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Annual Review of Physiology|February 22, 2001
Cytoplasmic signaling pathways that regulate cardiac hypertrophyJ D Molkentin, G W DornCell Death and Differentiation|June 20, 2015
Genetic evidence in the mouse solidifies the calcium hypothesis of myofiber death in muscular dystrophyA R Burr, J D MolkentinThe Journal of Biological Chemistry|September 15, 1993
Myocyte-specific enhancer-binding factor (MEF-2) regulates alpha-cardiac myosin heavy chain gene expression in vitro and in vivoJ D Molkentin, B E MarkhamMolecular and Cellular Biology|August 1, 1994
An M-CAT binding factor and an RSRF-related A-rich binding factor positively regulate expression of the alpha-cardiac myosin heavy-chain gene in vivoJ D Molkentin, B E MarkhamCurrent Opinion in Genetics & Development|August 1, 1996
Defining the regulatory networks for muscle developmentJ D Molkentin, E N OlsonProceedings of the National Academy of Sciences of the United States of America|September 3, 1996
Combinatorial control of muscle development by basic helix-loop-helix and MADS-box transcription factorsJ D Molkentin, E N OlsonThe Journal of Biological Chemistry|July 19, 1996
Phosphorylation of the MADS-Box transcription factor MEF2C enhances its DNA binding activityJ D Molkentin, L Li, E N OlsonScience (New York, N.Y.)|September 11, 1998
Prevention of cardiac hypertrophy in mice by calcineurin inhibitionM A Sussman, H W Lim, N Gude, et al.Developmental Biology|June 13, 2001
Retinoic acid inhibits cardiac neural crest migration by blocking c-Jun N-terminal kinase activationJ Li, J D Molkentin, M C ColbertCardiovascular Research|March 23, 2000
Hypertrophic defect unmasked by calcineurin expression in asymptomatic tropomodulin overexpressing transgenic miceM A Sussman, S Welch, A Walker, et al.Pageof 16