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Regulation of a cloned epithelial Na+ channel by its beta - and gamma -subunits
Authors:Awayda  Mouhamed S; Tousson  Albert; Benos  Dale J
Abstract:Using the Xenopus oocyteexpression system, we examined the mechanisms by which the beta - andgamma -subunits of an epithelial Na+channel (ENaC) regulate alpha -subunit channel activity and the mechanisms by which beta -subunit truncations cause ENaC activation. Expression ofalpha -ENaC alone produced small amiloride-sensitive currents (-43 ± 10 nA, n = 7). These currentsincreased >30-fold with the coexpression of beta - and gamma -ENaC to-1,476 ± 254 nA (n = 20).This increase was accompanied by a 3.1- and 2.7-fold increase ofmembrane fluorescence intensity in the animal and vegetal poles of theoocyte, respectively, with use of an antibody directed against thealpha -subunit of ENaC. Truncation of the last 75 amino acids of thebeta -subunit COOH terminus, as found in the original pedigree ofindividuals with Liddle's syndrome, caused a 4.4-fold(n = 17) increase of theamiloride-sensitive currents compared with wild-type alpha beta gamma -ENaC.This was accompanied by a 35% increase of animal pole membranefluorescence intensity. Injection of a 30-amino acid peptide withsequence identity to the COOH terminus of the human beta -ENaCsignificantly reduced the amiloride-sensitive currents by 40-50%.These observations suggest a tonic inhibitory role on the channel'sopen probability (Po) by the COOH terminus of beta -ENaC. We conclude that the changes of current observed with coexpression of the beta - and gamma -subunits or those observed with beta -subunit truncation are likely the result ofchanges of channel density in combination with large changes ofPo.

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