Tyrosine kinases modulate K+ channel gating in mouse Schwann cells
Open Access
- 7 September 1999
- journal article
- Published by Wiley in The Journal of Physiology
- Vol. 519 (2) , 373-384
- https://doi.org/10.1111/j.1469-7793.1999.0373m.x
Abstract
The whole-cell configuration of the patch-clamp technique and immunoprecipitation experiments were used to investigate the effects of tyrosine kinases on voltage-dependent K+ channel gating in cultured mouse Schwann cells. Genistein, a broad-spectrum tyrosine kinase inhibitor, markedly reduced the amplitude of a slowly inactivating delayed-rectifier current (IK) and, to a lesser extent, that of a transient K+ current (IA). Similar results were obtained on IK with another tyrosine kinase inhibitor, herbimycin A. Daidzein, the inactive analogue of genistein, was without effect. Unlike herbimycin A, genistein produced additional effects on IA by profoundly affecting its gating properties. These changes consisted of slower activation kinetics with an increased time to peak, a positive shift in the voltage dependence of activation (by +30 mV), a decrease in the steepness of activation gating (9 mV per e-fold change) and an acceleration of channel deactivation. The steepness of the steady-state inactivation was increased by genistein treatment, while the recovery from inactivation was not significantly altered. The action of genistein on voltage-dependent K+ (Kv) currents was accompanied by a decrease in tyrosine phosphorylation of Kv1.4 as well as Kv1.5 and Kv2.1 encoding transient and slowly inactivating delayed-rectifier K+ channel α subunits, respectively. In conclusion, the present study shows that tyrosine kinases markedly affect the amplitude of voltage-dependent K+ currents in Schwann cells and finely tune the gating properties of the transient K+ current component IA. These modulations may be functionally relevant in the control of K+ channel activity during Schwann cell development and peripheral myelinogenesis.Keywords
This publication has 39 references indexed in Scilit:
- Modulation of human erg K+ channel gating by activation of a G protein‐coupled receptor and protein kinase CThe Journal of Physiology, 1998
- CELLULAR FUNCTIONS REGULATED BY SRC FAMILY KINASESAnnual Review of Cell and Developmental Biology, 1997
- Association of Src Tyrosine Kinase with a Human Potassium Channel Mediated by SH3 DomainScience, 1996
- Tyrosine Kinase Inhibition: An Approach to Drug DevelopmentScience, 1995
- Axon contact is associated with modified expression of functional potassium channels in mouse Schwann cellsProceedings Of The Royal Society B-Biological Sciences, 1994
- Regulation of Shaker K+ channel inactivation gating by the cAMP-dependent protein kinaseNeuron, 1994
- Channel Regulation: Ion channel control by tyrosine phosphorylationCurrent Biology, 1994
- Tyrosine kinase-dependent suppression of a potassium channel by the G protein-coupled m1 muscarinic acetylcholine receptorCell, 1993
- Functions and distribution of voltage‐gated sodium and potassium channels in mammalian schwann cellsGlia, 1991
- Phosphorylation affects voltage gating of the delayed rectifier K+ channel by electrostatic interactionsNeuron, 1990