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首页> 外文期刊>American Journal of Physiology >Nonselective cation transport in native esophageal epithelia.
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Nonselective cation transport in native esophageal epithelia.

机译:天然食管上皮细胞中的非选择性阳离子转运。

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Rabbit esophageal epithelia actively transport Na(+) in a manner similar to that observed in classic electrically tight Na(+)-absorbing epithelia, such as frog skin. However, the nature of the apical entry step is poorly understood. To address this issue, we examined the electrophysiological and biochemical nature of this channel. Western blotting experiments with epithelial Na(+) channel (ENaC) subunit-specific antibodies revealed the presence of all three ENaC subunits in both native and immortalized esophageal epithelial cells. The amino acid sequence of the rabbit alpha-ENaC cloned from native rabbit esophageal epithelia was not significantly different from that of other published alpha-ENaC homologs. To characterize the electrophysiological properties of this native apical channel, we utilized nystatin permeabilization to eliminate the electrical contribution of the basolateral membrane in isolated native epithelia mounted in Ussing-type chambers. We find that the previously described apical Na(+)channel is nonselective for monovalent cations (Li(+), Na(+), and K(+)). Moreover, this channel was not blocked by millimolar concentrations of amiloride. These findings document the presence of a nonselective cation channel in a native Na(+) transporting epithelia, a finding that hereto has been thought to be limited to artificial culture conditions. Moreover, our data are consistent with a potential role of ENaC subunits in the formation of a native nonselective cation channel.
机译:兔食道上皮细胞以类似于经典的电致密Na(+)吸收性上皮细胞(如青蛙皮)中观察到的方式积极转运Na(+)。但是,人们对根尖进入步骤的本质了解甚少。为了解决此问题,我们检查了该通道的电生理和生化性质。上皮Na(+)通道(ENaC)亚基特异性抗体的蛋白质印迹实验揭示了天然和永生化的食管上皮细胞中所有三个ENaC亚基的存在。从天然兔食管上皮细胞克隆的兔α-ENaC的氨基酸序列与其他已发表的α-ENaC同源物没有显着差异。为了表征该天然顶通道的电生理特性,我们利用制霉菌素透化作用消除了安装在Ussing型腔室中的分离天然上皮中基底外侧膜的电影响。我们发现先前描述的顶端Na(+)通道对单价阳离子(Li(+),Na(+)和K(+))不具有选择性。而且,该通道未被毫摩尔浓度的阿米洛利所阻断。这些发现证明了在天然Na(+)运输上皮中存在非选择性阳离子通道,该发现据认为仅限于人工培养条件。此外,我们的数据与ENaC亚基在天然非选择性阳离子通道形成中的潜在作用一致。

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