Membrane insertion of a potassium-channel voltage sensor
- PMID: 15681341
- DOI: 10.1126/science.1109176
Membrane insertion of a potassium-channel voltage sensor
Erratum in
- Science. 2005 Jun 17;308(5729):1743
Abstract
The mechanism of voltage gating in K+ channels is controversial. The paddle model posits that highly charged voltage-sensor domains move relatively freely across the lipid bilayer in response to membrane depolarization; competing models picture the charged S4 voltage-sensor helix as being shielded from lipid contact by other parts of the protein. We measured the apparent free energy of membrane insertion of a K+-channel S4 helix into the endoplasmic reticulum membrane and conclude that S4 is poised very near the threshold of efficient bilayer insertion. Our results suggest that the paddle model is not inconsistent with the high charge content of S4.
Comment in
-
Structural biology. Membrane protein insertion and stability.Science. 2005 Mar 4;307(5714):1425-6. doi: 10.1126/science.1110525. Science. 2005. PMID: 15746418 No abstract available.
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