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Gamma subunit second transmembrane domain contributes to epithelial sodium channel gating and amiloride block.

American journal of physiology. Renal physiology (2013-10-11)
Shujie Shi, Thomas R Kleyman
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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.

MATERIALS
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USP
Amiloride hydrochloride, United States Pharmacopeia (USP) Reference Standard