A structural motif in the C-terminal tail of slo1 confers carbon monoxide sensitivity to human BK Ca channels
about
The RCK1 high-affinity Ca2+ sensor confers carbon monoxide sensitivity to Slo1 BK channelsBK channels: multiple sensors, one activation gateThe haptoglobin-CD163-heme oxygenase-1 pathway for hemoglobin scavengingA BK (Slo1) channel journey from molecule to physiology.Big Potassium (BK) ion channels in biology, disease and possible targets for cancer immunotherapy.Carbon monoxide--physiology, detection and controlled release.Cysteine residue 911 in C-terminal tail of human BK(Ca)α channel subunit is crucial for its activation by carbon monoxide.The carbon monoxide donor, CORM-2, is an antagonist of ATP-gated, human P2X4 receptors.Carbon monoxide: an emerging regulator of ion channels.Therapeutic potential of heme oxygenase-1/carbon monoxide in lung disease.Functional Interactions between BKCaα-Subunit and Annexin A5: Implications in Apoptosis.Modulation of BKCa channel gating by endogenous signaling molecules.CO metabolism, sensing, and signaling.Heme sensor proteins.Diverse mechanisms underlying the regulation of ion channels by carbon monoxide.Carbon monoxide: A new player in the redox regulation of connexin hemichannels.Mechanistic insight into the heme-independent interplay between iron and carbon monoxide in CFTR and Slo1 BKCa channels.A re-investigation of [Fe(L-cysteinate)2(CO)2]2-: an example of non-heme CO coordination of possible relevance to CO binding to ion channel receptors.Carbon monoxide is a rapid modulator of recombinant and native P2X(2) ligand-gated ion channels.Carbon Monoxide Modulates Connexin Function through a Lipid Peroxidation-Dependent Process: A Hypothesis.Acute oxygen-sensing by the carotid body: a rattlebag of molecular mechanisms.Carbon Monoxide in Lung Cell Physiology and Disease.CO-independent modification of K+ channels by tricarbonyldichlororuthenium(II) dimer (CORM-2).Is Carotid Body Physiological O2 Sensitivity Determined by a Unique Mitochondrial Phenotype?
P2860
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P2860
A structural motif in the C-terminal tail of slo1 confers carbon monoxide sensitivity to human BK Ca channels
description
2008 nî lūn-bûn
@nan
2008 թուականի Յունիսին հրատարակուած գիտական յօդուած
@hyw
2008 թվականի հունիսին հրատարակված գիտական հոդված
@hy
2008年の論文
@ja
2008年論文
@yue
2008年論文
@zh-hant
2008年論文
@zh-hk
2008年論文
@zh-mo
2008年論文
@zh-tw
2008年论文
@wuu
name
A structural motif in the C-te ...... tivity to human BK Ca channels
@ast
A structural motif in the C-te ...... tivity to human BK Ca channels
@en
A structural motif in the C-te ...... tivity to human BK Ca channels
@en-gb
A structural motif in the C-te ...... tivity to human BK Ca channels
@nl
type
label
A structural motif in the C-te ...... tivity to human BK Ca channels
@ast
A structural motif in the C-te ...... tivity to human BK Ca channels
@en
A structural motif in the C-te ...... tivity to human BK Ca channels
@en-gb
A structural motif in the C-te ...... tivity to human BK Ca channels
@nl
prefLabel
A structural motif in the C-te ...... tivity to human BK Ca channels
@ast
A structural motif in the C-te ...... tivity to human BK Ca channels
@en
A structural motif in the C-te ...... tivity to human BK Ca channels
@en-gb
A structural motif in the C-te ...... tivity to human BK Ca channels
@nl
P2093
P921
P3181
P1433
P1476
A structural motif in the C-te ...... tivity to human BK Ca channels
@en
P2093
Carsten T Müller
Daniela Riccardi
Nian Baban
Paul J Kemp
Sandile E Williams
Stephen P Brazier
Vsevolod Telezhkin
P2888
P304
P3181
P356
10.1007/S00424-007-0439-4
P407
P577
2008-06-01T00:00:00Z
P6179
1019154451