Muscarinic K+ Channel in the Heart
Autor: | Carl Hansen, Emil N. Nikolov, Tatyana T. Ivanova-Nikolova, Janet D. Robishaw |
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Rok vydání: | 1998 |
Předmět: |
0303 health sciences
Communication Physiology G protein business.industry Chemistry Gating Neurotransmission Potassium channel 03 medical and health sciences 0302 clinical medicine GTP-binding protein regulators Muscarinic acetylcholine receptor Biophysics medicine Patch clamp business 030217 neurology & neurosurgery Acetylcholine 030304 developmental biology medicine.drug |
Zdroj: | Journal of General Physiology. 112:199-210 |
ISSN: | 1540-7748 0022-1295 |
DOI: | 10.1085/jgp.112.2.199 |
Popis: | The membrane-delimited activation of muscarinic K+ channels by G protein βγ subunits plays a prominent role in the inhibitory synaptic transmission in the heart. These channels are thought to be heterotetramers comprised of two homologous subunits, GIRK1 and CIR, both members of the family of inwardly rectifying K+ channels. Here, we demonstrate that muscarinic K+ channels in neonatal rat atrial myocytes exhibit four distinct gating modes. In intact myocytes, after muscarinic receptor activation, the different gating modes were distinguished by differences in both the frequency of channel opening and the mean open time of the channel, which accounted for a 76-fold increase in channel open probability from mode 1 to mode 4. Because of the tetrameric architecture of the channel, the hypothesis that each of the four gating modes reflects binding of a different number of Gβγ subunits to the channel was tested, using recombinant Gβ1γ5. Gβ1γ5 was able to control the equilibrium between the four gating modes of the channel in a manner consistent with binding of Gβγ to four equivalent and independent sites in the protein complex. Surprisingly, however, Gβ1γ5 lacked the ability to stabilize the long open state of the channel that is responsible for the augmentation of the mean open time in modes 3 and 4 after muscarinic receptor stimulation. The modal regulation of muscarinic K+ channel gating by Gβγ provides the atrial cells with at least two major advantages: the ability to filter out small inputs from multiple membrane receptors and yet the ability to create the gradients of information necessary to control the heart rate with great precision. |
Databáze: | OpenAIRE |
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