Nox1 upregulates the function of vascular T-type calcium channels following chronic nitric oxide deficit
dc.contributor.author | Howitt, Lauren | |
dc.contributor.author | Matthaei, Klaus | |
dc.contributor.author | Hill, Caryl | |
dc.contributor.author | Drummond, Grant | |
dc.date.accessioned | 2015-12-07T22:51:00Z | |
dc.date.issued | 2014 | |
dc.date.updated | 2015-12-07T12:23:18Z | |
dc.description.abstract | Cardiovascular disease is characterised by reduced nitric oxide bioavailability resulting from oxidative stress. Our previous studies have shown that nitric oxide deficit per se increases the contribution of T-type calcium channels to vascular tone through increased superoxide from NADPH oxidase (Nox). The aim of the present study was therefore to identify the Nox isoform responsible for modulating T-type channel function, as T-type channels are implicated in several pathophysiological conditions involving oxidative stress. We evaluated T-channel function in skeletal muscle arterioles in vivo, using a novel T-channel blocker, TTA-A2 (3 μmol/L), which demonstrated no cross reactivity with L-type channels. Wild-type and Nox2 knockout (Nox2ko) mice were treated with the nitric oxide synthase inhibitor L-NAME (40 mg/kg/day) for 2 weeks. L-NAME treatment significantly increased systolic blood pressure and the contribution of T-type calcium channels to arteriolar tone in wild-type mice, and this was not prevented by Nox2 deletion. In Nox2ko mice, pharmacological inhibition of Nox1 (10 μmol/L ML171), Nox4 (10 μmol/L VAS2870) and Nox4-derived hydrogen peroxide (500 U/mL catalase) significantly reduced the effect of chronic nitric oxide inhibition on T-type channel function. In contrast, in wild-type mice, ML171 and VAS2870, but not catalase, reduced the contribution of T-type channels to vascular tone, suggesting a role for Nox1 and non-selective actions of VAS2870. We conclude that Nox1, but not Nox2 or Nox4, is responsible for the upregulation of T-type calcium channels elicited by chronic nitric oxide deficit. These data point to an important role for this isoform in increasing T-type channel function during oxidative stress. | |
dc.identifier.issn | 0031-6768 | |
dc.identifier.uri | http://hdl.handle.net/1885/27258 | |
dc.publisher | Springer | |
dc.source | Pflugers Archives European Journal of Physiology | |
dc.title | Nox1 upregulates the function of vascular T-type calcium channels following chronic nitric oxide deficit | |
dc.type | Journal article | |
local.bibliographicCitation.issue | 2014 | |
local.bibliographicCitation.lastpage | 9 | |
local.bibliographicCitation.startpage | 1 | |
local.contributor.affiliation | Howitt, Lauren, College of Medicine, Biology and Environment, ANU | |
local.contributor.affiliation | Matthaei, Klaus, College of Medicine, Biology and Environment, ANU | |
local.contributor.affiliation | Hill, Caryl, College of Medicine, Biology and Environment, ANU | |
local.contributor.affiliation | Drummond, Grant, Monash University | |
local.contributor.authoruid | Howitt, Lauren, u5087200 | |
local.contributor.authoruid | Matthaei, Klaus, u8200697 | |
local.contributor.authoruid | Hill, Caryl, u8200545 | |
local.description.embargo | 2037-12-31 | |
local.description.notes | Imported from ARIES | |
local.identifier.absfor | 111603 - Systems Physiology | |
local.identifier.absfor | 111501 - Basic Pharmacology | |
local.identifier.ariespublication | u3526593xPUB50 | |
local.identifier.citationvolume | Online early version | |
local.identifier.doi | 10.1007/s00424-014-1548-5 | |
local.identifier.scopusID | 2-s2.0-84902030680 | |
local.type.status | Published Version |
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