Intracellular concentration jumps of cAMP produced an increased slow inward current reaching a maximum 10-30 seconds after the flash, confirming that cAMP regulates the slow inward current.
This preclinical study confirms that cAMP regulates the slow inward current and suggests that the delay in positive inotropic effects of beta-agonists is due to events prior to cAMP-protein kinase interaction.
Voltage-clamped atrial trabeculae from bullfrog hearts were exposed to membrane-permeant photolyzable o-nitrobenzyl esters of cAMP and cGMP. UV flashes produced intracellular concentration jumps of cAMP or cGMP. With the cAMP derivative, flashes resulted in an increased slow inward current (Isi), producing a broadened action potential. The Isi reached a maximum 10-30 sec after the flash and decreased over the next 60-300 sec. The first increases were observable within 150 msec; this value is an upper limit imposed by the instrumentation. Responses to flashes lasted longer at higher drug concentrations and in the presence of the phosphodiesterase inhibitor papaverine; effects of flashes developed and decreased faster at higher temperature. Although the amplitude of the Isi was increased, its waveform and voltage sensitivity were not affected. Intracellular concentration jumps of cAMP failed to affect the muscarinic K+ conductance. There were no observable effects of cGMP concentration jumps. The data confirm (i) that cAMP regulates the Isi and (ii) that the 5- to 10-sec delay between application of beta-agonists and the onset of positive inotropic effects, observed in previous studies, has been correctly ascribed to events prior to the interaction between cAMP and protein kinase.
Nargeot et al. (Fri,) reported a other. Intracellular concentration jumps of cAMP vs. cGMP concentration jumps was evaluated on Slow inward current (Isi). Intracellular concentration jumps of cAMP produced an increased slow inward current reaching a maximum 10-30 seconds after the flash, confirming that cAMP regulates the slow inward current.
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