Key result
Isoproterenol down-regulated the Na+-Ca2+ exchanger current by 40-80% in isolated frog ventricular cardiomyocytes via the beta-receptor/adenylate-cyclase/cAMP-dependent cascade.
Beta-adrenergic agonists down-regulate the cardiac sodium-calcium exchanger via a cAMP-dependent pathway in frog ventricular myocytes, explaining the contracture-suppressant effect of catecholamines in amphibian hearts.
Hypothesis-generating in frog myocytes; leaves open beta-adrenergic Na+-Ca2+ exchanger regulation in mammals.
Na+-Ca2+ exchanger and Ca2+ channel are two major sarcolemmal Ca2+-transporting proteins of cardiac myocytes. Although the Ca2+ channel is effectively regulated by protein kinase A-dependent phosphorylation, no enzymatic regulation of the exchanger protein has been identified as yet. Here we report that in frog ventricular myocytes, isoproterenol down-regulates the Na+-Ca2+ exchanger, independent of intracellular Ca2+ and membrane potential, by activation of the beta-receptor/adenylate-cyclase/cAMP-dependent cascade, resulting in suppression of transmembrane Ca2+ transport via the exchanger and providing for the well-documented contracture-suppressant effect of the hormone on frog heart. The beta-blocker propranolol blocks the isoproterenol effect, whereas forskolin, cAMP, and theophylline mimic it. In the frog heart where contractile Ca2+ is transported primarily by the Na+-Ca2+ exchanger, the beta-agonists' simultaneous enhancement of Ca2+ current, ICa, and suppression of Na+-Ca2+ exchanger current, INa-Ca would enable the myocyte to develop force rapidly at the onset of depolarization (enhancement of ICa) and to decrease Ca2+ influx (suppression of INa-Ca) later in the action potential. This unique adrenergically induced shift in the Ca2+ influx pathways may have evolved in response to paucity of the sarcoplasmic reticulum Ca2+-ATPase/phospholamban complex and absence of significant intracellular Ca2+ release pools in the frog heart.
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Fan et al. (1996) studied Isolated frog ventricular cardiomyocytes. Isoproterenol vs. Control external solution was evaluated on Na+-Ca2+ exchanger current (INa-Ca). Isoproterenol down-regulated the Na+-Ca2+ exchanger current by 40-80% in isolated frog ventricular cardiomyocytes via the beta-receptor/adenylate-cyclase/cAMP-dependent cascade.
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