Li Tianbo, Folkesson Hans G
Dept. of Physiology and Pharmacology, Northeastern Ohio Universities College of Medicine, Rootstown, OH 44272-0095, USA.
Am J Physiol Lung Cell Mol Physiol. 2006 Apr;290(4):L649-L660. doi: 10.1152/ajplung.00205.2005. Epub 2005 Oct 28.
We used siRNA against the alpha-ENaC (epithelial Na channel) subunit to investigate ENaC involvement in lung fluid absorption in rats by the impermeable tracer technique during baseline and after beta-adrenoceptor stimulation by terbutaline. Terbutaline stimulation of lung fluid absorption increased fluid absorption by 165% in pSi-0-pretreated rat lungs (irrelevant siRNA-generating plasmid). Terbutaline failed to increase lung fluid absorption in rats given the specific alpha-ENaC siRNA-generating plasmid (pSi-4). pSi-4 pretreatment reduced baseline lung fluid absorption by approximately 30%. alpha-ENaC was undetectable in pSi-4-pretreated lungs, regardless of condition but was normal in pSi-0-pretreated lungs. We carried out a dose-response analysis where rats were given 0-200 microg/kg body wt pSi-4, and alpha-ENaC mRNA and protein expressions were analyzed. To reach IC(50) for alpha-ENaC mRNA expression, 32 microg/kg body wt pSi-4 was needed, and to reach IC(50) for alpha-ENaC protein expression, 59 microg/kg body wt pSi-4 was needed. We tested for lung tissue specificity and found no changes in beta-ENaC expression, at either mRNA or protein level, as well as no changes in alpha(1)-Na-K-ATPase protein expression. We isolated alveolar epithelial type II cells 24 h after in vivo pSi-4 pretreatment. In these cells, alpha-ENaC mRNA was undetectable, demonstrating that alveolar epithelial ENaC expression was attenuated after intratracheal alpha-ENaC siRNA-generating plasmid DNA instillation. We tested for organ specificity and found no changes in kidney alpha- and beta-ENaC mRNA and protein expression. Thus we provide conclusive evidence that beta-adrenoceptor stimulation of lung fluid absorption is critically ENaC dependent, whereas baseline lung fluid absorption seemed less ENaC dependent.
我们使用针对α - ENaC(上皮钠通道)亚基的小干扰RNA(siRNA),通过不可渗透示踪技术,在基线状态以及用特布他林刺激β - 肾上腺素能受体后,研究大鼠肺液体吸收过程中ENaC的作用。特布他林刺激肺液体吸收使预先用pSi - 0处理的大鼠肺(产生无关siRNA的质粒)中的液体吸收增加了165%。而对于给予特异性α - ENaC siRNA产生质粒(pSi - 4)的大鼠,特布他林未能增加肺液体吸收。pSi - 4预处理使基线肺液体吸收降低了约30%。无论何种情况,在pSi - 4预处理的肺中均检测不到α - ENaC,但在pSi - 0预处理的肺中α - ENaC正常。我们进行了剂量反应分析,给大鼠注射0 - 200μg/kg体重的pSi - 4,并分析α - ENaC mRNA和蛋白表达。要使α - ENaC mRNA表达达到半数抑制浓度(IC50),需要32μg/kg体重的pSi - 4,而要使α - ENaC蛋白表达达到IC50,则需要59μg/kg体重的pSi - 4。我们检测了肺组织特异性,发现在mRNA或蛋白水平上β - ENaC表达没有变化,并且α1 - 钠钾 - ATP酶蛋白表达也没有变化。在体内用pSi - 4预处理24小时后,我们分离了肺泡II型上皮细胞。在这些细胞中,检测不到α - ENaC mRNA,这表明气管内注入产生α - ENaC siRNA的质粒DNA后,肺泡上皮ENaC表达减弱。我们检测了器官特异性,发现肾脏α - 和β - ENaC mRNA及蛋白表达没有变化。因此,我们提供了确凿证据,表明β - 肾上腺素能受体刺激肺液体吸收关键依赖于ENaC,而基线肺液体吸收似乎对ENaC的依赖性较小。