Molecular Analysis of ATP-sensitive K Channel Gating and Implications for Channel Inhibition by ATP
Open Access
- 1 September 1998
- journal article
- Published by Rockefeller University Press in The Journal of general physiology
- Vol. 112 (3), 333-349
- https://doi.org/10.1085/jgp.112.3.333
Abstract
The beta cell KATP channel is an octameric complex of four pore-forming subunits (Kir6.2) and four regulatory subunits (SUR1). A truncated isoform of Kir6.2 (Kir6.2DeltaC26), which expresses independently of SUR1, shows intrinsic ATP sensitivity, suggesting that this subunit is primarily responsible for mediating ATP inhibition. We show here that mutation of C166, which lies at the cytosolic end of the second transmembrane domain, to serine (C166S) increases the open probability of Kir6.2DeltaC26 approximately sevenfold by reducing the time the channel spends in a long closed state. Rundown of channel activity is also decreased. Kir6.2DeltaC26 containing the C166S mutation shows a markedly reduced ATP sensitivity: the Ki is reduced from 175 microM to 2.8 mM. Substitution of threonine, alanine, methionine, or phenylalanine at position C166 also reduced the channel sensitivity to ATP and simultaneously increased the open probability. Thus, ATP does not act as an open channel blocker. The inhibitory effects of tolbutamide are reduced in channels composed of SUR1 and Kir6.2 carrying the C166S mutation. Our results are consistent with the idea that C166 plays a role in the intrinsic gating of the channel, possibly by influencing a gate located at the intracellular end of the pore. Kinetic analysis suggests that the apparent decrease in ATP sensitivity, and the changes in other properties, observed when C166 is mutated is largely a consequence of the impaired transition from the open to the long closed state.Keywords
This publication has 34 references indexed in Scilit:
- MgATP activates the β cell K ATP channel by interaction with its SUR1 subunitProceedings of the National Academy of Sciences, 1998
- Regulation of KATP Channel Activity by Diazoxide and MgADPThe Journal of general physiology, 1997
- Truncation of Kir6.2 produces ATP-sensitive K+ channels in the absence of the sulphonylurea receptorNature, 1997
- Adenosine Diphosphate as an Intracellular Regulator of Insulin SecretionScience, 1996
- A Family of Sulfonylurea Receptors Determines the Pharmacological Properties of ATP-Sensitive K+ ChannelsNeuron, 1996
- Cloning and functional expression of the cDNA encoding a novel ATP‐sensitive potassium channel subunit expressed in pancreatic β‐cells, brain, heart and skeletal muscleFEBS Letters, 1995
- Reconstitution of I KATP : An Inward Rectifier Subunit Plus the Sulfonylurea ReceptorScience, 1995
- Potassium channel block by cytoplasmic polyamines as the mechanism of intrinsic rectificationNature, 1994
- Protein phosphorylation is required for diazoxide to open ATP‐sensitive potassium channels in insulin (RINm5F) secreting cellsFEBS Letters, 1989
- A simple method for displaying the hydropathic character of a proteinJournal of Molecular Biology, 1982