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PMID: 17416212 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Review

TASK-like potassium channels and oxygen sensing in the carotid body.

Respiratory physiology & neurobiology ·Vol. 157 ·No. 1 ·2007-07-01 ·Pages 55-64

Buckler KJ

Abstract

Chemosensing by type-1 cells of the carotid body involves a series of events which culminate in the calcium-dependent secretion of neurotransmitter substances which then excite afferent nerves. This response is mediated via membrane depolarisation and voltage-gated calcium entry. Studies utilising isolated cells indicates that the membrane depolarisation in response to hypoxia, and acidosis, appears to be primarily mediated via the inhibition of a background K(+)-current. The pharmacological and biophysical characteristics of these channels suggest that they are probably closely related to the TASK subfamily of tandem-P-domain K(+)-channels. Indeed they show greatest similarity to TASK-1 and -3. In addition to being sensitive to hypoxia and acidosis, the background K(+)-channels of the type-1 cell are also remarkably sensitive to inhibition of mitochondrial energy metabolism. Metabolic poisons are known potent stimulants of the carotid body and cause membrane depolarisation of type-1 cells. In the presence of metabolic inhibitors hypoxic sensitivity is lost suggesting that oxygen sensing may itself be mediated via depression of mitochondrial energy production. Thus these TASK-like background channels play a central role in mediating the chemotransduction of several different stimuli within the type-1 cell. The mechanisms by which metabolic/oxygen sensitivity might be conferred upon these channels are briefly discussed.

MeSH Terms
Animals Carotid Body/physiology Chemoreceptor Cells/physiology Humans Mechanotransduction, Cellular/physiology Mitochondria/metabolism Nerve Tissue Proteins/metabolism Potassium Channels, Tandem Pore Domain/metabolism
Chemicals
Nerve Tissue Proteins Potassium Channels, Tandem Pore Domain potassium channel subfamily K member 3
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Buckler Keith J
Department of Physiology Anatomy and Genetics, Sherrington Building, Parks Road, Oxford, UK. keith.buckler@dpag.ox.ac.uk
Article Info
Journal
Respiratory physiology & neurobiology
Abbr.
Respir Physiol Neurobiol
ISSN
1569-9048
Published
2007-07-01
Epub
2007-00-20
Pages
55-64
Language
English
Region
Netherlands
NLM ID
101140022
Subset
IM
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