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培养的大鼠心脏细胞中的阳离子交换和糖苷结合

Cation exchange and glycoside binding in cultured rat heart cells.

作者信息

McCall D

出版信息

Am J Physiol. 1979 Jan;236(1):C87-95. doi: 10.1152/ajpcell.1979.236.1.C87.

Abstract

The Na/K-exchange characteristics, ouabain-binding kinetics, and Na pump turnover rates of synchronously contracting monolayers of neonatal rat myocardial cells were studied. The cells exchange Na rapidly (T1/2 = 35 s) with a mean Na flux of approximately 25 (pmol/cm2)/s. The half time (T1/2) of K exchange is much longer (12 min); the mean K flux is 13 (pmol/cm2)/s. Active Na/K transport, as measured by K influx, is relatively ouabain sensitive, and 10(-6) M ouabain produces half-maximal inhibition. Ouabain (10(-2)M) inhibits 60% of the Na efflux and 75% of the K influx. The cells bind [3H]ouabain rapidly (T1/2 = 8 min), but release it very slowly (T1/2 = 11 h), and both the amount bound and the rate of binding were inversely proportional to extracellular K. Specific [3H]ouabain binding demonstrates saturation reaching a maximum of 1.6 x 10(6) molecules per cell at 2 x 10(-7) M [3H]ouabain. From cell surface area and ouabain-sensitive flux measurements, the Na pump density was calculated at 720/micrometer2 with an individual pump turnover rate of 50/s. Thus the studies indicate that despite their neonatal origin, the behavior of the Na pump in these cells is very similar to that in other mammalian tissues.

摘要

对新生大鼠心肌细胞同步收缩单层的钠/钾交换特性、哇巴因结合动力学和钠泵周转率进行了研究。细胞快速交换钠(半衰期(T_{1/2}=35)秒),平均钠通量约为(25)(皮摩尔/平方厘米)/秒。钾交换的半衰期((T_{1/2}))长得多((12)分钟);平均钾通量为(13)(皮摩尔/平方厘米)/秒。通过钾内流测量的钠/钾主动转运对哇巴因相对敏感,(10^{-6})摩尔/升哇巴因产生半数最大抑制作用。哇巴因((10^{-2})摩尔/升)抑制(60%)的钠外流和(75%)的钾内流。细胞快速结合([^{3}H])哇巴因((T_{1/2}=8)分钟),但释放非常缓慢((T_{1/2}=11)小时),结合量和结合速率均与细胞外钾呈反比。特异性([^{3}H])哇巴因结合显示在(2\times10^{-7})摩尔/升([^{3}H])哇巴因时达到饱和,每个细胞最多结合(1.6\times10^{6})个分子。根据细胞表面积和哇巴因敏感通量测量值,计算出钠泵密度为(720/)微米²,单个泵的周转率为(50/)秒。因此,这些研究表明,尽管这些细胞来源于新生动物,但其中钠泵的行为与其他哺乳动物组织中的非常相似。

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