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乌龟结肠顶端膜的阳离子选择性:锂存在时钠的进入

Cation selectivity of the apical membrane of the turtle colon: sodium entry in the presence of lithium.

作者信息

Thompson S M, Dawson D C

出版信息

J Gen Physiol. 1978 Sep;72(3):269-82. doi: 10.1085/jgp.72.3.269.

Abstract

Exposure of the apical surface of the isolated turtle colon to Li produced a marked transient in short-circuit current (ISC) and total tissue conductance (GT) which was abolished by amiloride but was unaffected by ouabain or by removing Na or Cl from the mucosal bathing solution. Despite marked changes in Isc, Na uptake across the apical membrane was a linear function of time during exposure to Li-containing solutions, and except at very high Li concentrations, the initial rate of Na uptake, JiNa, was identical to its pre-Li value. In the presence of Li, however, JiNa was significantly less than the total Isc. The apparent "transference number" for Na in the apical membranes was a function of the Li:Na concentration ratio in the mucosal bathing solution. These results suggest that Li can carry substantial amounts of current through amiloride-sensitive channels in the apical membrane of the colon without having any effect on the rate coefficient for Na entry. This behavior is not consistent with "competition" of Na and Li for a membrane "carrier" but rather suggests that the Na entry mechanism may be a population of pores or channels through which Na and Li may pass with negligible interaction.

摘要

将分离的龟结肠顶端表面暴露于锂会使短路电流(ISC)和总组织电导(GT)产生明显的瞬变,这种瞬变可被氨氯吡脒消除,但不受哇巴因影响,也不受从黏膜浴液中去除钠或氯的影响。尽管ISC有显著变化,但在暴露于含锂溶液期间,跨顶端膜的钠摄取是时间的线性函数,并且除了在非常高的锂浓度下,钠摄取的初始速率JiNa与其锂处理前的值相同。然而,在有锂存在的情况下,JiNa明显小于总ISC。顶端膜中钠的表观“迁移数”是黏膜浴液中锂:钠浓度比的函数。这些结果表明,锂可通过结肠顶端膜中对氨氯吡脒敏感的通道携带大量电流,而对钠进入的速率系数没有任何影响。这种行为与钠和锂对膜“载体”的“竞争”不一致,而是表明钠进入机制可能是一群孔或通道,钠和锂可通过这些孔或通道以可忽略不计的相互作用通过。

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