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Molecular Cell|September 13, 2000
Regulation of skeletal myogenesis by association of the MEF2 transcription factor with class II histone deacetylasesJ Lu, T A McKinsey, C L Zhang, et al.The Journal of Biological Chemistry|February 25, 1983
Regulation of creatine phosphokinase expression during differentiation of BC3H1 cellsE N Olson, K L Caldwell, J I Gordon, et al.The Journal of Biological Chemistry|March 15, 1988
Decrease in transforming growth factor-beta binding and action during differentiation in muscle cellsD Z Ewton, G Spizz, E N Olson, et al.Circulation Research|April 7, 1998
Evolutionarily conserved promoter region containing CArG*-like elements is crucial for smooth muscle myosin heavy chain gene expressionA Zilberman, V Dave, J Miano, et al.Nature|November 18, 2000
Signal-dependent nuclear export of a histone deacetylase regulates muscle differentiationT A McKinsey, C L Zhang, J Lu, et al.Genes & Development|April 15, 1997
Requirement of the transcription factor GATA4 for heart tube formation and ventral morphogenesisJ D Molkentin, Q Lin, S A Duncan, et al.The Journal of Biological Chemistry|October 25, 1996
Cooperative transcriptional activation by the neurogenic basic helix-loop-helix protein MASH1 and members of the myocyte enhancer factor-2 (MEF2) familyB L Black, K L Ligon, Y Zhang, et al.Development (Cambridge, England)|July 22, 1998
Divergent roles for NK-2 class homeobox genes in cardiogenesis in flies and miceG Ranganayakulu, D A Elliott, R P Harvey, et al.The Journal of Biological Chemistry|June 17, 1994
Homeodomain protein MHox and MADS protein myocyte enhancer-binding factor-2 converge on a common element in the muscle creatine kinase enhancerP Cserjesi, B Lilly, C Hinkley, et al.Developmental Biology|July 15, 1997
Evidence for serum response factor-mediated regulatory networks governing SM22alpha transcription in smooth, skeletal, and cardiac muscle cellsL Li, Z Liu, B Mercer, et al.Pageof 37