- Gamma subunit second transmembrane domain contributes to epithelial sodium channel gating and amiloride block.
Gamma subunit second transmembrane domain contributes to epithelial sodium channel gating and amiloride block.
The epithelial sodium channel (ENaC) is comprised of three homologous subunits. Channels composed solely of ฮฑ- and ฮฒ-subunits (ฮฑฮฒ-channels) exhibit a very high open probability (Po) and reduced sensitivity to amiloride, in contrast to channels composed of ฮฑ- and ฮณ-subunits or of all three subunits (i.e., ฮฑฮณ- and ฮฑฮฒฮณ-channels). A mutant channel comprised of ฮฑ- and ฮฒ-subunits, and a chimeric ฮณ-subunit where the region immediately preceding (ฮฒ12 and wrist) and encompassing the second transmembrane domain (TM2) was replaced with the corresponding region of the ฮฒ-subunit (ฮณ-ฮฒTM2), displayed characteristics reminiscent of ฮฑฮฒ-channels, including a reduced amiloride potency of block and a loss of Na(+) self-inhibition (reflecting an increased Po). Substitutions at key pore-lining residues of the ฮณ-ฮฒTM2 chimera enhanced the Na(+) self-inhibition response, whereas key ฮณ-subunit substitutions reduced the response. Furthermore, multiple sites within the TM2 domain of the ฮณ-subunit were required to confer high amiloride potency. In summary, we have identified novel pore-lining residues of the ฮณ-subunit of ENaC that are important for proper channel gating and its interaction with amiloride.