Intracellular spermine confers rectification on rat calcium‐permeable AMPA and kainate receptors.
- 15 July 1995
- journal article
- Published by Wiley in The Journal of Physiology
- Vol. 486 (2) , 297-303
- https://doi.org/10.1113/jphysiol.1995.sp020812
Abstract
1. Whole-cell recordings were made from cerebellar granule cells cultured in high-K+ medium to induce expression of Ca(2+)-permeable AMPA receptors. Current-voltage (I-V) plots of agonist-evoked responses showed varying degrees of inward rectification, but became linear within 5-10 min. 2. Recombinant Ca(2+)-permeable kainate receptors, composed of GluR6(Q)/KA-2 subunits, exhibited rectifying whole-cell I-V plots that became linear in outside-out patches. 3. Loss of rectification in granule cells was prevented by including 100 microM spermine in the pipette; the degree of rectification was then correlated with Ca2+ permeability. 4. Spermine also prevented loss of rectification in patches containing GluR6(Q)/KA-2 receptors (IC50, 1.7 microM). 5. We suggest that spermine, or a similar cellular constituent, may act as a cytoplasmic factor conferring inward rectification on Ca(2+)-permeable non-NMDA receptors, and that 'washout' of this factor underlies the observed loss of rectification.Keywords
This publication has 18 references indexed in Scilit:
- Unraveling the modular design of glutamate-gated ion channelsTrends in Neurosciences, 1995
- Strong voltage-dependent inward rectification of inward rectifier K+ channels is caused by intracellular spermineCell, 1995
- Potassium channel block by cytoplasmic polyamines as the mechanism of intrinsic rectificationNature, 1994
- Rectification Properties and Ca2+ Permeability of Glutamate Receptor Channels in Hippocampal CellsEuropean Journal of Neuroscience, 1994
- Differences in Ca2+ permeability of AMPA-type glutamate receptor channels in neocortical neurons caused by differential GluR-B subunit expressionNeuron, 1994
- Subunit composition at the single-cell level explains functional properties of a glutamate-gated channelNeuron, 1994
- Growth Conditions Differentially Regulate the Expression of α‐Amino‐3‐Hydroxy‐5‐Methylisoxazole‐4‐Propionate (AMPA) Receptor Subunits in Cultured NeuronsJournal of Neurochemistry, 1993
- RNA editing in brain controls a determinant of ion flow in glutamate-gated channelsCell, 1991
- Permeation of Calcium Ions Through Non-NMDA Glutamate Channels in Retinal Bipolar CellsScience, 1991
- The polyamines in the central nervous systemBiochemical Pharmacology, 1979