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Sodium--potassium pump current in rabbit sino-atrial node cells.

机译:兔窦房结细胞中钠钾泵电流。

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摘要

1. The Na(+)-K+ pump current (Ip) was studied in sino-atrial (SA) node cells of rabbits using the whole-cell patch-clamp technique. 2. With 50 mM Na+ in the pipette solution ([Na+]pip), changing the external K+ concentration (-K+-o) from 0 to 5.4 mM caused the holding current to shift in an outward direction and reach a new steady state. The current-voltage relationships obtained by subtraction of current traces recorded at 0 mM Ko+ from those recorded at 5.4 mM Ko+ revealed time-independent and voltage-dependent characteristics. The external K(+)-induced current was completely blocked by external application of 10 microM ouabain, indicating the existence of Ip in SA node cells of rabbit heart. 3. Ip increased as [K+]o increased. With 30 mM Na+pip, Ip at 0 mV was activated by [K+]o with non-linear least-squares fit parameters for the Hill equation of K0.5 of 1.4 mM and a Hill coefficient (nH) of 1.2 (n = 7). 4. The cation dependence of the K+ site of the Na(+)-K+ pump was examined using various monovalent cations. The sequence was K+ > or = Rb+ > Cs+ > > > Li+. 5. Ip at 0 mV also increased as [Na+]pip was increased from 10 to 150 mM at 5.4 mM Ko+, with a K0.5 value of 14 mM and a nH of 1.3 (n = 54). 6. Ip at 0 mV was reduced by lowering the temperature from 37 to 25 degrees C with 30 mM Na+pip and 5.4 mM Ko+. The temperature coefficient (Q10) for Ip was 2.1 (n = 27). 7. With 10 mM Na+pip and 5.4 mM Ko+, the half-activation voltage of Ip was -52 +/- 16 mV and the current at this voltage was 22.5 +/- 3.5 pA (n = 10), indicating that Ip contributes significantly to the background outward current during the normal pacemaker potential of SA node cells.
机译:1.使用全细胞膜片钳技术在兔的窦房结(SA)节点细胞中研究了Na(+)-K +泵浦电流(Ip)。 2.移液器溶液中的Na +为50 mM([Na +] pip)时,将外部K +浓度(-K + -o)从0更改为5.4 mM,会导致保持电流向外移动并达到新的稳定状态。通过从记录在5.4 mM Ko +处的电流迹线减去记录在0 mM Ko +处的电流迹线所获得的电流-电压关系显示出与时间和电压相关的特性。外用K(+)诱导的电流被外用10 microM哇巴因完全阻断,表明兔心脏SA结细胞中存在Ip。 3. Ip随着[K +] o的增加而增加。对于30 mM Na + pip,[K +] o用非线性最小二乘拟合参数激活0 mV的Ip,K0.5的Hill方程为1.4 mM,Hill系数(nH)为1.2(n = 7)。 4.使用各种单价阳离子检查了Na(+)-K +泵的K +位点的阳离子依赖性。序列为K +>或= Rb +> Cs +>>> Li +。 5.当[Na +] pip在5.4 mM Ko +下从10 mM增加到150 mM时,0 mV处的Ip也增加,K0.5值为14 mM,nH为1.3(n = 54)。 6.通过使用30 mM Na + pip和5.4 mM Ko +将温度从37℃降低到0 mV,可以降低Ip。 Ip的温度系数(Q10)为2.1(n = 27)。 7.在10 mM Na + pip和5.4 mM Ko +的情况下,Ip的半激活电压为-52 +/- 16 mV,在该电压下的电流为22.5 +/- 3.5 pA(n = 10),表明Ip在SA节点细胞正常起搏器电位期间,对本底向外电流有显着贡献。

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