Determinants of pore folding in potassium channel biogenesis

Many ion channels, both selective and nonselective, have reentrant pore loops that contribute to the architecture of the permeation pathway. It is a fundamental feature of these diverse channels, regardless of whether they are gated by changes of membrane potential or by neurotransmitters, and is cr...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 2014-03, Vol.111 (12), p.4620-4625
Hauptverfasser: Delaney, Erin, Khanna, Pooja, Tu, LiWei, Robinson, John M., Deutsch, Carol
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Sprache:eng
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Zusammenfassung:Many ion channels, both selective and nonselective, have reentrant pore loops that contribute to the architecture of the permeation pathway. It is a fundamental feature of these diverse channels, regardless of whether they are gated by changes of membrane potential or by neurotransmitters, and is critical to function of the channel. Misfolding of the pore loop leads to loss of trafficking and expression of these channels on the cell surface. Mature tetrameric potassium channels contain an α-helix within the pore loop. We systematically mutated the "pore helix" residues of the channel Kv1.3 and assessed the ability of the monomer to fold into a tertiary reentrant loop. Our results show that pore loop residues form a canonical α-helix in the monomer early in biogenesis and that disruption of tertiary folding is caused by hydrophilic substitutions only along one face of this α-helix. These results provide insight into the determinants of the reentrant pore conformation, which is essential for ion channel function.
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.1324274111