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Cardiovascular Research|July 22, 2009
Transgenic simulation of human heart failure-like L-type Ca2+-channels: implications for fibrosis and heart rate in miceNadine Beetz, Lutz Hein, Janos Meszaros, et al.
Physiological Genomics|August 3, 2006
Microarray analysis of gene expression during early stages of mild and severe cardiac hypertrophySudarsan Rajan, Sarah S Williams, Ganapathy Jagatheesan, et al.
Biochemical and Biophysical Research Communications|January 27, 2004
Single-channel gating and regulation of human L-type calcium channels in cardiomyocytes of transgenic miceFerdi Groner, Marta Rubio, Patrick Schulte-Euler, et al.
American Journal of Physiology. Heart and Circulatory Physiology|April 10, 2007
Rescue of tropomyosin-induced familial hypertrophic cardiomyopathy mice by transgenesisGanapathy Jagatheesan, Sudarsan Rajan, Natalia Petrashevskaya, et al.
American Journal of Physiology. Heart and Circulatory Physiology|June 12, 2004
Physiological significance of troponin T binding domains in striated muscle tropomyosinGanapathy Jagatheesan, Sudarsan Rajan, Natalia Petrashevskaya, et al.
Nature Medicine|September 23, 2003
Beta 1-adrenergic receptor polymorphisms confer differential function and predisposition to heart failureJeanne Mialet Perez, Deborah A Rathz, Natalia N Petrashevskaya, et al.
Diabetes|January 25, 2017
Loss of α2δ-1 Calcium Channel Subunit Function Increases the Susceptibility for DiabetesVincenzo Mastrolia, Sylvia M Flucher, Gerald J Obermair, et al.
The Journal of Biological Chemistry|April 12, 2003
Functional importance of the carboxyl-terminal region of striated muscle tropomyosinGanapathy Jagatheesan, Sudarsan Rajan, Natalia Petrashevskaya, et al.
Circulation Research|November 8, 2003
Protein kinase Calpha negatively regulates systolic and diastolic function in pathological hypertrophyHarvey S Hahn, Yehia Marreez, Amy Odley, et al.
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