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PMID: 1700105 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Contribution of two types of calcium channels to membrane conductance of single myocytes from guinea-pig coronary artery.

The Journal of physiology ·Vol. 426 ·1990-07-00 ·Pages 19-42

Ganitkevich VYa, Isenberg G

Abstract

1. Whole-cell and single-channel current recordings were used to study calcium channels in single smooth muscle cells isolated from guinea-pig coronary artery. Potassium currents were blocked by intracellular Cs+ ions. 2. Whole-cell currents were recorded with 10 mM-barium in the bath. Step pulses of 200 ms from a holding potential of -90 mV activated calcium channel current when the depolarization reached -55 to -50 mV. All cells showed a current component which inactivated slowly and incompletely. About half of the cells showed an additional current component with a rapid inactivation time course. Both components were abolished by Cd2+ ions (1 mM) and were reduced by changing the holding membrane potential to -40 mV or by addition of 0.1 mM-Ni2+. 3. Single calcium channel currents were measured in cell-attached patches with 110 or 10 mM-Ba2+ as a current carrier. Two different types of single calcium channel activity were observed. 4. A high-conductance calcium channel was activated near -30 mV with 110 mM-Ba2+ and this threshold was changed to about -60 mV with 10 mM-Ba2+ in the patch pipette. The conductance was 28.0 +/- 1.5 pS (mean +/- S.D.) in 110 mM-Ba2+ and 16.0 +/- 1.0 pS in 10 mM-Ba2+. Dependence of the conductance on the concentration of Ba2+ in the patch pipette followed a Langmuir curve: the apparent dissociation constant of Ba2+ was 8 mM. It was concluded that this channel type corresponds to L-type calcium channels. 5. Another calcium channel was found in these experiments. It had a low conductance and was activated at around -50 mV with 110 mM-Ba2+, and this threshold was shifted to about -70 mV when 10 mM-Ba2+ was the charge carrier. The conductance of this calcium channel was 7.5 +/- 0.6 pS in 110 mM-Ba2+ and 5.5 +/- 1.0 pS in 10 mM-Ba2+. With 10 mM-Ba2+, inactivation of the mean current was slow at potentials -70 to -50 mV, but fast and complete (within 100 ms) at more positive potentials. It was concluded that this type of calcium channel corresponds to T-type calcium channels. 6. With the membrane potential continuously held at -50 to -40 mV (with 10 mM-Ba2+ in the patch pipette), i.e. close to the usual resting potential of these cells, T-type calcium channels were completely inactivated whereas rare openings of L-type calcium channels could be detected.(ABSTRACT TRUNCATED AT 400 WORDS)

MeSH Terms
3-Pyridinecarboxylic acid, 1,4-dihydro-2,6-dimethyl-5-nitro-4-(2-(trifluoromethyl)phenyl)-, Methyl ester/pharmacology Animals Barium/pharmacology Cadmium/pharmacology Calcium/metabolism Calcium Channel Agonists/pharmacology Calcium Channels/physiology Coronary Vessels/physiology Guinea Pigs In Vitro Techniques Membrane Potentials/drug effects Muscle, Smooth, Vascular/physiology Nickel/pharmacology
Chemicals
Calcium Channel Agonists Calcium Channels Cadmium Barium 3-Pyridinecarboxylic acid, 1,4-dihydro-2,6-dimethyl-5-nitro-4-(2-(trifluoromethyl)phenyl)-, Methyl ester Nickel Calcium
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Ganitkevich VYa
Department of Applied Physiology, University of Cologne, FRG.
Isenberg G
References (39)
39 references, click to expand
  1. Spontaneous transient outward currents in single visceral and vascular smooth muscle cells of the rabbit.
    J Physiol. 1986 Dec;381:385-406 PMID: 2442353
  2. Mechanisms of action of transmitters and other substances on smooth muscle.
    Physiol Rev. 1979 Jul;59(3):606-718 PMID: 37533
  3. Kinetic and pharmacological properties distinguishing three types of calcium currents in chick sensory neurones.
    J Physiol. 1987 Dec;394:149-72 PMID: 2451016
  4. Kinetics and selectivity of a low-voltage-activated calcium current in chick and rat sensory neurones.
    J Physiol. 1987 May;386:547-70 PMID: 2445968
  5. Two types of calcium channels in the somatic membrane of new-born rat dorsal root ganglion neurones.
    J Physiol. 1985 Feb;359:431-46 PMID: 2582115
  6. Are junction potentials essential? Dual mechanism of smooth muscle cell activation by transmitter released from autonomic nerves.
    Q J Exp Physiol. 1986 Jan;71(1):1-28 PMID: 2869546
  7. Cardiac calcium channels in planar lipid bilayers. L-type channels and calcium-permeable channels open at negative membrane potentials.
    J Gen Physiol. 1988 Jul;92(1):27-54 PMID: 2844956
  8. Catecholamine action on smooth muscle.
    Pharmacol Rev. 1987 Mar;39(1):49-96 PMID: 3033708
  9. Multiple types of voltage-dependent Ca channels in mammalian intestinal smooth muscle cells.
    Pflugers Arch. 1989 Aug;414(4):401-9 PMID: 2477791
  10. Modulation of single slow (L-type) calcium channels by intracellular ATP in vascular smooth muscle cells.
    Pflugers Arch. 1989 Jul;414(3):257-64 PMID: 2476713
  11. Measurement and simulation of noninactivating Ca current in smooth muscle cells.
    Am J Physiol. 1989 Apr;256(4 Pt 1):C880-5 PMID: 2468290
  12. Regulation of calcium current by intracellular calcium in smooth muscle cells of rabbit portal vein.
    Circ Res. 1988 Feb;62(2):375-83 PMID: 2448060
  13. Whole-cell and single-channel calcium currents of isolated smooth muscle cells from saphenous vein.
    Circ Res. 1987 Apr;60(4):523-33 PMID: 2439228
  14. Evidence for two distinct calcium channels in rat vascular smooth muscle cells in short-term primary culture.
    Pflugers Arch. 1986 Nov;407(5):566-8 PMID: 2431388
  15. Calcium channel selectivity for divalent and monovalent cations. Voltage and concentration dependence of single channel current in ventricular heart cells.
    J Gen Physiol. 1986 Sep;88(3):293-319 PMID: 2428919
  16. Cellular calcium regulates outward currents in rabbit intestinal smooth muscle cell.
    Am J Physiol. 1987 Apr;252(4 Pt 1):C401-10 PMID: 2436483
  17. Interactions of divalent cations with single calcium channels from rat brain synaptosomes.
    J Gen Physiol. 1986 Feb;87(2):201-22 PMID: 2419482
  18. Two kinds of calcium channels in canine atrial cells. Differences in kinetics, selectivity, and pharmacology.
    J Gen Physiol. 1985 Jul;86(1):1-30 PMID: 2411846
  19. Modulation produced by nifedipine of the unitary Ba current of dispersed smooth muscle cells of the rabbit ileum.
    Pflugers Arch. 1989 Sep;414(5):534-42 PMID: 2550890
  20. The dihydropyridine niguldipine modulates calcium and potassium currents in vascular smooth muscle cells.
    Br J Pharmacol. 1989 Jul;97(3):957-67 PMID: 2547493
  21. Pharmacological modulation of calcium and potassium channels in isolated vascular smooth muscle cells.
    Arzneimittelforschung. 1989 Jan;39(1A):120-6 PMID: 2541731
  22. Effect of calcium antagonists on vascular responses of bovine coronary artery to acetylcholine, noradrenaline, and 5-hydroxytryptamine.
    Jpn J Physiol. 1986;36(4):807-13 PMID: 3784154
  23. Mechanisms of action of noradrenaline and carbachol on smooth muscle of guinea-pig anterior mesenteric artery.
    J Physiol. 1984 Jun;351:549-72 PMID: 6431087
  24. [Mechanism of the relaxant action of noradrenaline on coronary artery smooth muscle cells].
    Biull Eksp Biol Med. 1981 May;91(5):517-20 PMID: 6266555
  25. Calcium currents in single isolated smooth muscle cells from the rabbit ear artery in normal-calcium and high-barium solutions.
    J Physiol. 1988 Nov;405:57-75 PMID: 2475611
  26. Properties of calcium stores and transient outward currents in single smooth muscle cells of rabbit intestine.
    J Physiol. 1989 Feb;409:385-401 PMID: 2585296
  27. Calcium-dependent inactivation of potential-dependent calcium inward current in an isolated guinea-pig smooth muscle cell.
    J Physiol. 1987 Nov;392:431-49 PMID: 2451726
  28. Saturation of calcium channels in single isolated smooth muscle cells of guinea-pig taenia caeci.
    J Physiol. 1988 May;399:419-36 PMID: 2457091
  29. Low-voltage-activated calcium current in rat aorta smooth muscle cells in primary culture.
    J Physiol. 1989 Sep;416:141-60 PMID: 2558173
  30. Dihydropyridine inhibition of single calcium channels and contraction in rabbit mesenteric artery depends on voltage.
    J Physiol. 1989 May;412:65-91 PMID: 2481035
  31. Two types of calcium currents in single smooth muscle cells from rat portal vein.
    J Physiol. 1989 May;412:333-49 PMID: 2557429
  32. Dihydropyridine-sensitive low-threshold calcium channels in isolated rat hypothalamic neurones.
    J Physiol. 1989 May;412:181-95 PMID: 2557425
  33. The action potential and underlying ionic currents in proximal rat middle cerebral arterioles.
    J Physiol. 1986 Feb;371:289-304 PMID: 2422350
  34. The role of hyperpolarization in the relaxation of smooth muscle of monkey coronary artery.
    J Physiol. 1986 Feb;371:257-65 PMID: 3084766
  35. Factors modifying contraction-relaxation cycle in vascular smooth muscles.
    Am J Physiol. 1982 Nov;243(5):H641-62 PMID: 6291410
  36. [Mechanisms of the effect of adenosine on the smooth muscle cells of the coronary arteries].
    Fiziol Zh. 1983 May-Jun;29(3):332-9 PMID: 6873336
  37. Effects of acetylcholine and catecholamines on the smooth muscle cell of the porcine coronary artery.
    J Physiol. 1979 Sep;294:595-611 PMID: 512960
  38. Effects of acetylcholine on the smooth muscle cell of isolated main coronary artery of the guinea-pig.
    J Physiol. 1979 Aug;293:119-33 PMID: 501578
  39. Single-channel recordings of three types of calcium channels in chick sensory neurones.
    J Physiol. 1987 Dec;394:173-200 PMID: 2451017
Article Info
Journal
The Journal of physiology
Abbr.
J Physiol
ISSN
0022-3751
Published
1990-07-00
Pages
19-42
Language
English
Region
England
NLM ID
0266262
PMCID
PMC1189875
Subset
IM
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