Su Z, Zou A, Nonaka A, Zubair I, Sanguinetti M C, Barry W H
Division of Cardiology, University of Utah Health Sciences Center, Salt Lake City, Utah 84132, USA.
Am J Physiol. 1998 Nov;275(5):H1808-17. doi: 10.1152/ajpheart.1998.275.5.H1808.
We examined the dependence of peak Na+ pump and Na+/Ca2+ exchanger currents on prior Na+ pump inhibition induced by exposure to zero extracellular K+ in voltage-clamped adult murine ventricular myocytes. Abrupt activation of the Na+ pump by reexposure of myocytes to extracellular K+ with a rapid solution switcher resulted in the development of a transient peak current at approximately 500 ms, followed by a decline over 1-2 min to a steady-state level. The magnitudes of both the peak Na+ pump current (Ip) and the peak outward Na+/Ca2+ exchange current, activated by rapidly reducing extracellular Na+ to zero with the solution switcher, were dependent on previous Na+ pump activity. [Na+] gradients (Na+-binding benzofuran isophthalate fluorescence) between the patch pipette and the bulk cytosol were relatively small and could not account for the large differences between peak and steady-state Ip and reverse Na+/Ca2+ exchanger currents. Our results are consistent with the presence of a subsarcolemmal Na+ concentration gradient, which is similar for the Na+ pump and the Na+/Ca2+ exchanger. These findings also support the hypothesis that the Na+ pump and the Na+/Ca2+ exchanger are colocalized in the sarcolemma.
我们研究了在电压钳制的成年小鼠心室肌细胞中,钠泵峰值电流和钠钙交换电流对通过暴露于零细胞外钾诱导的先前钠泵抑制的依赖性。通过快速溶液切换器使心肌细胞重新暴露于细胞外钾,从而突然激活钠泵,导致在大约500毫秒时出现一个瞬态峰值电流,随后在1-2分钟内下降至稳态水平。通过溶液切换器将细胞外钠迅速降至零激活的钠泵峰值电流(Ip)和向外的钠钙交换峰值电流的大小均取决于先前的钠泵活性。膜片吸管与胞浆之间的[Na⁺]梯度(钠结合苯并呋喃间苯二甲酸荧光)相对较小,无法解释峰值与稳态Ip以及反向钠钙交换电流之间的巨大差异。我们的结果与肌膜下存在钠浓度梯度一致,钠泵和钠钙交换器的该梯度相似。这些发现也支持钠泵和钠钙交换器共定位在肌膜中的假说。