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Elementary Ca2+ signals through endothelial TRPV4 channels regulate vascular function.

Sonkusare SK, Bonev AD, Ledoux J, Liedtke W, Kotlikoff MI, Heppner TJ, Hill-Eubanks DC, Nelson MT

Science. 2012;336(6081):597-601.

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Abstract

Major features of the transcellular signaling mechanism responsible for endothelium-dependent regulation of vascular smooth muscle tone are unresolved. We identified local calcium (Ca(2+)) signals ("sparklets") in the vascular endothelium of resistance arteries that represent Ca(2+) influx through single TRPV4 cation channels. Gating of individual TRPV4 channels within a four-channel cluster was cooperative, with activation of as few as three channels per cell causing maximal dilation through activation of endothelial cell intermediate (IK)- and small (SK)-conductance, Ca(2+)-sensitive potassium (K(+)) channels. Endothelial-dependent muscarinic receptor signaling also acted largely through TRPV4 sparklet-mediated stimulation of IK and SK channels to promote vasodilation. These results support the concept that Ca(2+) influx through single TRPV4 channels is leveraged by the amplifier effect of cooperative channel gating and the high Ca(2+) sensitivity of IK and SK channels to cause vasodilation.

Bibliographic metadata

Type of resource:
Content type:
Publication status:
Accepted
Publication type:
Publication form:
Published date:
Journal title:
ISSN:
Volume:
336
Issue:
6081
Start page:
597
End page:
601
Pagination:
5
Digital Object Identifier:
10.1126/science.1216283
Attached files embargo period:
Immediate release
Attached files release date:
2nd October, 2014
Access state:
Active

Institutional metadata

University researcher(s):

Record metadata

Manchester eScholar ID:
uk-ac-man-scw:176485
Created by:
Nelson, Mark
Created:
11th October, 2012, 11:16:51
Last modified by:
Nelson, Mark
Last modified:
26th October, 2015, 21:08:37

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