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- W52825813 abstract "Ion channels are integral membrane proteins that form aqueous pores, which span the lipid bilayer moiety of biological membranes and provide for highly selective transfer of ions across the membrane. Ion transfer through the pore can occur at very high rates, and it is possible to use electrophysiological measuring techniques to record the function of single channels in real time. Ion channels are therefore useful for examining many aspects of macromolecular dynamics. The control of channel function is due to transitions between different channel states (conformations). The distribution between these states is determined by the channel’s intrinsic characteristics and by its interactions with the (membrane) environment, neither of which are well understood. We show, using the well-characterized gramicidin A channel as an example, that membrane control of channel function can be rationalized by considering the energetics of channel-bilayer interactions.KeywordsLipid BilayerMembrane FluidityIntegral Membrane ProteinChannel FunctionIntrinsic CurvatureThese keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves." @default.
- W52825813 created "2016-06-24" @default.
- W52825813 creator A5029963830 @default.
- W52825813 creator A5031193521 @default.
- W52825813 creator A5041776338 @default.
- W52825813 date "1995-01-01" @default.
- W52825813 modified "2023-09-25" @default.
- W52825813 title "Channel Function and Channel-Lipid Bilayer Interactions" @default.
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