首页> 美国卫生研究院文献>The Journal of Physiology >The antagonistic effect of K+o and dihydro-ouabain on the Na+ pump current of single rat and guinea-pig cardiac cells.
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The antagonistic effect of K+o and dihydro-ouabain on the Na+ pump current of single rat and guinea-pig cardiac cells.

机译:K + o和二氢哇巴因对单只大鼠和豚鼠心脏细胞Na +泵浦电流的拮抗作用。

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摘要

1. The antagonistic effect of extracellular potassium ions (K+o) and dihydro-ouabain (DHO) on the Na(+)-K+ pump current (Ip) was studied in isolated ventricular cells. 2. The myocytes were isolated from rats and guinea-pigs, two species with different sensitivity towards cardiac glycosides. Ip measurements were performed at 32-34 degrees C by means of whole-cell recording. The membrane potential was held at -20 mV throughout. 3. The DHO concentration ([DHO]) required for half-maximal Ip inhibition (apparent KD value, KD') amounted to 2.4 x 10(-3) and 1.4 x 10(-5) M for rat and guinea-pig myocytes, respectively, at 5.4 mM K+o. 4. The data suggest one-to-one binding of DHO to the Na(+)-K+ pump and a smaller association rate constant, as well as a larger dissociation rate constant, for binding of DHO in the rat cells. 5. Ip activation by K+o was nearly identical in myocytes of both species and was measured to be half-maximal at approximately 1 mM K+o. Half-maximal Ip activation by K+o remained essentially unchanged, but Ip decreased in media containing [DHO] near the respective KD' at 5.4 mM K+o. 6. The concentration-response curve of Ip inhibition by DHO was shifted to higher [DHO] at higher [K+]o. KD' increased correspondingly. The slope of the curve was unaffected. 7. Ip and KD' displayed a similar dependence on [K+]o. 8. KD' was larger in Na(+)-free than in Na(+)-containing media under conditions in which the activation of Ip by K+o was nearly the same. 9. It is concluded that the antagonism between K+o and DHO, with regard to the activation of Ip, is non-competitive. A possible mechanism of the antagonism is discussed. The mechanism implies binding of K+o and DHO to different conformational states of the Na(+)-K+ pump which are temporarily exposed to the external face of the sarcolemma in the pump cycle. The DHO-bound states do not participate in the generation of Ip.
机译:1.在分离的心室细胞中研究了细胞外钾离子(K + o)和二氢-哇巴因(DHO)对Na(+)-K +泵浦电流(Ip)的拮抗作用。 2.从大鼠和豚鼠中分离出心肌细胞,这两种动物对强心苷的敏感性不同。通过全细胞记录在32-34℃下进行Ip测量。整个膜电位保持在-20mV。 3.对于大鼠和豚鼠心肌细胞,Ip抑制最大一半(表观KD值,KD')所需的DHO浓度([DHO])分别为2.4 x 10(-3)和1.4 x 10(-5)M分别为5.4 mM K + o。 4.数据表明DHO与Na(+)-K +泵的一对一结合和较小的缔合速率常数,以及较大的解离速率常数,用于DHO在大鼠细胞中的结合。 5.在两个物种的肌细胞中,由K + o激活的Ip几乎相同,在大约1 mM K + o处被测为一半最大。 K + o激活的半数最大Ip值基本保持不变,但在5.4 mM K + o处靠近相应KD'的[DHO]培养基中,Ip降低。 6.在较高的[K +] o下,DHO对Ip抑制的浓度-响应曲线向较高的[DHO]移动。 KD'相应增加。曲线的斜率不受影响。 7. Ip和KD'对[K +] o表现出相似的依赖性。 8.在K + o激活Ip几乎相同的条件下,无Na(+)的培养基中的KD'大于含Na(+)的培养基。 9.结论是,关于Ip活化,K + o与DHO之间的对抗是非竞争性的。讨论了拮抗作用的可能机制。该机制暗示K + o和DHO与Na(+)-K +泵的不同构象状态结合,而Na(+)-K +泵在泵周期中暂时暴露于肌膜的外表面。 DHO绑定状态不参与Ip的生成。

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