The activation of calcium and calcium-activated potassium channels in mammalian colonic smooth muscle by substance P
1. The regulation of Ca2(+)-activated K+ channels by the agonist substance P in freshly dissociated smooth muscle cells from the rabbit longitudinal colonic muscle was characterized using the patch clamp technique. 2. In the cell-attached recording mode, when pipette and bath solutions contained equ...
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Veröffentlicht in: | The Journal of physiology 1990-01, Vol.420 (1), p.47-71 |
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Zusammenfassung: | 1. The regulation of Ca2(+)-activated K+ channels by the agonist substance P in freshly dissociated smooth muscle cells from
the rabbit longitudinal colonic muscle was characterized using the patch clamp technique. 2. In the cell-attached recording
mode, when pipette and bath solutions contained equal [K+] (126 mM), the Ca2(+)-activated K+ channels showed a linear current-voltage
relationship (between -50 mV and 50 mV) with a slope conductance of 210 +/- 35 pS (n = 12). Reversal potential measurements
indicated that the channel was highly selective for K+ over Na+ (PK/PNa = 110). 3. Channels were activated by depolarizing
membrane voltages and cytosolic Ca2+, and in inside-out patches channel activation depended sigmoidally on voltage and [Ca2+].
The potential for half-activation at a cytosolic [Ca2+] of 5 x 10(-6) M was 0 mV. A tenfold increase in cytosolic Ca2+ resulted
in a 60 mV shift of the sigmoidal voltage activation curve to more negative potentials. 4. Threshold concentrations of substance
P (10(-12) M), which did not result in cell contraction, caused a prolonged activation of K+ channels. The K+ channels were
observed to open in clusters: simultaneous opening of multiple channels was interrupted by complete, prolonged channel closure.
5. Lowering bath [Ca2+] to submicromolar concentrations abolished the effect of substance P. The activation of K+ channels
by substance P (10(-12) M) was also inhibited by the dihydropyridine nifedipine (10(-6) M), a blocker of L-type Ca2+ channels.
6. In the whole-cell recording mode, with the pipette solution containing 126 mM-KCl, 0.77 mM-EGTA and 1 mM-ATP, depolarization
from a holding potential of -70 mV elicited outward currents which increased to steady-state values. These were K+ currents
as they were blocked by TEA (tetraethylammonium, 30 mM) and Ba2+ (1 mM) and were abolished when pipette K+ was replaced by
Cs+. 7. The depolarization-activated outward current was not affected by lowering extracellular [Ca2+] or by the Ca2+ channel
antagonists Cd2+ (200 microM), nifedipine (10(-6)-10(-5) M) or verapamil (10(-6) M). The current was greatly reduced when
the EGTA concentration in the pipette solution was increased from 0.77 to 10 mM. 8. When the pipette solution contained CsCl,
membrane depolarization activated inward currents. The peak inward current was identified as current through L-type Ca2+ channels
based on its voltage- and time-dependent kinetics, and its modulation by dihydropyridines. |
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ISSN: | 0022-3751 1469-7793 |
DOI: | 10.1113/jphysiol.1990.sp017901 |