Functional conversion between A-type and delayed rectifier K+ channels by membrane lipids.
basic_science · Level V
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Abstract
Voltage-gated potassium (Kv) channels control action potential repolarization, interspike membrane potential, and action potential frequency in excitable cells. It is thought that the combinatorial association between distinct alpha and beta subunits determines whether Kv channels function as non-inactivating delayed rectifiers or as rapidly inactivating A-type channels. We show that membrane lipids can convert A-type channels into delayed rectifiers and vice versa. Phosphoinositides remove N-type inactivation from A-type channels by immobilizing the inactivation domains. Conversely, arachidonic acid and its amide anandamide endow delayed rectifiers with rapid voltage-dependent inactivation. The bidirectional control of Kv channel gating by lipids may provide a mechanism for the dynamic regulation of electrical signaling in the nervous system.
Medical subject headings
- Arachidonic Acids
- Eicosanoic Acids
- Membrane Lipids
- Phosphatidylinositol 4,5-Diphosphate
- Potassium Channels
- Potassium Channels, Voltage-Gated