7 from permeation block. Because TRPM7 has a critical role in controlling the intracellular Mg2+ homeostasis and regulating tumor growth, these data imply that the proposed role of P2X7 in C6 glioma cell proliferation deserves reevaluation.
机译:在离子通道偶联的嘌呤受体(P2X)家族中,P2X7因其在免疫应答和多种恶性肿瘤生长控制中的作用而引起了人们的特别关注。 P2X7的典型特征是高浓度(0.1–10 mM)的细胞外ATP引起的非选择性和非灭活阳离子电流。在这里,我们观察到在既不表达P2X7也不显示ATP诱导的Ca 2 + 内流或Yo-Pro-1摄取的HEK293细胞中由ATP诱导的杂散电流。尽管这些离子电流的生物物理特性与P2X7相似,但其反向电势接近0 mV,未整流电流-电压关系,在重复施加ATP期间电流增加,并且在含低二价阳离子(DIC)的浴液中增加浓度下,它们对既定的P2X7拮抗剂的抑制作用较弱。由于高ATP浓度会降低DIC的可用性,因此这些发现促使我们问其他通道实体是否可能被我们的实验方案激活。实际上,不添加DIC的浴液会产生相似的电流,并且还会使Na + 选择性电导迅速失活。我们提供的证据表明,TRPM7和ASIC1a(酸敏感离子通道类型Ia)通道分别解释了这些非灭活和相电流分量。此外,我们在大鼠C6胶质瘤细胞中发现了ATP诱导的电流,该细胞缺乏功能性P2X受体但表达TRPM7。因此,观察到非典型的P2X7样电导可能是由ATP激活TRPM7引起的,ATP清除了游离DIC,从而从渗透阻滞中释放出TRPM7。由于TRPM7在控制细胞内Mg 2 + 稳态和调节肿瘤生长中起关键作用,因此这些数据表明,P2X7在C6胶质瘤细胞增殖中的作用值得重新评估。

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