Del Toro Raquel, Levitsky Konstantin L, López-Barneo José, Chiara María D
Laboratorio de Investigaciones Biomédicas, Departamento de Fisiología and Hospital Universitario Virgen del Rocío, Universidad de Sevilla, E-41013 Seville, Spain.
J Biol Chem. 2003 Jun 20;278(25):22316-24. doi: 10.1074/jbc.M212576200. Epub 2003 Apr 4.
Cellular responses to hypoxia can be acute or chronic. Acute responses mainly depend on oxygen-sensitive ion channels, whereas chronic responses rely on the hypoxia-inducible transcription factors (HIFs), which up-regulate the expression of enzymes, transporters, and growth factors. It is unknown whether the expression of genes coding for ion channels is also influenced by hypoxia. We report here that the alpha1H gene of T-type voltage-gated calcium channels is highly induced by lowering oxygen tension in PC12 cells. Accumulation of alpha1H mRNA in response to hypoxia is time- and dose-dependent and paralleled by an increase in the density of T-type calcium channel current recorded in patch clamped cells. HIF appears to be involved in the response to hypoxia, since cobalt chloride, desferrioxamine, and dimethyloxalylglycine, compounds that mimic HIF-regulated gene expression, replicate the hypoxic effect. Moreover, functional inhibition of HIF-2alpha protein accumulation using antisense HIF-2alpha oligonucleotides reverses the effect of hypoxia on T-type Ca2+ channel expression. Importantly, regulation by oxygen tension is specific for T-type calcium channels, since it is not observed with the L-, N-, and P/Q-channel types. These findings show for the first time that hypoxia induces an ion channel gene via a HIF-dependent mechanism and define a new role for the T-type calcium channels as regulators of cellular excitability and calcium influx under chronic hypoxia.
细胞对缺氧的反应可分为急性或慢性。急性反应主要依赖于氧敏感离子通道,而慢性反应则依赖于缺氧诱导转录因子(HIFs),后者可上调酶、转运蛋白和生长因子的表达。编码离子通道的基因表达是否也受缺氧影响尚不清楚。我们在此报告,T型电压门控钙通道的α1H基因在PC12细胞中可因氧张力降低而被高度诱导。缺氧时α1H mRNA的积累呈时间和剂量依赖性,同时膜片钳记录的T型钙通道电流密度也增加。HIF似乎参与了对缺氧的反应,因为氯化钴、去铁胺和二甲基乙二酰甘氨酸这些模拟HIF调节基因表达的化合物可复制缺氧效应。此外,使用反义HIF-2α寡核苷酸对HIF-2α蛋白积累进行功能抑制可逆转缺氧对T型Ca2+通道表达的影响。重要的是,氧张力调节对T型钙通道具有特异性,因为在L型、N型和P/Q型通道中未观察到这种现象。这些发现首次表明缺氧通过HIF依赖机制诱导离子通道基因表达,并确定了T型钙通道在慢性缺氧下作为细胞兴奋性和钙内流调节因子的新作用。