N-terminal deletions of rKv1.4 channels affect the voltage dependence of channel availability

Citation
G. Hollerer-beitz et al., N-terminal deletions of rKv1.4 channels affect the voltage dependence of channel availability, PFLUG ARCH, 438(2), 1999, pp. 141-146
Citations number
20
Categorie Soggetti
Physiology
Journal title
PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY
ISSN journal
00316768 → ACNP
Volume
438
Issue
2
Year of publication
1999
Pages
141 - 146
Database
ISI
SICI code
0031-6768(199907)438:2<141:NDORCA>2.0.ZU;2-W
Abstract
Rat Kv1.4 potassium channels undergo rapid inactivation, which is mediated by the N-terminal structure of the polypeptide. This inactivation can be re moved by N-terminal deletion of about 20 residues. However, more substantia l deletion (e.g. 37 residues) restores inactivation suggesting a second ina ctivating domain [Kondoh et al. J Biol Chem 272:19333-19338, 1997]. Here we provide evidence that this inactivation shares all properties with N-type inactivation. Pore mutations, which are supposed to affect C-type inactivat ion, have no effect. In addition, the redox regulation of inactivation, whi ch is typical for Kv1.4 channels, can be conferred to the inactivation of t he deleted constructs by incorporation of an N-terminal cysteine residue. T he most remarkable feature of this secondary inactivation is the existence of two components in the steady-state voltage dependence of inactivation. F or mutant rKv1.4 Delta 2-37 about 90% of the channels only activate when th e holding membrane potential is more negative than about -120 mV; the remai ning 10% show the typical threshold at -60 mV. Mutagenesis of the truncated channel affected the relative amplitudes of these two components, but not the voltage dependence. The results suggest that the secondary ball structu res of rKv1.4, channels interact with the protein structures responsible fo r activation.