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1 2+ channel and is not accessible to the slow delayed rectifier K+ channel.
2 on of Ca2+- and voltage-gated K+ channels or delayed rectifier K+ channels.
3 istinct localization of L-type Ca2+ and slow delayed rectifier K+ channels.
4 brane current-induced thermal damages in the delayed rectifier K+ channels.
5 , in part, to activation of 4-AP-sensitive, 'delayed rectifier' K+ channels.
6          Sustained-regular cells show mainly delayed rectifier K(+) channels.
7 and right atrial myocytes and the density of delayed rectifier K+ channel alpha-subunit proteins (Kv1
8                       Activation of specific delayed rectifier K+ channels can therefore suppress sti
9                                          For delayed rectifier K(+) channels, consideration of the me
10 -cAMP (300 microM), which increased the slow delayed rectifier K+ channel current (IK,s) density to a
11 lpha and PTPepsilon modulate the activity of delayed-rectifier K(+) channels (I(K)).
12                       The rapidly activating delayed rectifier K(+) channel (IKr) is encoded by the h
13 ming alpha-subunit of the rapidly activating delayed rectifier K(+) channel in the heart, which plays
14 roduct forms the pore-forming subunit of the delayed rectifier K(+) channel in the heart.
15 nel gene, we show that this gene encodes the delayed rectifier K(+) channels in Drosophila.
16 demonstrate that Kv1-family (Shaker-related) delayed rectifier K(+) channels in the central medial th
17 apidly (I(Kr)) and slowly (I(Ks)) activating delayed rectifier K(+) channels in the heart.
18  effects of Ang II on the activity of single delayed rectifier K+ channels in cell-attached membrane
19 assium channels, which typically behave like delayed rectifier K+ channels in other species.
20 plicate previously uncharacterized beta-cell delayed rectifier K+ channels in the regulation of membr
21  (human ether-a-go-go-related gene), a human delayed rectifier K+ channel, in Xenopus oocytes.
22 ion was selectively sensitive to blockers of delayed-rectifier K channels (K(DR)).
23 g the first transmembrane segment of the rat delayed rectifier K+ channel Kv1.1 (Kv1.1N206Tag) coasse
24 histamine loratadine on a rapidly activating delayed-rectifier K+ channel (Kv1.5) cloned from human h
25 rom HEK293 cells stably transfected with the delayed rectifier K(+) channel Kv2.1, long depolarizatio
26 that the voltage-dependent activation of the delayed-rectifier K+ channel Kv2.1 can be modulated by d
27                                              Delayed rectifier K(+) channels may mediate the PYK2 act
28                            Voltage-dependent delayed rectifier K+ channels regulate aspects of both s
29 e editing of mRNAs that encode the classical delayed rectifier K+ channel (SqK(v)1.1A) in the squid g
30 tion of mRNA identified transcripts encoding delayed rectifier K+ channel subunits Kv1.6, Kv4.1, Kv4.
31               The sensitivity of murine slow delayed rectifier K+ channels to cAMP was tested by both
32 (human ether-a-go-go-related gene) encodes a delayed rectifier K+ channel vital to normal repolarizat
33              In contrast, we found that slow delayed rectifier K+ channels were not changed significa
34 roliferating O-2A cells expressed functional delayed rectifier K+ channels, which were absent in pro-

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