The Kv2.1 C Terminus Can Autonomously Transfer Kv2.1-Like Phosphorylation-Dependent Localization, Voltage-Dependent Gating, and Muscarinic Modulation to Diverse Kv Channels
Open Access
- 11 January 2006
- journal article
- research article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 26 (2) , 685-695
- https://doi.org/10.1523/jneurosci.4620-05.2006
Abstract
Modulation of K+channels is widely used to dynamically regulate neuronal membrane excitability. The voltage-gated K+channel Kv2.1 is an abundant delayed rectifier K+(IK) channel expressed at high levels in many types of mammalian central neurons where it regulates diverse aspects of membrane excitability. Neuronal Kv2.1 is constitutively phosphorylated, localized in high-density somatodendritic clusters, and has a relatively depolarized voltage dependence of activation. Here, we show that the clustering and voltage-dependent gating of endogenous Kv2.1 in cultured rat hippocampal neurons are modulated by cholinergic stimulation, a common form of neuromodulation. The properties of neuronal Kv2.1 are recapitulated in recombinant Kv2.1 expressed in human embryonic kidney 293 (HEK293) cells, but not COS-1 cells, because of cell background-specific differences in Kv2.1 phosphorylation. As in neurons, Kv2.1 in HEK293 cells is dynamically regulated by cholinergic stimulation, which leads to Ca2+/calcineurin-dependent dephosphorylation of Kv2.1, dispersion of channel clusters, and hyperpolarizing shifts in the voltage-dependent gating properties of the channel. Immunocytochemical, biochemical, and biophysical analyses of chimeric Kv channels show that the Kv2.1 cytoplasmic C-terminal domain can act as an autonomous domain sufficient to transfer Kv2.1-like clustering, voltage-dependent activation, and cholinergic modulation to diverse Kv channels. These findings provide novel mechanistic insights into cholinergic modulation of ion channels and regulation of the localization and voltage-dependent gating properties of the abundant neuronal Kv2.1 channel by cholinergic and other neuromodulatory stimuli.Keywords
This publication has 48 references indexed in Scilit:
- Calcium- and Metabolic State-Dependent Modulation of the Voltage-Dependent Kv2.1 Channel Regulates Neuronal Excitability in Response to IschemiaJournal of Neuroscience, 2005
- Gating of GIRK ChannelsNeuron, 2003
- Amino-terminal Determinants of U-type Inactivation of Voltage-gated K+ ChannelsJournal of Biological Chemistry, 2002
- Preferential transformation of human neuronal cells by human adenoviruses and the origin of HEK 293 cellsThe FASEB Journal, 2002
- Requirement of the Inositol Trisphosphate Receptor for Activation of Store-Operated Ca 2+ ChannelsScience, 2000
- A characterization of muscarinic receptor‐mediated intracellular Ca2+ mobilization in cultured rat hippocampal neuronesThe Journal of Physiology, 1998
- Tyrosine kinase-dependent suppression of a potassium channel by the G protein-coupled m1 muscarinic acetylcholine receptorCell, 1993
- Expression of Kv2.1 delayed rectifier K+ channel isoforms in the developing rat brainFEBS Letters, 1993
- Cholinergic input uncouples Ca2+ changes from K+ conductance activation and amplifies intradendritic Ca2+ changes in hippocampal neuronsNeuron, 1991
- Characteristics of a Human Cell Line Transformed by DNA from Human Adenovirus Type 5Journal of General Virology, 1977