Literature DB >> 2845353

Forskolin effects on the voltage-gated K+ conductance of human T cells.

D Krause1, S C Lee, C Deutsch.   

Abstract

Forskolin, a direct activator of adenylate cyclase, modifies the voltage-dependent K+ conductance of quiescent human peripheral blood T lymphocytes. In the presence of greater than 20 microM forskolin, the average voltage-gated current in whole-cell patch clamp is significantly decreased. The voltage dependence and kinetics of activation are not changed from untreated control cells. However, inactivation becomes biphasic. Much of the current inactivates very quickly (complete in 10 ms), and the remaining outward current inactivates more slowly with a time constant closer to that of control cells. To determine whether this effect is mediated by a rise in intracellular cAMP, cells were preincubated and subsequently voltage-clamped in the presence of other agents that raise the cAMP levels in T cells (isoproterenol plus a phosphodiesterase inhibitor, or dibutyryl cAMP) with no effect on the K+ conductance. Similarly, cells put in whole-cell patch clamp with cAMP, GTP, ATP, and theophylline added to the electrode filling solution showed no change in K+ current. Because other procedures that raise cAMP did not duplicate the effect of forskolin, we investigated the effect of 1,9-dideoxyforskolin, an analogue of forskolin that does not stimulate adenylate cyclase in human lymphocytes. This drug induced changes in the whole-cell K+ conductance identical to those observed with forskolin. Both forskolin and dideoxyforskolin inhibit mitogen-induced proliferation of lymphocytes. Because inhibition of proliferation occurs in the presence of known K+ channel blockers, these results suggest that forskolin has an effect on T cell mitogenesis that is mediated by inhibition of K+ conductance and is independent of cAMP.

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Year:  1988        PMID: 2845353     DOI: 10.1007/bf00583742

Source DB:  PubMed          Journal:  Pflugers Arch        ISSN: 0031-6768            Impact factor:   3.657


  33 in total

1.  Cyclic AMP-modulated potassium channels in murine B cells and their precursors.

Authors:  D Choquet; P Sarthou; D Primi; P A Cazenave; H Korn
Journal:  Science       Date:  1987-03-06       Impact factor: 47.728

2.  A radioisotopic method for measuring the formation of adenosine 3',5'-cyclic monophosphate in incubated slices of brain.

Authors:  H Shimizu; J W Daly; C R Creveling
Journal:  J Neurochem       Date:  1969-12       Impact factor: 5.372

3.  Noradrenaline blocks accommodation of pyramidal cell discharge in the hippocampus.

Authors:  D V Madison; R A Nicoll
Journal:  Nature       Date:  1982-10-14       Impact factor: 49.962

4.  Voltage-gated K+ channels in human T lymphocytes: a role in mitogenesis?

Authors:  T E DeCoursey; K G Chandy; S Gupta; M D Cahalan
Journal:  Nature       Date:  1984 Feb 2-8       Impact factor: 49.962

5.  A voltage-gated potassium channel in human T lymphocytes.

Authors:  M D Cahalan; K G Chandy; T E DeCoursey; S Gupta
Journal:  J Physiol       Date:  1985-01       Impact factor: 5.182

6.  Serotonin and cyclic AMP close single K+ channels in Aplysia sensory neurones.

Authors:  S A Siegelbaum; J S Camardo; E R Kandel
Journal:  Nature       Date:  1982-09-30       Impact factor: 49.962

7.  Human lymphocytic metabolism. Effects of cyclic and noncyclic nucleotides on stimulation by phytohemagglutinin.

Authors:  J W Smith; A L Steiner; C W Parker
Journal:  J Clin Invest       Date:  1971-02       Impact factor: 14.808

Review 8.  Forskolin: a unique diterpene activator of cyclic AMP-generating systems.

Authors:  K B Seamon; J W Daly
Journal:  J Cyclic Nucleotide Res       Date:  1981

9.  Regulation of the catalytic component of adenylate cyclase. Potentiative interaction of stimulatory ligands and 2',5'-dideoxyadenosine.

Authors:  V A Florio; E M Ross
Journal:  Mol Pharmacol       Date:  1983-09       Impact factor: 4.436

10.  Mitogen induction of ion channels in murine T lymphocytes.

Authors:  T E Decoursey; K G Chandy; S Gupta; M D Cahalan
Journal:  J Gen Physiol       Date:  1987-03       Impact factor: 4.086

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  18 in total

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Authors:  Luo Lu
Journal:  Prog Retin Eye Res       Date:  2006-09-07       Impact factor: 21.198

2.  Temperature dependence of K(+)-channel properties in human T lymphocytes.

Authors:  S C Lee; C Deutsch
Journal:  Biophys J       Date:  1990-01       Impact factor: 4.033

3.  Properties of a potassium-selective ion channel in human melanoma cells.

Authors:  B Nilius; T Böhm; W Wohlrab
Journal:  Pflugers Arch       Date:  1990-11       Impact factor: 3.657

4.  Modulation of K+ currents in human lymphocytes by pH.

Authors:  C Deutsch; S C Lee
Journal:  J Physiol       Date:  1989-06       Impact factor: 5.182

5.  Inhibition of voltage-dependent Na+ and K+ currents by forskolin in nodes of Ranvier.

Authors:  N A Castle
Journal:  Pflugers Arch       Date:  1989-12       Impact factor: 3.657

6.  Modulation of potassium channels in human T lymphocytes: effects of temperature.

Authors:  P A Pahapill; L C Schlichter
Journal:  J Physiol       Date:  1990-03       Impact factor: 5.182

7.  Modulation of Kv1.3 channels by protein kinase A I in T lymphocytes is mediated by the disc large 1-tyrosine kinase Lck complex.

Authors:  Zerrin Kuras; Vladimir Kucher; Scott M Gordon; Lisa Neumeier; Ameet A Chimote; Alexandra H Filipovich; Laura Conforti
Journal:  Am J Physiol Cell Physiol       Date:  2012-02-29       Impact factor: 4.249

8.  Interactive effects of isoprenaline, forskolin and acetylcholine on Ca2+ current in frog ventricular myocytes.

Authors:  R Fischmeister; A Shrier
Journal:  J Physiol       Date:  1989-10       Impact factor: 5.182

9.  Multiple mechanisms in the smooth muscle relaxant action of calcitonin gene-related peptide (CGRP) in the guinea-pig ureter.

Authors:  C A Maggi; S Giuliani; P Santicioli
Journal:  Naunyn Schmiedebergs Arch Pharmacol       Date:  1994-11       Impact factor: 3.000

10.  Modulation of potassium channels in intact human T lymphocytes.

Authors:  P A Pahapill; L C Schlichter
Journal:  J Physiol       Date:  1992-01       Impact factor: 5.182

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