Korean J Physiol Pharmacol.  2003 Jun;7(3):131-142.

Intrinsic Gating in Inward Rectifier Potassium Channels (Kir2.1) with Low Polyamine Affinity Generated by Site Directed Mutagenesis

Affiliations
  • 1Department of Biological Sciences, University of Warwick, Coventry CV4 7AL, UK. pstanfield@bio.warwick. ac.uk
  • 2Ion Channel Group, Department of Cell Physiology and Pharmacology, University of Leicester, PO Box 138, Leicester LE1 9HN, UK.
  • 3Department of Physiology and Biophysics, Seoul National University College of Medicine, 28 Yeongeon-dong, Jongno-gu, Seoul 110-799, Korea.
  • 4Department of Life Science, Kwangju Institute of Science and Technology, Gwangju 500-712, Korea.

Abstract

We have studied mutant forms of Kir2.1 in which an aspartate residue (D172), important for gating by intracellular polyamines, is replaced by one of three basic residues (Arg, Lys or His). Such channels are highly selective for K+, but show inward rectification that is a shallow function of voltage compared with that found in wild type. This inward rectification occurs with a reduced affinity for spermine and persists in the absence of polyamines. Though the unitary current-voltage relation shows some inward rectification, it is insufficient to account for that seen under whole cell recording. Channels open and shut under single channel recording, and changes of P (open) appear to generate inward rectification. In D172H, the reduction in affinity for spermine is greater when His is protonated at low pHi. The effective valency for spermine is reduced from 3.09+/-0.07 in wild type to 1.95+/-0.09 in D172H at pHi 6.3. In the presence of dual mutants of Kir2.1, where E224 is also replaced, spermine affinity becomes undetectable. However, channels still show inward rectification and open and shut under hyper- and depolarisation, respectively. We suggest that Kir2.1 channel are able to undergo conformation changes; these changes may be important physiologically in generating inward rectification, the normal parameters of which are set by the binding of polyamines such as spermine.

Keyword

Potassium channel; Channel gating; Site-directed mutagenesis

MeSH Terms

Aspartic Acid
Mutagenesis, Site-Directed*
Patch-Clamp Techniques
Polyamines
Potassium Channels
Potassium Channels, Inwardly Rectifying*
Protons
Spermine
Aspartic Acid
Polyamines
Potassium Channels
Potassium Channels, Inwardly Rectifying
Protons
Spermine
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