Literature DB >> 10749763

Biophysical properties and molecular characterization of amiloride-sensitive sodium channels in A549 cells.

A Lazrak1, A Samanta, S Matalon.   

Abstract

Amiloride-sensitive Na(+) channels, present in fetal and adult alveolar epithelial type II (ATII) cells, play a critical role in the reabsorption of fetal fluid shortly after birth and in limiting the extent of alveolar edema across the adult lung. Because of the difficulty in isolating and culturing ATII cells, there is considerable interest in characterizing the properties of ion channels and their response to injury of ATII cell-like cell lines such as A549 that derive from a human alveolar cell carcinoma. A549 cells were shown to contain alpha-, beta-, and gamma-epithelial Na(+) channel mRNAs. In the whole cell mode of the patch-clamp technique (bath, 145 mM Na(+); pipette, 145 mM K(+)), A549 cells exhibited inward Na(+) currents reversibly inhibited by amiloride, with an inhibition constant of 0.83 microM. Ion substitution studies showed that these channels were moderately selective for Na(+) (Na(+)-to-K(+) permeability ratio = 6:1). Inward Na(+) currents were activated by forskolin (10 microM) and inhibited by nitric oxide (300 nM) and cGMP. Recordings in cell-attached mode revealed the presence of an amiloride-sensitive Na(+) channel with a unitary conductance of 8.6 +/- 0.04 (SE) pS. Channel activity was increased by forskolin and decreased by nitric oxide and the cGMP analog 8-bromo-cGMP. These data demonstrate that A549 cells contain amiloride-sensitive Na(+) channels with biophysical properties similar to those of ATII cells.

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Year:  2000        PMID: 10749763     DOI: 10.1152/ajplung.2000.278.4.L848

Source DB:  PubMed          Journal:  Am J Physiol Lung Cell Mol Physiol        ISSN: 1040-0605            Impact factor:   5.464


  20 in total

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4.  8-(4-chlorophenylthio)-guanosine-3',5'-cyclic monophosphate-Na stimulates human alveolar fluid clearance by releasing external Na+ self-inhibition of epithelial Na+ channels.

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5.  Reactive species mediate inhibition of alveolar type II sodium transport during mycoplasma infection.

Authors:  Judy M Hickman-Davis; Carmel McNicholas-Bevensee; Ian C Davis; He-Ping Ma; Glenda C Davis; Charles A Bosworth; Sadis Matalon
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6.  Alveolar nonselective channels are ASIC1a/α-ENaC channels and contribute to AFC.

Authors:  Phi T Trac; Tiffany L Thai; Valerie Linck; Li Zou; Megan Greenlee; Qiang Yue; Otor Al-Khalili; Abdel A Alli; Amity F Eaton; Douglas C Eaton
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2017-03-10       Impact factor: 5.464

7.  TGF-β directs trafficking of the epithelial sodium channel ENaC which has implications for ion and fluid transport in acute lung injury.

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8.  The GTP-binding protein RhoA mediates Na,K-ATPase exocytosis in alveolar epithelial cells.

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9.  AP301, a synthetic peptide mimicking the lectin-like domain of TNF, enhances amiloride-sensitive Na(+) current in primary dog, pig and rat alveolar type II cells.

Authors:  Susan Tzotzos; Bernhard Fischer; Hendrik Fischer; Helmut Pietschmann; Rudolf Lucas; Gilles Dupré; Rosa Lemmens-Gruber; Parastoo Hazemi; Victoria Prymaka; Waheed Shabbir
Journal:  Pulm Pharmacol Ther       Date:  2013-01-09       Impact factor: 3.410

10.  Expression and regulation of epithelial Na+ channels by nucleotides in pleural mesothelial cells.

Authors:  Hong-Guang Nie; Torry Tucker; Xue-Feng Su; Tao Na; Ji-Bin Peng; Peter R Smith; Steven Idell; Hong-Long Ji
Journal:  Am J Respir Cell Mol Biol       Date:  2008-10-16       Impact factor: 6.914

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