Rajasekaran S A, Palmer L G, Moon S Y, Peralta Soler A, Apodaca G L, Harper J F, Zheng Y, Rajasekaran A K
Department of Physiology, Weill Medical College of Cornell University, New York, NY 10021, USA.
Mol Biol Cell. 2001 Dec;12(12):3717-32. doi: 10.1091/mbc.12.12.3717.
Na,K-ATPase is a key enzyme that regulates a variety of transport functions in epithelial cells. In this study, we demonstrate a role for Na,K-ATPase in the formation of tight junctions, desmosomes, and epithelial polarity with the use of the calcium switch model in Madin-Darby canine kidney cells. Inhibition of Na,K-ATPase either by ouabain or potassium depletion prevented the formation of tight junctions and desmosomes and the cells remained nonpolarized. The formation of bundled stress fibers that appeared transiently in control cells was largely inhibited in ouabain-treated or potassium-depleted cells. Failure to form stress fibers correlated with a large reduction of RhoA GTPase activity in Na,K-ATPase-inhibited cells. In cells overexpressing wild-type RhoA GTPase, Na,K-ATPase inhibition did not affect the formation of stress fibers, tight junctions, or desmosomes, and epithelial polarity developed normally, suggesting that RhoA GTPase is an essential component downstream of Na,K-ATPase-mediated regulation of these junctions. The effects of Na,K-ATPase inhibition were mimicked by treatment with the sodium ionophore gramicidin and were correlated with the increased intracellular sodium levels. Furthermore, ouabain treatment under sodium-free condition did not affect the formation of junctions and epithelial polarity, suggesting that the intracellular Na(+) homeostasis plays a crucial role in generation of the polarized phenotype of epithelial cells. These results thus demonstrate that the Na,K-ATPase activity plays an important role in regulating both the structure and function of polarized epithelial cells.
钠钾ATP酶是一种关键酶,可调节上皮细胞中的多种转运功能。在本研究中,我们利用钙转换模型,在麦迪逊-达比犬肾细胞中证明了钠钾ATP酶在紧密连接、桥粒和上皮极性形成中的作用。哇巴因或低钾抑制钠钾ATP酶可阻止紧密连接和桥粒的形成,细胞仍保持非极化状态。在对照细胞中短暂出现的成束应力纤维的形成,在哇巴因处理或低钾的细胞中受到很大抑制。未能形成应力纤维与钠钾ATP酶抑制细胞中RhoA GTP酶活性的大幅降低相关。在过表达野生型RhoA GTP酶的细胞中,钠钾ATP酶抑制不影响应力纤维、紧密连接或桥粒的形成,上皮极性正常发育,这表明RhoA GTP酶是钠钾ATP酶介导的这些连接调节下游的重要组成部分。用钠离子载体短杆菌肽处理可模拟钠钾ATP酶抑制的作用,并与细胞内钠水平升高相关。此外,在无钠条件下用哇巴因处理不影响连接的形成和上皮极性,这表明细胞内Na(+)稳态在上皮细胞极化表型的产生中起关键作用。因此,这些结果表明钠钾ATP酶活性在调节极化上皮细胞的结构和功能中起重要作用。