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首页> 外文期刊>American Journal of Physiology >Cell swelling-induced ATP release and gadolinium-sensitive channels.
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Cell swelling-induced ATP release and gadolinium-sensitive channels.

机译:细胞膨胀诱导的ATP释放和g敏感通道。

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摘要

ATP release induced by hypotonic swelling is an ubiquitous phenomenon in eukaryotic cells, but its underlying mechanisms are poorly defined. A mechanosensitive (MS) ATP channel has been implicated because gadolinium (Gd(3+)), an inhibitor of stretch-activated channels, suppressed ATP efflux monitored by luciferase bioluminescence. We examined the effect of Gd(3+) on luciferase bioluminescence and on ATP efflux from hypotonically swollen cells. We found that luciferase was inhibited by < or =10 microM Gd(3+), and this may have contributed to the previously reported inhibition of ATP release. In ATP efflux experiments, luciferase inhibition could be prevented by chelating Gd(3+) with EGTA before luminometric ATP determinations. Using this approach, we found that 10-100 microM Gd(3+), i.e., concentrations typically used to block MS channels, actually stimulated hypotonically induced ATP release from fibroblasts. Inhibition of ATP release required at least 500, 200, or 100 microM Gd(3+) for fibroblasts, A549 cells, and 16HBE14o(-) cells, respectively. Such biphasic and cell-specific effects of Gd(3+) are most consistent with its action on membrane lipids and membrane-dependent processes such as exocytosis.
机译:低渗性肿胀诱导的ATP释放在真核细胞中是普遍存在的现象,但其潜在机制尚不清楚。牵涉到机械敏感(MS)ATP通道,因为拉伸激活通道的抑制剂g(Gd(3+))抑制了荧光素酶生物发光监测的ATP外排。我们检查了Gd(3+)对萤光素酶生物发光和低渗性肿胀细胞ATP外排的影响。我们发现萤光素酶被<或= 10 microM Gd(3+)抑制,这可能有助于先前报道的ATP释放抑制。在ATP外排实验中,可以通过在光度ATP测定之前将Gd(3+)与EGTA螯合来防止萤光素酶抑制。使用这种方法,我们发现10-100 microM Gd(3 +)(即通常用于阻断MS通道的浓度)实际上刺激了低渗诱导的从成纤维细胞释放的ATP。抑制ATP释放分别需要至少500、200或100 microM Gd(3+)用于成纤维细胞,A549细胞和16HBE140(-)细胞。 Gd(3+)的这种双相和细胞特异性作用与它对膜脂质和膜依赖性过程(如胞吐作用)的作用最一致。

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