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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Cardiac Na~+ pump current-voltage relationships at various transmembrane gradients of the pumped cations
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Cardiac Na~+ pump current-voltage relationships at various transmembrane gradients of the pumped cations

机译:Na +泵电流在阳离子跨膜梯度下的电流-电压关系

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摘要

Thermodynamic considerations predict changes of the Na+ pump current (Ip)-voltage (V) relationship of animal cells upon variations of the electrochemical gradients against which cations must be pumped. Experimental data in support of the predictions are sparse. Therefore, the effect on the Ip-V relationship of various electrochemical gradients for pumped Na+ and Cs+ was studied at constant ΔGATP ( ≈ ? 39 kJ/mol) in cardioballs from sheep Purkinje fibres. Control of the subsarcolemmal ionic concentrations during whole-cell recording was ensured by activation of Ip below its half maximal activity or by measuring the initial Ip following reactivation of the Na+/K+ pump. With gradients close to physiological conditions Ip was outward over the entire voltage range and the Ip-V relationship showed a maximum near zero potential. Steepening the ionic gradients diminished the Ip amplitude and outward pump current was no longer detectable between ?65 mV and ?110 mV. Flattened ionic gradients increased the Ip amplitude and shifted apparently the reversal potential Erev to more negative values. These changes are in line with theoretical considerations. The measured Ip-V relationships were fitted by curves computed on the basis of a simplified Post-Albers scheme of Na+/Cs+ pumping. The increased Ip amplitude at flat ionic gradients was due to a decrease of [Cs+]o for half maximal Ip activation. The maximal Ip amplitude remained unaffected.
机译:热力学考虑因素预示着必须随阳离子泵送的电化学梯度的变化,动物细胞的Na +泵浦电流(Ip)-电压(V)关系的变化。支持预测的实验数据很少。因此,在绵羊浦肯野纤维的心球中,在恒定ΔGATP(≈?39 kJ / mol)的条件下,研究了泵送的Na +和Cs +对各种电化学梯度的Ip-V关系的影响。通过激活低于其最大活性一半的Ip或通过在Na + / K +泵重新激活后测量初始Ip来确保在全细胞记录过程中控制肌膜下离子浓度。在接近生理条件的梯度下,Ip在整个电压范围内向外,并且Ip-V关系显示最大的零电位。使离子梯度变陡,使Ip幅度减小,并且在≤65mV和≤110mV之间不再检测到向外的泵浦电流。平坦的离子梯度增加了Ip振幅,并且显然将反转电位Erev移到了更多的负值。这些变化符合理论上的考虑。测得的Ip-V关系通过基于Na + / Cs +抽运的简化Post-Albers方案计算的曲线拟合。在平坦的离子梯度下增加的Ip幅度是由于最大Ip激活一半时[Cs +] o降低。 Ip的最大幅度保持不变。

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