“Epithelial sodium transport and its control by aldosterone: the story of our internal environment revisited”.Physiological Reviews95(1): 297–340.(Jan 2015).doi:10.1152/physrev.00011.2014.PMID25540145.
“Cloning and expression of the beta- and gamma-subunits of the human epithelial sodium channel”.American Journal of Physiology268(5 Pt 1): C1157–63.(May 1995).doi:10.1152/ajpcell.1995.268.5.C1157.PMID7762608.
“Cloning, chromosomal localization, and physical linkage of the beta and gamma subunits (SCNN1B and SCNN1G) of the human epithelial amiloride-sensitive sodium channel”.Genomics28(3): 560–5.(Aug 1995).doi:10.1006/geno.1995.1188.PMID7490094.
“Novel mutations responsible for autosomal recessive multisystem pseudohypoaldosteronism and sequence variants in epithelial sodium channel alpha-, beta-, and gamma-subunit genes”.Journal of Clinical Endocrinology and Metabolism87(7): 3344–50.(Jul 2002).doi:10.1210/jcem.87.7.8674.PMID12107247.
“Structural organisation of the gene encoding the alpha-subunit of the human amiloride-sensitive epithelial sodium channel”.Human Genetics102(5): 576–81.(May 1998).doi:10.1007/s004390050743.PMID9654208.
“Genomic organization and the 5' flanking region of the gamma subunit of the human amiloride-sensitive epithelial sodium channel”.Journal of Biological Chemistry271(42): 26062–6.(Oct 1996).doi:10.1074/jbc.271.42.26062.PMID8824247.
“The structure of the rat amiloride-sensitive epithelial sodium channel gamma subunit gene and functional analysis of its promoter”.Gene228(1–2): 111–22.(Mar 1999).doi:10.1016/s0378-1119(99)00016-5.PMID10072764.
“Gene structure of the human amiloride-sensitive epithelial sodium channel beta subunit”.Biochemical and Biophysical Research Communications252(1): 208–213.(Nov 1998).doi:10.1006/bbrc.1998.9625.PMID9813171.
“Epithelial sodium channels (ENaC) are uniformly distributed on motile cilia in the oviduct and the respiratory airways”.Histochemistry and Cell Biology137(3): 339–53.(Mar 2012).doi:10.1007/s00418-011-0904-1.PMID22207244.
“Regulation and dysregulation of epithelial Na+ channels”.Clinical and Experimental Nephrology16(1): 35–43.(Feb 2012).doi:10.1007/s10157-011-0496-z.PMID22038262.
“Membrane topology of the epithelial sodium channel in intact cells”.The American Journal of Physiology267(6 Pt 1): C1682–90.(Dec 1994).doi:10.1152/ajpcell.1994.267.6.C1682.PMID7810611.
“Conserved charged residues at the surface and interface of epithelial sodium channel (ENaC) subunits: roles in cell surface expression and Na+ self-inhibition response”.FEBS Journal281(8): 2097–2111.(Apr 2014).doi:10.1111/febs.12765.PMID24571549.
“Localisation of pseudohypoaldosteronism genes to chromosome 16p12.2-13.11 and 12p13.1-pter by homozygosity mapping”.Human Molecular Genetics5(2): 293–9.(Feb 1996).doi:10.1093/hmg/5.2.293.PMID8824886.
“Mutations in subunits of the epithelial sodium channel cause salt wasting with hyperkalaemic acidosis, pseudohypoaldosteronism type 1”.Nature Genetics12(3): 248–53.(Mar 1996).doi:10.1038/ng0396-248.PMID8589714.
“A novel splice-site mutation in the gamma subunit of the epithelial sodium channel gene in three pseudohypoaldosteronism type 1 families”.Nature Genetics13(2): 248–50.(Jun 1996).doi:10.1038/ng0696-248.PMID8640238.
“Aldosterone resistance: structural and functional considerations and new perspectives”.Molecular and Cellular Endocrinology350(2): 206–15.(Mar 2012).doi:10.1016/j.mce.2011.04.023.PMID21664233.
“Liddle's syndrome: heritable human hypertension caused by mutations in the beta subunit of the epithelial sodium channel”.Cell79(3): 407–14.(1994).doi:10.1016/0092-8674(94)90250-X.PMID7954808.
“A family with Liddle's syndrome caused by a new missense mutation in the beta subunit of the epithelial sodium channel”.J. Clin. Endocrinol. Metab.83(6): 2210–3.(1998).doi:10.1210/jc.83.6.2210.PMID9626162.
“Genetic analysis of the beta subunit of the epithelial Na+ channel in essential hypertension”.Hypertension32(1): 129–37.(1998).doi:10.1161/01.hyp.32.1.129.PMID9674649.
“Mechanism by which Liddle's syndrome mutations increase activity of a human epithelial Na+ channel”.Cell83(6): 969–78.(1996).doi:10.1016/0092-8674(95)90212-0.PMID8521520.
“Identification of novel human WW domain-containing proteins by cloning of ligand targets”.J. Biol. Chem.272(23): 14611–6.(1997).doi:10.1074/jbc.272.23.14611.PMID9169421.
“Ubiquitin-protein ligase WWP2 binds to and downregulates the epithelial Na(+) channel”.Am. J. Physiol. Renal Physiol.283(3): F431–6.(September 2002).doi:10.1152/ajprenal.00080.2002.PMID12167593.
“The Nedd4-like protein KIAA0439 is a potential regulator of the epithelial sodium channel”.J. Biol. Chem.276(11): 8597–601.(March 2001).doi:10.1074/jbc.C000906200.PMID11244092.
“ENaC subunit-subunit interactions and inhibition by syntaxin 1A”.Am. J. Physiol. Renal Physiol.286(6): F1100–6.(June 2004).doi:10.1152/ajprenal.00344.2003.PMID14996668.
“Polymorphisms of amiloride-sensitive sodium channel subunits in five sporadic cases of pseudohypoaldosteronism: do they have pathologic potential?”.J. Clin. Endocrinol. Metab.84(7): 2434–7.(1999).doi:10.1210/jc.84.7.2434.PMID10404817.
“Interactions of beta and gamma ENaC with Nedd4 can be facilitated by an ERK-mediated phosphorylation”.J. Biol. Chem.277(16): 13539–47.(2002).doi:10.1074/jbc.M111717200.PMID11805112.