首页> 外文期刊>Journal of General Physiology >Acute ENaC stimulation by cAMP in a kidney cell line is mediated by exocytic insertion from a recycling channel pool
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Acute ENaC stimulation by cAMP in a kidney cell line is mediated by exocytic insertion from a recycling channel pool

机译:肾脏细胞系中cAMP对ENaC的急性刺激是通过回收通道池中的胞外插入介导的

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Acute hormonal regulation of the epithelial sodium channel (ENaC) in tight epithelia increases transcellular Na+ transport via trafficking of intracellular channels to the apical surface. The fate of the channels removed from the apical surface following agonist washout is less clear. By repetitively stimulating polarized mouse cortical collectin duct (mCCD, MPKCCD14) epithelia, we evaluated the hypothesis that ENaC recycles through an intracellular pool to be available for reinsertion into the apical membrane. Short circuit current (I-SC), membrane capacitance (C-T), and conductance (G(T)) were recorded from mCCD epithelia mounted in modified Ussing chambers. Surface biotinylation of ENaC demonstrated an increase in channel number in the apical membrane following cAMP stimulation. This increase was accompanied by a 83 +/- 6% (n = 31) increase in I-SC and a 15.3 +/- 1.5% (n = 15) increase in C-T. Selective membrane permeabilization demonstrated that the C-T increase was due to an increase in apical membrane capacitance. I-SC and C-T declined to basal levels on stimulus washout. Repetitive cAMP stimulation and washout (similar to1 h each cycle) resulted in response fatigue; DeltaI(SC) decreased similar to10% per stimulation-recovery cycle. When channel production was blocked by cycloheximide, DeltaI(SC) decreased similar to15% per stimulation cycle, indicating that newly synthesized ENaC contributed a relatively small fraction of the channels mobilized to the apical membrane. Selective block of surface ENaC by benzamil demonstrated that channels inserted from a subapical pool made up >90% of the stimulated I-SC, and that on restimulation a large proportion of channels retrieved from the apical surface were reinserted into the apical membrane. Channel recycling was disrupted by brefeldin A, which inhibited ENaC exocytosis, by chloroquine, which inhibited ENaC endocytosis and recycling, and by latrunculin A, which blocked ENaC exocytosis. A compartment model featuring channel populations in the apical membrane and intracellular recycling pool provided an adequate kinetic description of the I-SC responses to repetitive stimulation. The model supports the concept of ENaC recycling in response to repetitive cAMP stimulation.
机译:紧密上皮细胞中上皮钠通道(ENaC)的急性激素调节通过细胞内通道向顶端表面的运输增加了跨细胞Na +的转运。激动剂冲洗后从根尖表面去除的通道的命运不太清楚。通过重复刺激极化的小鼠皮质集合管(mCCD,MPKCCD14)上皮细胞,我们评估了ENaC通过细胞内池循环以可重新插入顶膜的假说。从安装在改进的Ussing室中的mCCD上皮记录了短路电流(I-SC),膜电容(C-T)和电导(G(T))。 ENaC的表面生物素化表明cAMP刺激后,顶膜通道数增加。 I-SC增加83 +/- 6%(n = 31),C-T增加15.3 +/- 1.5%(n = 15)。选择性膜通透性表明C-T增加是由于心尖膜电容的增加。刺激清除后,I-SC和C-T降至基础水平。重复的cAMP刺激和冲洗(每个周期约1小时)导致反应疲劳;每个刺激恢复周期,DeltaI(SC)降低约10%。当通道的产生被环己酰亚胺阻断时,每个刺激周期的DeltaI(SC)下降约15%,这表明新合成的ENaC贡献了相对较小比例的动员至顶膜的通道。苯扎米尔对表面ENaC的选择性阻滞表明,从根尖下池插入的通道占受刺激I-SC的90%以上,并且在重新刺激后,从根尖表面回收的大部分通道重新插入了根尖膜。布雷菲德菌素A抑制了ENaC的胞吐作用,氯喹抑制了ENaC的内吞作用和再循环,而拉提库菌素A阻断了ENaC的胞吐作用,破坏了渠道回收。以顶膜和细胞内循环池中的通道种群为特征的区室模型提供了对重复刺激的I-SC反应的充分动力学描述。该模型支持ENaC循环的概念,以响应重复的cAMP刺激。

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