Division of Pulmonary, Allergy, and Critical Care Medicine, University of Pittsburgh Medical Center, Montefiore University Hospital, 3459 Fifth Ave., Pittsburgh, PA 15213, USA.
Am J Respir Cell Mol Biol. 2010 Dec;43(6):712-9. doi: 10.1165/rcmb.2009-0348OC. Epub 2010 Jan 22.
Effective clearance of inhaled pathogens is the primary innate defense mechanism in the lung, and requires the maintenance of a proper airway surface liquid (ASL) volume to facilitate ciliary beat and optimize mucociliary clearance. Na(+) absorption via the epithelial sodium channel (ENaC) is tightly regulated and, together with chloride movement, provides the optimal osmotic gradients to absorb excessive fluid in the airway lumen while preventing excessive ASL dehydration, which would compromise mucus clearance from the lung. To absorb excessive fluid from the luminal surface, a local mechanism of ENaC activation allows for an increase in Na(+) absorption at times when the ASL volume is expanded. To help define these regulatory mechanisms, we examined the effects of ASL volume expansion on ENaC activity in primary human bronchial epithelial (HBE) cell cultures. We found that ENaC activity increases dramatically after rapid dilution of endogenous ASL. Approximately 35% of the increase in Na(+) absorption was attributable to activation of ENaC by proteases. The remainder of the increase in Na(+) current was prevented when membrane trafficking was disrupted with brefeldin A, nocodazole, or myosin light chain kinase inhibitors, demonstrating that trafficking is involved with ENaC regulation in the airway. These findings demonstrate that Na(+) absorption in the airway is acutely modulated by the coordinated trafficking of channels to the luminal surface and by the proteolytic activation of ENaC in response to ASL volume expansion.
吸入病原体的有效清除是肺部的主要先天防御机制,需要维持适当的气道表面液体 (ASL) 量,以促进纤毛摆动并优化黏液纤毛清除。上皮钠通道 (ENaC) 通过钠吸收得到严格调节,与氯离子一起运动,提供最佳的渗透梯度,以吸收气道腔中的过多液体,同时防止 ASL 过度脱水,这会损害肺部的黏液清除。为了从腔表面吸收过多的液体,局部的 ENaC 激活机制允许在 ASL 体积扩张时增加钠吸收。为了帮助定义这些调节机制,我们研究了 ASL 体积扩张对原代人支气管上皮 (HBE) 细胞培养物中 ENaC 活性的影响。我们发现,内源性 ASL 快速稀释后,ENaC 活性显著增加。Na+吸收增加的约 35%归因于蛋白酶激活 ENaC。当用布雷菲德菌素 A、诺考达唑或肌球蛋白轻链激酶抑制剂破坏膜转运时,Na+电流的其余部分增加被阻止,这表明转运与气道中 ENaC 的调节有关。这些发现表明,气道中的钠吸收通过通道向腔表面的协调转运以及 ASL 体积扩张时 ENaC 的蛋白水解激活而被急性调节。