The Role of the Putative Inactivation Lid in Sodium Channel Gating Current Immobilization
Open Access
- 1 May 2000
- journal article
- Published by Rockefeller University Press in The Journal of general physiology
- Vol. 115 (5) , 609-620
- https://doi.org/10.1085/jgp.115.5.609
Abstract
We investigated the contribution of the putative inactivation lid in voltage-gated sodium channels to gating charge immobilization (i.e., the slow return of gating charge during repolarization) by studying a lid-modified mutant of the human heart sodium channel (hH1a) that had the phenylalanine at position 1485 in the isoleucine, phenylalanine, and methionine (IFM) region of the domain III–IV linker mutated to a cysteine (ICM-hH1a). Residual fast inactivation of ICM-hH1a in fused tsA201 cells was abolished by intracellular perfusion with 2.5 mM 2-(trimethylammonium)ethyl methanethiosulfonate (MTSET). The time constants of gating current relaxations in response to step depolarizations and gating charge–voltage relationships were not different between wild-type hH1a and ICM-hH1aMTSET. The time constant of the development of charge immobilization assayed at −180 mV after depolarization to 0 mV was similar to the time constant of inactivation of INa at 0 mV for hH1a. By 44 ms, 53% of the gating charge during repolarization returned slowly; i.e., became immobilized. In ICM-hH1aMTSET, immobilization occurred with a similar time course, although only 31% of gating charge upon repolarization (OFF charge) immobilized. After modification of hH1a and ICM-hH1aMTSET with Anthopleurin-A toxin, a site-3 peptide toxin that inhibits movement of the domain IV-S4, charge immobilization did not occur for conditioning durations up to 44 ms. OFF charge for both hH1a and ICM-hH1aMTSET modified with Anthopleurin-A toxin were similar in time course and in magnitude to the fast component of OFF charge in ICM-hH1aMTSET in control. We conclude that movement of domain IV-S4 is the rate-limiting step during repolarization, and it contributes to charge immobilization regardless of whether the inactivation lid is bound. Taken together with previous reports, these data also suggest that S4 in domain III contributes to charge immobilization only after binding of the inactivation lid.Keywords
This publication has 42 references indexed in Scilit:
- Restoration of Fast Inactivation in an Inactivation-Defective Human Heart Sodium Channel by the Cysteine Modifying Reagent Benzyl-MTS: Analysis of IFM-ICM MutationBiochemical and Biophysical Research Communications, 1997
- Movement of the Na+ Channel Inactivation Gate during InactivationPublished by Elsevier ,1996
- Modification of inactivation in cardiac sodium channels: ionic current studies with Anthopleurin-A toxin.The Journal of general physiology, 1995
- Multiple Cationic Residues of Anthopleurin B That Determine High Affinity and Channel Isoform DiscriminationBiochemistry, 1995
- Evidence for voltage-dependent S4 movement in sodium channelsNeuron, 1995
- Sodium channel mutations in paramyotonia congenita uncouple inactivation from activationNeuron, 1994
- Gating currents associated with Na channels in canine cardiac Purkinje cells.The Journal of general physiology, 1990
- Site-directed mutagenesis by overlap extension using the polymerase chain reactionGene, 1989
- Comparison of the effects of Anemonia toxin II on sodium and gating currents in frog myelinated nerveBiochimica et Biophysica Acta (BBA) - Biomembranes, 1985
- Fractionation of the asymmetry current in the squid giant axon into inactivating and non-inactivating componentsProceedings of the Royal Society of London. B. Biological Sciences, 1982