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心肌中钠钾泵的模型预测出了错误的细胞内钠离子活性。

Models of the Na-K pump in cardiac muscle predict the wrong intracellular Na+ activity.

作者信息

Cohen I S, Kline R P, Pennefather P, Mulrine N K

出版信息

Proc R Soc Lond B Biol Sci. 1987 Aug 21;231(1264):371-82. doi: 10.1098/rspb.1987.0050.

Abstract

The Na-K pump in cardiac Purkinje strands has been carefully studied with voltage clamp and Na+-selective microelectrodes. In three of these studies both the rate of change of intracellular Na+ activity, a(Nai), after pump blockade, and the time constant of reduction of a(Nai) after an Na+ load were measured. These two parameters can be employed with a formalism relating pump activity to a(Nai) in order to predict the a(Nai) in the steady state. Several formalisms were tested: (a) a first-order dependence on a(Nai); (b) a model based on the assumption of a single, saturable, Na+-binding site that must be occupied for transport to occur; (c) a model based on n equivalent, saturable, Na+ binding sites per pump molecule all of which must be occupied for transport to occur. The first two models predicted an a(Nai) that is far below the value of about 6 mM that is experimentally obtained. The third model would work for n greater than or equal to 4. These results suggest that either the cardiac Na-K pump is not well described by available Na-K pump models for n less than 4 or that the measured Na+ influx rate, extrusion rate or a(Nai) are in error.

摘要

心脏浦肯野纤维束中的钠钾泵已通过电压钳和钠选择性微电极进行了仔细研究。在其中三项研究中,测量了泵阻断后细胞内钠活性(a(Nai))的变化率以及钠负荷后a(Nai)降低的时间常数。这两个参数可与一种将泵活性与a(Nai)相关联的形式体系一起使用,以预测稳态下的a(Nai)。测试了几种形式体系:(a) 对a(Nai)的一级依赖性;(b) 基于单个可饱和钠结合位点的模型,运输发生时该位点必须被占据;(c) 基于每个泵分子有n个等效可饱和钠结合位点的模型,运输发生时所有这些位点都必须被占据。前两个模型预测的a(Nai)远低于实验获得的约6 mM的值。第三个模型在n大于或等于4时有效。这些结果表明,对于n小于4的情况,现有的钠钾泵模型无法很好地描述心脏钠钾泵,或者测量的钠流入速率、排出速率或a(Nai)存在误差。

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