A Secretory Cl Channel from Epithelial Cells Studied in Heterologous Expression Systems
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Publisher
Springer Berlin Heidelberg
Link
http://link.springer.com/content/pdf/10.1007/978-3-642-78261-9_11
Reference110 articles.
1. Anderson MP, Welsh MJ (1992) Regulation by ATP and ADP of CFTR chloride channels that contain mutant nucleotide-binding domains. Science 257:1701–1704
2. Anderson MP, Berger HA, Rich DP, Gregory RJ, Smith AE, Welsh MJ (1991a) Nucleoside triphosphates are required to open the CFTR chloride channel. Cell 67: 775–784
3. Anderson MP, Gregory RJ, Thompson S, Souza DW, Paul S. Mulligan RC, Smith AE, Welsh M J (1991b) Demonstration that CFTR is a chloride channel by alteration of its anion selectivity. Science 253: 202–205
4. Anderson MP, Rich DP, Gregory RJ, Smith AE, Welsh MJ (1991c) Generation of cAMP- activated chloride currents by expression of CFTR. Science 251: 679–682
5. Anderson MP, Sheppard DN, Berger HA, Welsh M J (1992) Chloride channels in the apical membrane of normal and cystic fibrosis airway and intestinal epithelia. Am J Physiol Lung Cell Mol Physiol 263: L1-L14
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