The role of Zn2+ in Shal voltage-gated potassium channel formation.
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Mutation of histidine 105 in the T1 domain of the potassium channel Kv2.1 disrupts heteromerization with Kv6.3 and Kv6.4Kinesin I transports tetramerized Kv3 channels through the axon initial segment via direct bindingZn2+ activates large conductance Ca2+-activated K+ channel via an intracellular domain.Functional rescue of Kv4.3 channel tetramerization mutants by KChIP4a.Zn2+-dependent redox switch in the intracellular T1-T1 interface of a Kv channelFunctionally active t1-t1 interfaces revealed by the accessibility of intracellular thiolate groups in kv4 channelsFunctional stoichiometry underlying KChIP regulation of Kv4.2 functional expressionThe neuronal Kv4 channel complex.G protein-coupled receptor kinase 2-mediated phosphorylation of downstream regulatory element antagonist modulator regulates membrane trafficking of Kv4.2 potassium channel.KChIP3 rescues the functional expression of Shal channel tetramerization mutants.
P2860
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P2860
The role of Zn2+ in Shal voltage-gated potassium channel formation.
description
2003 nî lūn-bûn
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2003年の論文
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2003年学术文章
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2003年学术文章
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name
The role of Zn2+ in Shal voltage-gated potassium channel formation.
@en
The role of Zn2+ in Shal voltage-gated potassium channel formation.
@nl
type
label
The role of Zn2+ in Shal voltage-gated potassium channel formation.
@en
The role of Zn2+ in Shal voltage-gated potassium channel formation.
@nl
prefLabel
The role of Zn2+ in Shal voltage-gated potassium channel formation.
@en
The role of Zn2+ in Shal voltage-gated potassium channel formation.
@nl
P2093
P2860
P356
P1476
The role of Zn2+ in Shal voltage-gated potassium channel formation.
@en
P2093
Candace Strang
David DeRubeis
David Peterson
Kumud Kunjilwar
Paul J Pfaffinger
P2860
P304
31361-31371
P356
10.1074/JBC.M304268200
P407
P577
2003-05-15T00:00:00Z