Factor P, Saldias F, Ridge K, Dumasius V, Zabner J, Jaffe H A, Blanco G, Barnard M, Mercer R, Perrin R, Sznajder J I
Section of Pulmonary and Critical Care Medicine, Michael Reese Hospital, Chicago, Illinois 60616, USA.
J Clin Invest. 1998 Oct 1;102(7):1421-30. doi: 10.1172/JCI3214.
Previous studies have suggested that alveolar Na,K-ATPases play an important role in active Na+ transport and lung edema clearance. We reasoned that overexpression of Na,K-ATPase subunit genes could increase Na,K-ATPase function in lung epithelial cells and edema clearance in rat lungs. To test this hypothesis we produced replication deficient human type 5 adenoviruses containing cDNAs for the rat alpha1 and beta1 Na,K-ATPase subunits (adMRCMValpha1 and adMRCMVbeta1, respectively). As compared to controls, adMRCMVbeta1 increased beta1 subunit expression and Na,K-ATPase function by 2. 5-fold in alveolar type 2 epithelial cells and rat airway epithelial cell monolayers. No change in Na,K-ATPase function was noted after infection with adMRCMValpha1. Rat lungs infected with adMRCMVbeta1, but not adMRCMValpha1, had increased beta1 protein levels and lung liquid clearance 7 d after tracheal instillation. Alveolar epithelial permeability to Na+ and mannitol was mildly increased in animals infected with adMRCMVbeta1 and a similar Escherichia coli lacZ-expressing virus. Our data shows, for the first time, that transfer of the beta1 Na,K-ATPase subunit gene augments Na,K-ATPase function in epithelial cells and liquid clearance in rat lungs. Conceivably, overexpression of Na,K-ATPases could be used as a strategy to augment lung liquid clearance in patients with pulmonary edema.
以往的研究表明,肺泡钠钾ATP酶在主动钠转运和肺水肿清除中起重要作用。我们推测,钠钾ATP酶亚基基因的过表达可增强肺上皮细胞中钠钾ATP酶的功能以及大鼠肺内的水肿清除能力。为验证这一假说,我们制备了复制缺陷型人5型腺病毒,其分别包含大鼠α1和β1钠钾ATP酶亚基的cDNA(分别为adMRCMValpha1和adMRCMVbeta1)。与对照组相比,adMRCMVbeta1使肺泡Ⅱ型上皮细胞和大鼠气道上皮细胞单层中的β1亚基表达及钠钾ATP酶功能增加了2.5倍。感染adMRCMValpha1后,钠钾ATP酶功能未见变化。气管内滴注7天后,感染adMRCMVbeta1而非adMRCMValpha1的大鼠肺内β1蛋白水平及肺液清除能力增加。感染adMRCMVbeta1和表达大肠杆菌lacZ的类似病毒的动物,肺泡上皮对钠和甘露醇的通透性轻度增加。我们的数据首次表明,β1钠钾ATP酶亚基基因的转移增强了上皮细胞中的钠钾ATP酶功能及大鼠肺内的液体清除能力。可以想象,钠钾ATP酶的过表达可作为一种策略来增强肺水肿患者的肺液清除能力。