Mills J W, DiBona D R
J Cell Biol. 1977 Dec;75(3):968-73. doi: 10.1083/jcb.75.3.968.
Exposure of the outside of the isolated frog skin to a Ringer's solution, made hypertonic by the addition of mannitol, causes a rapid and sustained increase in transepithelial permeability through a structural distortion-a focal blistering-of the "tight" junctions of the outermost living cell layer. [(3)H]ouabain, used as an autoradiographic marker for the Na+-pump (Na+-K+-adenosine triphosphatase), is usually unable to penetrate the frog skin from the outside solution, but when added to a hypertonic mannitol- Ringer's solution in the outside bath it readily penetrates the epithelium, presumably through the opened shunt pathway. Radioautographic analysis of [(3)H]ouabain binding sites revealed that most of ouabain enters from the outside solution binds to the sites on the cell membranes of the stratum spinosum, as was the case when it was applied from the inside bath in an earlier study. The outer living cell layer, the first to be exposed to ouabain, does not appear to be the major site for the Na+-pump, and therefore, is not likely to be responsible for most of the active pumping of Na+. This result demonstrates that previous failure to show a high density of Na+-pump sites on the cells of the outermost layer, when [(3)H]ouabain was applied from the inside solution, was not due to the inability of the marker to reach these cells at a sufficient concentration to reveal all pump sites. These results provide further support for a model of Na+-transport across the frog skin which distributes the active pump step on the inward facing membranes of all living cells.
将分离的蛙皮外部暴露于通过添加甘露醇而变为高渗的任氏液中,会通过最外层活细胞层“紧密”连接的结构扭曲——局灶性起泡,导致跨上皮通透性迅速且持续增加。用作钠泵(钠钾腺苷三磷酸酶)放射自显影标记物的[³H]哇巴因,通常无法从外部溶液穿透蛙皮,但当添加到外部浴槽中的高渗甘露醇 - 任氏液中时,它很容易穿透上皮,大概是通过开放的旁路途径。对[³H]哇巴因结合位点的放射自显影分析表明,从外部溶液进入的大多数哇巴因与棘层细胞膜上的位点结合,这与早期研究中从内部浴槽施加时的情况相同。最先接触哇巴因的外部活细胞层似乎不是钠泵的主要位点,因此,不太可能负责大部分钠的主动转运。这一结果表明,先前当从内部溶液施加[³H]哇巴因时,未能在最外层细胞上显示出高密度的钠泵位点,并非是由于标记物无法以足够的浓度到达这些细胞以揭示所有泵位点。这些结果为蛙皮钠转运模型提供了进一步支持,该模型将主动泵步骤分布在所有活细胞面向内部的膜上。