Activation of the cloned muscarinic potassium channel by G protein βγ subunits
ACETYLCHOLINE released during parasv mpathetic stimulation of the vagal nerve slows the heart rate through the activation of muscarinic receptors and subsequent opening of an inwardly rectifying potassium channel 1 . The activation of these muscarinic potassium channels is mediated by a pertussis to...
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Veröffentlicht in: | Nature (London) 1994-07, Vol.370 (6485), p.143-146 |
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Sprache: | eng |
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Zusammenfassung: | ACETYLCHOLINE released during parasv mpathetic stimulation of the vagal nerve slows the heart rate through the activation of muscarinic receptors and subsequent opening of an inwardly rectifying potassium channel
1
. The activation of these muscarinic potassium channels is mediated by a pertussis toxin-sensitive heterotrimeric GTP-binding protein (G protein)
2,3
. It has not been resolved whether exogenously applied G
α
4,5
or G
βγ
6,7
, or both, activate the channel. Using a heterologous expression system, we have tested the ability of different G protein subunits to activate the cloned muscarinic potassium channel, GIRK1
8,9
. We report here that coexpression of GIRK1 with G
βγ
but not G
αβγ
in
Xenopus
oocytes results in channel activity that persists in the absence of cytoplasmic GTP. This activity is reduced by fusion proteins of the (β-adrenergic receptor kinase and of recombinant G
αi
–GDP, both of which are known to interact with G
βγ
10,11
. Moreover, application of recombinant G
βγ
, but not G
αi
–GTP-γS, activates GIRK1 channels. Thus G
βγ
appears to be sufficient for the activation of GIRK1 muscarinic potassium channels. |
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ISSN: | 0028-0836 1476-4687 |
DOI: | 10.1038/370143a0 |