Abe T, Sato T, Kiyosue T, Saikawa T, Sakata T, Arita M
Department of Physiology, Oita Medical University, Japan.
J Mol Cell Cardiol. 1999 Mar;31(3):533-42. doi: 10.1006/jmcc.1998.0889.
The Na(+)-K+ pump is a consumer of intracellular ATP. We therefore examined whether blockade of the Na(+)-K+ pump by cardiac glycosides could inhibit ATP-sensitive K+ (KATP) channels and prolong the action potential duration (APD) of the guinea-pig ventricular muscles perfused with Tyrode's solution via the coronary artery and stimulated at 3 Hz. The metabolic inhibition (MI) achieved by application of 0.1 microM carbonyl cyanide p-(trifluoromethoxy) phenylhydrazone (a mitochondrial uncoupler) shortened the APD in a time-dependent manner. When dihydroouabain (DHO, 5 microM) was introduced 5 min but not 10 min after introduction of MI, the APD shortening was significantly attenuated. Application of glibenclamide (1 microM), a blocker of KATP channels, introduced both 5 and 10 min after MI also alleviated the APD shortening: DHO did not alleviate the APD shortening effect produced by cromakalim (5 microM), a KATP-channel opener. In separate experiments using whole-cell patch-clamp techniques, we found that this concentration of DHO (5 microM) depressed the Na(+)-K+ pump current of the guinea-pig ventricular myocytes from 210 to 100 pA (at 0 mV) or by 49.5%. We conclude that, during early phase (approximately 5 min) of MI, the APD shortening mostly results from the activation of KATP channels, and that even a approximately 50% inhibition of the Na(+)-K+ pump by DHO leads to the blockade of KATP channels and eventual lengthening of the APD.
钠钾泵是细胞内ATP的消耗者。因此,我们研究了强心苷对钠钾泵的阻断是否会抑制ATP敏感性钾(KATP)通道,并延长经冠状动脉灌注Tyrode溶液并以3Hz频率刺激的豚鼠心室肌动作电位时程(APD)。应用0.1微摩尔羰基氰对(三氟甲氧基)苯腙(一种线粒体解偶联剂)实现的代谢抑制(MI)以时间依赖性方式缩短了APD。当在引入MI后5分钟而非10分钟引入二氢哇巴因(DHO,5微摩尔)时,APD缩短显著减弱。在MI后5分钟和10分钟引入的KATP通道阻滞剂格列本脲(1微摩尔)也减轻了APD缩短:DHO并未减轻KATP通道开放剂克罗卡林(5微摩尔)产生的APD缩短效应。在使用全细胞膜片钳技术的单独实验中,我们发现该浓度的DHO(5微摩尔)使豚鼠心室肌细胞的钠钾泵电流从210皮安(在0毫伏时)降至100皮安,降幅为49.5%。我们得出结论,在MI的早期阶段(约5分钟),APD缩短主要是由于KATP通道的激活,并且即使DHO对钠钾泵有大约50%的抑制也会导致KATP通道的阻断并最终延长APD。