A difference in inward rectification and polyamine block and permeation between the Kir2.1 and Kir3.1/Kir3.4 K+ channels

Samy M Y Makary, Tom W. Claydon, Decha Enkvetchakul, Colin G. Nichols, Mark R. Boyett

    Research output: Contribution to journalArticlepeer-review

    Abstract

    Inward rectification is caused by voltage-dependent block of the channel pore by intracellular Mg2+ and polyamines such as spermine. In the present study, we compared inward rectification in the Kir3.1/Kir3.4 channel, which underlies the cardiac current IK,ACh, and the Kir2.1 channel, which underlies the cardiac current IK,1. Sustained outward current at potentials positive to the K+ reversal potential was observed through Kir3.1/Kir3.4, but not Kir2.1, demonstrating that Kir3.1/Kir3.4 exhibits weaker inward rectification than Kir2.1. We show that Kir3.1/Kir3.4 is more sensitive to extracellular spermine block than Kir2.1, and that intracellular and extracellular polyamines can permeate Kir3.1/Kir3.4, but not Kir2.1, to a limited extent. We describe a simple kinetic model in which polyamines act as permeant blockers of Kir3.1/Kir3.4, but as relatively impermeant blockers of Kir2.1. The model shows the difference in sensitivity to extracellular spermine block, as well as the difference in the extent of inward rectification between the two channels. This suggests that Kir3.1/Kir3.4 exhibits weaker inward rectification than Kir2.1 because of the difference in the balance of polyamine block and permeation of the two channels. © The Physiological Society 2005.
    Original languageEnglish
    Pages (from-to)749-766
    Number of pages17
    JournalJournal of Physiology
    Volume568
    Issue number3
    DOIs
    Publication statusPublished - 1 Nov 2005

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