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尽管牛蛙幼体皮肤不存在氨氯地平可阻断的跨上皮钠转运,但仍表达上皮钠通道(ENaC)。

Larval bullfrog skin expresses ENaC despite having no amiloride-blockable transepithelial Na+ transport.

作者信息

Takada Makoto, Shimomura Tomoko, Hokari Shigeru, Jensik Philip J, Cox Thomas C

机构信息

Department of Physiology, Saitama Medical School, Moroyama, Iruma-gunn, Saitama, 3500495, Japan.

出版信息

J Comp Physiol B. 2006 May;176(4):287-93. doi: 10.1007/s00360-005-0050-y. Epub 2005 Nov 25.

Abstract

Amiloride-blockable Na(+) transport, measured as an amiloride-blockable short-circuit current (Am-SCC), is mediated by the epithelial Na(+) channel (ENaC). Am-SCC is not normally present in bullfrog tadpole skin, but when such skin is cultured with corticoids an amiloride-blockable Na transport appears. Prolactin (PRL) inhibits its corticoid-induced development. Using specific PCR primers for adult frog ENaC and RT-PCR, we investigated whether corticoids can induce all three ENaC subunits, and whether this expression of ENaC subunit(s) can be blocked by adding PRL with the corticoids. We found that (1) the sequences of the RT-PCR products obtained using primers for alpha-ENaC were identical between larval and adult skins, (2) the mRNAs for all three ENaC subunits were expressed in larval skin under normal conditions despite no amiloride-blockable Na(+) transport being detectable, (3) all three subunits were expressed in larval skins whether they were cultured with corticoids (amiloride-blockable Na transport present) or with corticoids supplemented with PRL (no amiloride-blockable Na transport present). An antibody against a peptide from the alpha-ENaC of adult bullfrog was localized to the apical cells of both larval and adult skins. Since no amiloride-blockable Na transport exists across larval skin under these conditions, these results suggest that ENaC protein was expressed prior to the onset of transport. ENaC may be in the plasma membrane in an inactivated form or, alternatively, within vesicles waiting to be inserted.

摘要

以氨氯吡咪可阻断的短路电流(Am-SCC)来衡量的氨氯吡咪可阻断的Na⁺转运,是由上皮Na⁺通道(ENaC)介导的。Am-SCC在牛蛙蝌蚪皮肤中通常不存在,但当这种皮肤用皮质激素培养时,就会出现氨氯吡咪可阻断的Na⁺转运。催乳素(PRL)会抑制其由皮质激素诱导的发育。我们使用针对成年青蛙ENaC的特异性PCR引物和逆转录聚合酶链反应(RT-PCR),研究了皮质激素是否能诱导所有三种ENaC亚基,以及在加入PRL和皮质激素的情况下,这种ENaC亚基的表达是否会被阻断。我们发现:(1)使用α-ENaC引物获得的RT-PCR产物序列在幼体和成年皮肤之间是相同的;(2)尽管未检测到氨氯吡咪可阻断的Na⁺转运,但在正常条件下,所有三种ENaC亚基的mRNA在幼体皮肤中均有表达;(3)无论幼体皮肤是用皮质激素培养(存在氨氯吡咪可阻断的Na⁺转运)还是用添加了PRL的皮质激素培养(不存在氨氯吡咪可阻断的Na⁺转运),所有三种亚基均在幼体皮肤中表达。一种针对成年牛蛙α-ENaC肽段的抗体定位于幼体和成年皮肤的顶端细胞。由于在这些条件下幼体皮肤不存在氨氯吡咪可阻断的Na⁺转运,这些结果表明ENaC蛋白在转运开始之前就已表达。ENaC可能以失活形式存在于质膜中,或者存在于等待插入的囊泡中。

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