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Nature|June 13, 1991
Sympathetic regulation of cardiac calcium current is due exclusively to cAMP-dependent phosphorylationH C Hartzell, P F Méry, R Fischmeister, et al.British Journal of Pharmacology|August 1, 1997
A comparative study of the effects of three guanylyl cyclase inhibitors on the L-type Ca2+ and muscarinic K+ currents in frog cardiac myocytesN Abi-Gerges, L Hove-Madsen, R Fischmeister, et al.Molecular Pharmacology|December 1, 1990
High affinity forskolin inhibition of L-type Ca2+ current in cardiac cellsM Boutjdir, P F Méry, R Hanf, et al.The Journal of Biological Chemistry|December 15, 1993
Nitric oxide regulates cardiac Ca2+ current. Involvement of cGMP-inhibited and cGMP-stimulated phosphodiesterases through guanylyl cyclase activationP F Méry, C Pavoine, L Belhassen, et al.Nature|May 10, 1990
Glucagon stimulates the cardiac Ca2+ current by activation of adenylyl cyclase and inhibition of phosphodiesteraseP F Méry, V Brechler, C Pavoine, et al.Naunyn-Schmiedeberg'S Archives of Pharmacology|August 1, 1993
A comparative analysis of the time course of cardiac Ca2+ current response to rapid applications of beta-adrenergic and dihydropyridine agonistsP F Méry, A M Frace, H C Hartzell, et al.The Journal of General Physiology|March 1, 1993
Rate-limiting steps in the beta-adrenergic stimulation of cardiac calcium currentA M Frace, P F Méry, R Fischmeister, et al.The Journal of General Physiology|November 1, 1994
Differential effects of pertussis toxin on the muscarinic regulation of Ca2+ and K+ currents in frog cardiac myocytesY Li, R Hanf, A S Otero, et al.The Journal of Physiology|June 5, 2001
Cyclic GMP regulation of the L-type Ca(2+) channel current in human atrial myocytesG Vandecasteele, I Verde, C Rücker-Martin, et al.Nature Medicine|March 23, 1999
Muscarinic and beta-adrenergic regulation of heart rate, force of contraction and calcium current is preserved in mice lacking endothelial nitric oxide synthaseG Vandecasteele, T Eschenhagen, H Scholz, et al.Pageof 8