Catalysis of the transmembrane transfer of a potassium ion by an inwardly-rectifying voltage-gated channel, where the inward rectification is due to a voltage-dependent block of the channel pore by a G protein. An inwardly rectifying current-voltage relation is one where at any given driving force the inward flow of K+ ions exceeds the outward flow for the opposite driving force.
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Catalysis of the transmembrane transfer of a potassium ion by an inwardly-rectifying voltage-gated channel, where the inward rectification is due to a voltage-dependent block of the channel pore by a G protein. An inwardly rectifying current-voltage relation is one where at any given driving force the inward flow of K+ ions exceeds the outward flow for the opposite driving force.
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G protein activated inward rectifier potassium channel activity,
G protein enhanced inward rectifier potassium channel activity,
G-protein activated inward rectifier potassium channel activity,
G-protein enhanced inward rectifier potassium channel activity,
G-protein-activated inward rectifier potassium channel activity,
G-protein-enhanced inward rectifier potassium channel activity
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