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Potassium-dependent volume regulation in retinal pigment epithelium is mediated by NaKCl cotransport

机译:钠钾氯共转运介导视网膜色素上皮中钾依赖性的体积调节

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摘要

Changes in retinal pigment epithelial (RPE) cell volume were measured by monitoring changes in intracellular tetramethylammonium (TMA) using double-barreled K-resin microelectrodes. Hyperosmotic addition of 25 or 50 mM mannitol to the Ringer of the apical bath resulted in a rapid (approximately 30 s) osmometric cell shrinkage. The initial cell shrinkage was followed by a much slower (minutes) secondary shrinkage that is probably due to loss of cell solute. When apical [K+] was elevated from 2 to 5 mM during or before a hyperosmotic pulse, the RPE cell regulated its volume by reswelling towards control within 3-10 min. This change in apical [K+] is very similar to the increase in subretinal [K+]o that occurs after a transition from light to dark in the intact vertebrate eye. The K-dependent regulatory volume increase (RVI) was inhibited by apical Na removal, Cl reduction, or the presence of bumetanide. These results strongly suggest that a Na(K),Cl cotransport mechanism at the apical membrane mediates RVI in the bullfrog RPE. A unique aspect of this cotransporter is that it also functions at a lower rate under steady-state conditions. The transport requirements for Na, K, and Cl, the inhibition of RVI by bumetanide, and thermodynamic calculations indicate that this mechanism transports Na, K, and Cl in the ratio of 1:1:2.
机译:通过使用双管K型树脂微电极监测细胞内四甲基铵(TMA)的变化来测量视网膜色素上皮(RPE)细胞的变化。将高渗的25或50 mM甘露糖醇添加到顶浴的林格液中,导致渗透压细胞迅速(约30 s)收缩。最初的细胞收缩紧随其后的是较慢的(几分钟)二次收缩,这可能是由于细胞溶质的损失所致。在高渗脉冲期间或之前,当根尖[K +]从2 mM升高到5 mM时,RPE细胞通过在3-10分钟内向对照溶胀而调节其体积。顶端[K +]的这种变化与完整脊椎动物眼中从亮到暗的过渡后发生的视网膜下[K +] o的增加非常相似。根尖钠的去除,Cl的减少或布美他尼的存在抑制了K依赖性调节体积的增加(RVI)。这些结果强烈表明,Na(K),Cl在顶膜上的共转运机制介导了牛蛙RPE中的RVI。该共转运蛋白的独特之处在于它在稳态条件下的运行速率也较低。 Na,K和Cl的运输要求,布美他尼对RVI的抑制作用以及热力学计算表明,该机理以1:1:2的比例运输Na,K和Cl。

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