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首页> 外文期刊>The Journal of general physiology >Protease Modulation of the Activity of the Epithelial Sodium Channel Expressed in Xenopus Oocytes
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Protease Modulation of the Activity of the Epithelial Sodium Channel Expressed in Xenopus Oocytes

机译:爪蟾卵母细胞表达的上皮钠通道的蛋白酶调节。

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We have investigated the effect of extracellular proteases on the amiloride-sensitive Na+ current (INa) in Xenopus oocytes expressing the three subunits α, β, and γ of the rat or Xenopus epithelial Na+ channel (ENaC). Low concentrations of trypsin (2 μg/ml) induced a large increase of INa within a few minutes, an effect that was fully prevented by soybean trypsin inhibitor, but not by amiloride. A similar effect was observed with chymotrypsin, but not with kallikrein. The trypsin-induced increase of INa was observed with Xenopus and rat ENaC, and was very large (~20-fold) with the channel obtained by coexpression of the α subunit of Xenopus ENaC with the β and γ subunits of rat ENaC. The effect of trypsin was selective for ENaC, as shown by the absence of effect on the current due to expression of the K+ channel ROMK2. The effect of trypsin was not prevented by intracellular injection of EGTA nor by pretreatment with GTP-γS, suggesting that this effect was not mediated by G proteins. Measurement of the channel protein expression at the oocyte surface by antibody binding to a FLAG epitope showed that the effect of trypsin was not accompanied by an increase in the channel protein density, indicating that proteolysis modified the activity of the channel present at the oocyte surface rather than the cell surface expression. At the single channel level, in the cell-attached mode, more active channels were observed in the patch when trypsin was present in the pipette, while no change in channel activity could be detected when trypsin was added to the bath solution around the patch pipette. We conclude that extracellular proteases are able to increase the open probability of the epithelial sodium channel by an effect that does not occur through activation of a G protein-coupled receptor, but rather through proteolysis of a protein that is either a constitutive part of the channel itself or closely associated with it.
机译:我们已经研究了胞外蛋白酶对表达大鼠或爪蟾上皮Na +通道三个亚基α,β和γ的爪蟾卵母细胞中阿米洛利敏感的Na +电流(INa)的影响。低浓度的胰蛋白酶(2μg/ ml)会在几分钟内诱导INa大量增加,大豆胰蛋白酶抑制剂可完全阻止这种作用,而阿米洛利则不能完全阻止这种作用。胰凝乳蛋白酶观察到类似效果,而激肽释放酶则观察不到。胰蛋白酶和大鼠ENaC观察到了胰蛋白酶诱导的INa的增加,并且通过非洲爪蟾ENaC的α亚基与大鼠ENaC的β和γ亚基共表达获得的通道非常大(〜20倍)。胰蛋白酶对ENaC具有选择性,如K +通道ROMK2的表达对电流没有影响所示。不能通过细胞内注射EGTA或通过GTP-γS预处理来阻止胰蛋白酶的作用,这表明该作用不是由G蛋白介导的。通过与FLAG表位结合的抗体对卵母细胞表面通道蛋白表达的测量表明,胰蛋白酶的作用并不伴随通道蛋白密度的增加,这表明蛋白水解改变了存在于卵母细胞表面的通道的活性,比细胞表面表达。在单通道水平上,在细胞附着模式下,当移液管中存在胰蛋白酶时,在贴片中观察到更多的活性通道,而当将胰蛋白酶添加到贴膜移液器周围的浴液中时,则无法检测到通道活性的变化。 。我们得出结论,细胞外蛋白酶能够通过激活G蛋白偶联受体而不是通过蛋白的蛋白水解作用来增加上皮钠通道的开放可能性,而这种作用不是通道的组成部分本身或与其紧密相关。

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