Expression and function of native potassium channel (KVα1) subunits in terminal arterioles of rabbit
- 1 August 2001
- journal article
- Published by Wiley in The Journal of Physiology
- Vol. 534 (3) , 691-700
- https://doi.org/10.1111/j.1469-7793.2001.00691.x
Abstract
1. In this study we investigated the expression and function of the K(V)alpha1 subfamily of voltage-gated K(+) channels in terminal arterioles from rabbit cerebral circulation. 2. K(+) current was measured from smooth muscle cells within intact freshly isolated arteriolar fragments. Current activated on depolarisation positive of about -45 mV and a large fraction of this current was blocked by 3,4-diaminopyridine (3,4-DAP) or 4-aminopyridine (4-AP), inhibitors of K(V) channels. Expression of cRNA encoding K(V)1.6 in Xenopus oocytes also generated a 4-AP-sensitive K(+) current with a threshold for activation near -45 mV. 3. Immunofluorescence labelling revealed K(V)1.2 to be specifically localised to endothelial cells, and K(V)1.5 and K(V)1.6 to plasma membranes of smooth muscle cells. 4. K(V) channel current in arteriolar fragments was blocked by correolide (which is specific for the K(V)alpha1 family of K(V) channels) but was resistant to recombinant agitoxin-2 (rAgTX2; which inhibits K(V)1.6 but not K(V)1.5). Heterologously expressed K(V)2.1 was resistant to correolide, and K(V)1.6 was blocked by rAgTX2. 5. Arterioles that were mildly preconstricted and depolarised by 0.1-0.3 nM endothelin-1 constricted further in response to 3,4-DAP, 4-AP or correolide, but not to rAgTX2. 6. We suggest that K(V)alpha1 channels are expressed in smooth muscle cells of terminal arterioles, underlie a major part of the voltage-dependent K(+) current, and have a physiological function to oppose vasoconstriction. K(V)alpha1 complexes without K(V)1.5 appear to be uncommon.Keywords
This publication has 45 references indexed in Scilit:
- Selective Effects of Subarachnoid Hemorrhage on Cerebral Vascular Responses to 4-Aminopyridine in RatsStroke, 2000
- Role of Voltage-Dependent and Ca2+-Activated K+ Channels on the Regulation of Isometric Force in Porcine Coronary ArteryJournal of Vascular Research, 2000
- A unified nomenclature for short-chain peptides isolated from scorpion venoms: α-KTx molecular subfamiliesTrends in Pharmacological Sciences, 1999
- Endothelial Cells Freshly Isolated from Resistance-Sized Pulmonary Arteries Possess a Unique K+ Current ProfileBiochemical and Biophysical Research Communications, 1999
- Positive and negative coupling of the endothelin ETA receptor to Ca2+‐permeable channels in rabbit cerebral cortex arteriolesThe Journal of Physiology, 1999
- Control of Vascular Tone by Endogenous Endothelin-1 in Human Pial ArteriesStroke, 1998
- ION CHANNELS IN VASCULAR ENDOTHELIUMAnnual Review of Physiology, 1997
- Reduction of glial proliferation by K+ channel blockers is mediated by changes in pHiNeuroReport, 1994
- Purification and Characterization of Three Inhibitors of Voltage-Dependent K+ Channels from Leiurus Quinquestriatus var. Hebraeus VenomBiochemistry, 1994
- Regulation of Arterial Tone by Activation of Calcium-Dependent Potassium ChannelsScience, 1992