Griff E R, Shirao Y, Steinberg R H
J Gen Physiol. 1985 Dec;86(6):853-76. doi: 10.1085/jgp.86.6.853.
This paper presents electrophysiological evidence that small changes in [K+]o modulate the activity of the Na+-K+ pump on the apical membrane of the frog retinal pigment epithelium (RPE). This membrane also has a large relative K+ conductance so that lowering [K+]o hyperpolarizes it and therefore increases the transepithelial potential (TEP). Ba2+, a K+ channel blocker, eliminated these normal K+-evoked responses; in their place, lowering [K+]o evoked an apical depolarization and TEP decrease that were blocked by apical ouabain or strophanthidin. These data indicate that Ba2+ blocked the major K+ conductance(s) of the RPE apical membrane and unmasked a slowing of the normally hyperpolarizing electrogenic Na+-K+ pump caused by lowering [K+]o. Evidence is also presented that [K+]o modulates the pump in the isolated RPE under physiological conditions (i.e., without Ba2+). In the intact retina, light decreases subretinal [K+]o and produces the vitreal-positive c-wave of the electroretinogram (ERG) that originates primarily in the RPE from a hyperpolarization of the apical membrane and TEP increase. When Ba2+ was present in the retinal perfusate, the apical membrane depolarized in response to light and the TEP decreased so that the ERG c-wave inverted. The retinal component of the c-wave, slow PIII, was abolished by Ba2+. The effects of Ba2+ were completely reversible. We conclude that Ba2+ unmasks a slowing of the RPE Na+-K+ pump by the light-evoked decrease in [K+]o. Such a response would reduce the amplitude of the normal ERG c-wave.
本文提供了电生理学证据,表明细胞外[K⁺]的微小变化可调节蛙视网膜色素上皮(RPE)顶膜上钠钾泵的活性。该膜还具有较大的相对K⁺电导,因此降低细胞外[K⁺]会使其超极化,从而增加跨上皮电位(TEP)。K⁺通道阻滞剂Ba²⁺消除了这些正常的K⁺诱发反应;取而代之的是,降低细胞外[K⁺]会诱发顶膜去极化和TEP降低,而顶膜哇巴因或毒毛花苷可阻断这种变化。这些数据表明,Ba²⁺阻断了RPE顶膜的主要K⁺电导,并揭示了由于降低细胞外[K⁺]导致的正常超极化电生钠钾泵的减慢。本文还提供了证据,表明在生理条件下(即无Ba²⁺),细胞外[K⁺]可调节分离的RPE中的泵。在完整视网膜中,光会降低视网膜下细胞外[K⁺],并产生视网膜电图(ERG)的玻璃体正向c波,该波主要起源于RPE,是由于顶膜超极化和TEP增加所致。当视网膜灌注液中存在Ba²⁺时,顶膜会对光发生去极化,TEP降低,从而使ERG c波反转。c波的视网膜成分,即慢PIII,被Ba²⁺消除。Ba²⁺的作用是完全可逆的。我们得出结论,Ba²⁺揭示了光诱发的细胞外[K⁺]降低导致的RPE钠钾泵减慢。这种反应会降低正常ERG c波的幅度。