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Journal of Molecular and Cellular Cardiology|February 1, 2012
Phospholemman is a negative feed-forward regulator of Ca2+ in β-adrenergic signaling, accelerating β-adrenergic inotropyJason H Yang, Jeffrey J SaucermanCirculation Research|January 8, 2011
Computational models reduce complexity and accelerate insight into cardiac signaling networksJason H Yang, Jeffrey J SaucermanNature Chemical Biology|February 28, 2012
Regulation of nuclear PKA revealed by spatiotemporal manipulation of cyclic AMPVedangi Sample, Lisa M DiPilato, Jason H Yang, et al.Journal of Molecular and Cellular Cardiology|November 15, 2013
PKA catalytic subunit compartmentation regulates contractile and hypertrophic responses to β-adrenergic signalingJason H Yang, Renata K Polanowska-Grabowska, Jeffrey S Smith, et al.Critical Reviews in Biomedical Engineering|December 27, 2011
Cardiac models in drug discovery and development: a reviewRobert K Amanfu, Jeffrey J SaucermanBritish Journal of Pharmacology|June 11, 2023
Virtual drug screen reveals context-dependent inhibition of cardiomyocyte hypertrophyTaylor G Eggertsen, Jeffrey J SaucermanAnnals of the New York Academy of Sciences|November 30, 2006
Cardiac beta-adrenergic signaling: from subcellular microdomains to heart failureJeffrey J Saucerman, Andrew D McCullochJournal of Cardiovascular Pharmacology|May 13, 2011
Bigger, better, faster: principles and models of AKAP anchoring protein signalingEric C Greenwald, Jeffrey J SaucermanBiophysical Journal|October 7, 2010
Synergy between CaMKII substrates and β-adrenergic signaling in regulation of cardiac myocyte Ca(2+) handlingAnthony R Soltis, Jeffrey J SaucermanMolecular Pharmacology|May 29, 2014
Modeling the effects of β1-adrenergic receptor blockers and polymorphisms on cardiac myocyte Ca2+ handlingRobert K Amanfu, Jeffrey J SaucermanPageof 13