A glutamate residue at the C terminus regulates activity of inward rectifier K + channels: Implication for Andersen's syndrome
- 28 May 2002
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 99 (12) , 8430-8435
- https://doi.org/10.1073/pnas.122682899
Abstract
G protein-coupled inward rectifiers (GIRKs) are activated directly by G protein βγ subunits, whereas classical inward rectifiers (IRKs) are constitutively active. We found that a glutamate residue of GIRK2 (E315), located on a hydrophobic domain of the C terminus, is crucial for the channel activation. This glutamate (or aspartate) residue is conserved in all members of the Kir family. Substitution of alanine for the glutamate on GIRK1, GIRK2, and IRK2, expressed in HEK293 cells, greatly reduced the whole-cell currents. The whole-cell current of GIRK channels with a constitutively active gate, GIRK2(V188A), [Yi, B. A., Lin, Y. F., Jan, Y. N. & Jan, L. Y. (2001) Neuron 29, 657–667] was also reduced by the same glutamate mutation. Mean open time and conductance of single channels in GIRK2 and IRK2 were not affected by the mutation, indicating that the reduced whole-cell current resulted from a lowered probability of channel activation. The mutated GIRK and IRK showed normal trafficking to the cell membrane. The mutated GIRK2 retained the ability to interact with G protein βγ subunits, and it showed almost the same inwardly rectifying property as the wild type. The mutated GIRK1 and GIRK2 retained ion selectivity to K+ ions. This glutamate residue corresponds to one of the residues causing Andersen's syndrome [Plaster, N. M., Tawil, R., Tristani-Firouzi, M., Canun, S., Bendahhou, S., Tsunoda, A., Donaldson, M. R., Iannaccone, S. T., Brunt, E., Barohn, R., et al. (2001) Cell 105, 511–519]. Our interpretation is that this region of the glutamate residue is crucial in relaying the activating message from the ligand sensor region to the gate.Keywords
This publication has 26 references indexed in Scilit:
- Coupling Gβγ-Dependent Activation to Channel Opening via Pore Elements in Inwardly Rectifying Potassium ChannelsNeuron, 2001
- Importance of the G protein γ subunit in activating G protein‐coupled inward rectifier K+ channelsFEBS Letters, 1999
- The Structure of the Potassium Channel: Molecular Basis of K + Conduction and SelectivityScience, 1998
- C-terminal Mutation of G Protein β Subunit Affects Differentially Extracellular Signal-regulated Kinase and c-Jun N-terminal Kinase Pathways in Human Embryonal Kidney 293 CellsJournal of Biological Chemistry, 1997
- Mutation of the pancreatic islet inward rectifier Kir6.2 also leads to familial persistent hyperinsulinemic hypoglycemia of infancyHuman Molecular Genetics, 1996
- Genetic heterogeneity of Barter's syndrome revealed by mutations in the K+ channel, ROMKNature Genetics, 1996
- The K+ channel inward rectifier subunits form a channel similar to neuronal G protein‐gated K+ channelFEBS Letters, 1996
- Evidence that direct binding of Gβγ to the GIRK1 G protein-gated inwardly rectifying K+ channel is important for channel activationNeuron, 1995
- Primary structure and functional expression of a mouse inward rectifier potassium channelNature, 1993
- The βγ subunits of GTP-binding proteins activate the muscarinic K+ channel in heartNature, 1987