首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Enhancement of TWIK-related Acid-sensitive Potassium Channel 3 (TASK3) Two-pore Domain Potassium Channel Activity by Tumor Necrosis Factor α
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Enhancement of TWIK-related Acid-sensitive Potassium Channel 3 (TASK3) Two-pore Domain Potassium Channel Activity by Tumor Necrosis Factor α

机译:肿瘤坏死因子α增强TWIK相关酸敏感钾通道3(TASK3)两孔域钾通道活性

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摘要

TASK3 two-pore domain potassium (K2P) channels are responsible for native leak K channels in many cell types which regulate cell resting membrane potential and excitability. In addition, TASK3 channels contribute to the regulation of cellular potassium homeostasis. Because TASK3 channels are important for cell viability, having putative roles in both neuronal apoptosis and oncogenesis, we sought to determine their behavior under inflammatory conditions by investigating the effect of TNFα on TASK3 channel current. TASK3 channels were expressed in tsA-201 cells, and the current through them was measured using whole cell voltage clamp recordings. We show that THP-1 human myeloid leukemia monocytes, co-cultured with hTASK3-transfected tsA-201 cells, can be activated by the specific Toll-like receptor 7/8 activator, R848, to release TNFα that subsequently enhances hTASK3 current. Both hTASK3 and mTASK3 channel activity is increased by incubation with recombinant TNFα (10 ng/ml for 2–15 h), but other K2P channels (hTASK1, hTASK2, hTREK1, and hTRESK) are unaffected. This enhancement by TNFα is not due to alterations in levels of channel expression at the membrane but rather to an alteration in channel gating. The enhancement by TNFα can be blocked by extracellular acidification but persists for mutated TASK3 (H98A) channels that are no longer acid-sensitive even in an acidic extracellular environment. TNFα action on TASK3 channels is mediated through the intracellular C terminus of the channel. Furthermore, it occurs through the ASK1 pathway and is JNK- and p38-dependent. In combination, TNFα activation and TASK3 channel activity can promote cellular apoptosis.
机译:TASK3两孔结构域钾(K2P)通道负责调节许多类型的细胞中的天然泄漏K通道,这些通道调节细胞静息膜电位和兴奋性。此外,TASK3通道有助于调节细胞内钾稳态。由于TASK3通道对于细胞生存力很重要,在神经元凋亡和肿瘤发生中均具有假定作用,因此我们试图通过研究TNFα对TASK3通道电流的影响来确定其在炎症条件下的行为。 TASK3通道在tsA-201细胞中表达,并使用全细胞电压钳记录测量通过它们的电流。我们显示,与hTASK3转染的tsA-201细胞共培养的THP-1人类骨髓性白血病单核细胞可以被特定的Toll样受体7/8激活剂R848激活,以释放TNFα,随后增强hTASK3电流。通过与重组TNFα(10 ng / ml,持续2-15小时)孵育,hTASK3和mTASK3通道活性均增加,但其他K2P通道(hTASK1,hTASK2,hTREK1和hTRESK)不受影响。 TNFα的这种增强不是由于膜上通道表达水平的改变,而是由于通道门控的改变。 TNFα的增强作用可被细胞外酸化所阻止,但对于突变的TASK3(H98A)通道仍然有效,即使在酸性细胞外环境中,该通道也不再对酸敏感。 TNFα对TASK3通道的作用是通过该通道的细胞内C端介导的。此外,它通过ASK1途径发生,并且是JNK和p38依赖性的。结合在一起,TNFα激活和TASK3通道活性可以促进细胞凋亡。

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