Faculty of Life Sciences, University of Manchester, Manchester, UK.
J Physiol. 2011 Jul 1;589(Pt 13):3231-46. doi: 10.1113/jphysiol.2011.206748. Epub 2011 Apr 11.
The acid-sensitive, two-pore domain K+ channel, TASK-1, contributes to the background K+ conductance and membrane potential (Em) of rat and human pulmonary artery smooth muscle cells (PASMCs), but its role in regulating tone remains elusive. This study aimed to clarify the role of TASK-1 by determining the functional properties of pulmonary artery (PA) from mice in which the TASK-1 gene was deleted (TASK-1/3 KO), in comparison with wild-type (WT) C57BL/6 controls. Small vessel wire myography was used to measure isometric tension developed by intact PA. Em and currents were recorded from freshly isolated PASMCs using the perforated patch-clamp technique. Reverse transcription-polymerase chain reaction (RT-PCR) was used to estimate K+ channel expression. We could find no difference between PA from WT and TASK-1/3 KO mice. They showed similar constrictor responses to a range of agonists and K+ concentrations, the K+ channel blockers 4-aminopyridine, tetraethylammonium ions and XE991. Treprostinil, proposed to dilate by activating TASK-1, was just as effective in TASK-1/3 KO arteries. Blocking Ca2+ influx with nifedipine (1 μM) or levcromakalim (10 μM) had no effect on resting tone in either strain. The resting Em of PASMCs and its responses to K+ channel blockers were unchanged in TASK-1/3 KO mice as were voltage-activated K+ currents, including the non-inactivating K+ current (IKN) measured at 0 mV. The Em was, however, depolarised in comparison with other species.Mouse IKN was much smaller than in rat and showed no sensitivity to pH. The results imply that TASK-1 does not form a functional channel in mouse PASMCs.
酸敏感的双孔钾通道 TASK-1 有助于大鼠和人肺动脉平滑肌细胞(PASMC)的背景钾电导和膜电位(Em),但其调节张力的作用仍不清楚。本研究旨在通过确定 TASK-1 基因缺失(TASK-1/3 KO)的小鼠肺动脉(PA)的功能特性,与野生型(WT)C57BL/6 对照进行比较,来阐明 TASK-1 的作用。使用完整血管wire 肌动描记法测量完整 PA 产生的等长张力。使用穿孔膜片钳技术从新鲜分离的 PASMC 中记录 Em 和电流。逆转录聚合酶链反应(RT-PCR)用于估计 K+通道表达。我们在 WT 和 TASK-1/3 KO 小鼠的 PA 之间没有发现差异。它们对一系列激动剂和 K+浓度表现出相似的收缩反应,K+通道阻滞剂 4-氨基吡啶、四乙铵离子和 XE991。拟通过激活 TASK-1 扩张的前列环素在 TASK-1/3 KO 动脉中同样有效。用硝苯地平(1 μM)或 levcromakalim(10 μM)阻断 Ca2+内流对两种菌株的静息张力均无影响。TASK-1/3 KO 小鼠 PASMC 的静息 Em 及其对 K+通道阻滞剂的反应与 WT 小鼠相同,电压激活的 K+电流也没有变化,包括在 0 mV 时测量的非失活 K+电流(IKN)。然而,Em 与其他物种相比发生去极化。小鼠 IKN 比大鼠小得多,对 pH 没有敏感性。结果表明,TASK-1 不能在小鼠 PASMC 中形成功能性通道。