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首页> 外文期刊>British Journal of Pharmacology >Investigation of the role of TASK-2 channels in rat pulmonary arteries; pharmacological and functional studies following RNA interference procedures
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Investigation of the role of TASK-2 channels in rat pulmonary arteries; pharmacological and functional studies following RNA interference procedures

机译:研究TASK-2通道在大鼠肺动脉中的作用; RNA干扰程序后的药理和功能研究

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1 In the present study, we investigated the ability of RNA interference technology to suppress TASK-2 potassium channel expression in human embryonic kidney (HEK293) cells stably transfected with TASK-2 cDNA and in rat isolated intact pulmonary arteries. 2 Lipofectamine-induced transfection of a specific siRNA sequence targeted against TASK-2 resulted in a dose- and time-dependent decrease in TASK-2 channel protein expression. In siRNA-transfected cells the TASK-2 peak currents were significantly smaller than in control cells at every investigated pH, while the pH sensitivity was not altered. Using scrambled siRNA as a negative control, there were no significant changes in TASK-2 protein expression or current compared to mock-transfected cells. 3 In TASK-2 siRNA-transfected small pulmonary arteries, but not in scrambled siRNA-treated vessels, myocyte resting membrane potential at pH 7.4 was significantly less negative and the hyperpolarisations in response to increasing pH from 6.4 to 8.4 were significantly smaller compared with control. 4 The application of levcromakalim (10 μM), NS1619 (33 μM) and a potassium channel inhibitor cocktail (5 mM 4-aminopyridine, 10 mM tetraethylammonium chloride, 30 μM Ba~(2+) and 10 μM glibenclamide) had similar effects in control and in siRNA-transfected vessels. The TASK-1 (anandamide-sensitive) contribution to resting membrane potential was comparable in each group. Clofilium (100 μM) generated significantly smaller responses in transfected artery segments. 5 These results suggest that RNA interference techniques are effective at inhibiting TASK-2 channel expression in cultured cells and in intact vessels and that TASK-2 channels have a functional role in setting the membrane potential of pulmonary artery myocytes.
机译:1在本研究中,我们研究了RNA干扰技术抑制用TASK-2 cDNA稳定转染的人胚胎肾脏(HEK293)细胞和大鼠分离的完整肺动脉中TASK-2钾通道表达的能力。 2 Lipofectamine诱导的针对TASK-2的特定siRNA序列的转染导致TASK-2通道蛋白表达的剂量和时间依赖性降低。在siRNA转染的细胞中,在每个研究的pH值下,TASK-2峰值电流均显着小于对照细胞,而pH值敏感性未改变。与模拟转染的细胞相比,使用加扰的siRNA作为阴性对照,TASK-2蛋白表达或电流没有明显变化。 3在经TASK-2 siRNA转染的小肺动脉中,但在经siRNA扰乱的血管中却没有,与对照组相比,pH 7.4时心肌细胞静息膜电位的负值显着降低,并且响应于pH从6.4升高至8.4时的超极化现象明显减小。 。 4左旋克马卡林(10μM),NS1619(33μM)和钾通道抑制剂混合物(5 mM 4-氨基吡啶,10 mM四乙基氯化铵,30μMBa〜(2+)和10μM格列本脲)的应用在对照和siRNA转染的血管中。在每组中,TASK-1(对氨基苯甲酰胺敏感)对静息膜电位的贡献相当。 clofilium(100μM)在转染的动脉节段中产生明显较小的反应。 5这些结果表明,RNA干扰技术可有效抑制培养细胞和完整血管中TASK-2通道的表达,并且TASK-2通道在设定肺动脉肌细胞膜电位方面具有功能性作用。

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