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Activation of calcium currents in cardiac myocytes by empty beta-adrenoceptors

T Mewes1, S Dutz, U Ravens

  • 1Institut für Pharmakologie, Universität GH Essen, Germany.

Circulation
|December 1, 1993
PubMed
Abstract

Insights

Agonist-free beta-adrenoceptors in heart cells are active and influence calcium currents. Receptor antagonists block this effect, showing functional activity even without a direct trigger.

Area of Science:

  • Cardiology
  • Molecular Pharmacology
  • Cell Physiology

Background:

  • Cardiac calcium channels are modulated by catecholamines via beta-adrenoceptors and G proteins.
  • Biochemical studies show G protein-coupled receptors can activate G proteins and cyclic AMP (cAMP) without agonists.
  • Antagonists can block this basal receptor activity.

Purpose of the Study:

  • To electrophysiologically investigate if agonist-free beta-adrenoceptors modulate L-type calcium currents (ICa) in intact cardiac myocytes.
  • To determine the role of basal receptor activity in cardiac function.

Main Methods:

  • Isolation of cardiomyocytes from guinea pig and human hearts.
  • Whole-cell patch-clamp technique to measure L-type calcium currents (ICa).
  • Study of beta-adrenoceptor antagonist effects (atenolol, propranolol, ICI 118,551) with and without forskolin or Sp-cAMPS.

Main Results:

  • Beta 1-selective and nonselective beta-adrenoceptor antagonists reduced ICa in a concentration-dependent manner when adenylyl cyclase was sensitized by forskolin.
  • Inhibition was less pronounced without forskolin.
  • Atenolol did not inhibit ICa activated by the protein kinase A activator Sp-cAMPS.

Conclusions:

  • Agonist-free beta-adrenoceptors are functionally active in guinea pig and human cardiomyocytes.
  • These receptors can stimulate L-type calcium currents.
  • This stimulation is blocked by specific receptor antagonists.

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