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Comparison of Na+/K(+)-ATPase pump currents activated by ATP concentration or voltage jumps.

机译:由ATP浓度或电压跳变激活的Na + / K(+)-ATPase泵电流的比较。

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摘要

Using the giant patch technique, we combined two fast relaxation methods on excised patches from guinea pig cardiomyocytes to compare the rate constants of the involved reaction steps. Experiments were done in the absence of intra- or extracellular K+. Fast ATP concentration jumps were generated by photolysis of caged ATP at pH 6.3 with laser flash irradiation at a wavelength of 308 nm and 10 ns duration, as described previously. Transient outward currents with a fast rising phase, followed by a slower decay and a small stationary current, were obtained. Voltage pulses were applied to the same patch in the presence or absence of intracellular ATP. Subtraction of the voltage jump-induced currents in the absence of ATP from those taken in the presence of ATP yielded monoexponential transient current signals, which were dependent on external Na+ but did not differ between intracellular pH (pHi) values 6.3 or 7.4. Rate constants showed a characteristic voltage dependence, i.e., saturating at positive potentials (approximately 200 s-1, 24 degrees C) and exponentially rising with increasing negative potentials. Rate constants of the fast component from transient currents obtained after an ATP concentration jump agree well with rate constants from currents obtained after a voltage jump to zero or positive potentials (pHi 6.3), and the two exhibit the same activation energy of approximately 80 kJ.mol-1. For a given membrane patch, the amount of charge that is moved across the plasma membrane is roughly the same for each of the two relaxation techniques.
机译:使用巨型贴片技术,我们结合了从豚鼠心肌细胞中切除的贴片的两种快速松弛方法,以比较所涉及反应步骤的速率常数。实验是在不存在细胞内或细胞外K +的情况下进行的。如前所述,通过在308 nm波长和10 ns持续时间的激光闪光照射下,将pH 6.3的笼中ATP光解,可产生快速的ATP浓度跳跃。获得了具有快速上升相位的瞬态向外电流,随后具有较慢的衰减和较小的固定电流。在存在或不存在细胞内ATP的情况下,将电压脉冲施加到同一贴片上。从没有ATP的情况下减去在没有ATP的情况下减去电压跳变引起的电流会产生单指数瞬时电流信号,该信号取决于外部Na +,但在细胞内pH(pHi)值6.3或7.4之间没有差异。速率常数显示出特征性的电压依赖性,即在正电势(约200 s-1,24摄氏度)下饱和,并随着负电势的增加呈指数增长。 ATP浓度跃变后从瞬态电流获得的快速成分的速率常数与电压跃迁至零或正电势(pHi 6.3)后获得的电流的速率常数非常吻合,二者具有相同的约80 kJ活化能。 mol-1。对于给定的膜片,两种弛豫技术中的每一种在整个质膜上移动的电荷量大致相同。

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