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The Journal of Cell Biology|April 1, 1990
Aberrant regulation of MyoD1 contributes to the partially defective myogenic phenotype of BC3H1 cellsT J Brennan, D G Edmondson, E N OlsonThe Journal of Biological Chemistry|November 15, 1991
Mitogenic repression of myogenin autoregulationD G Edmondson, T J Brennan, E N OlsonProceedings of the National Academy of Sciences of the United States of America|May 1, 1991
Transforming growth factor beta represses the actions of myogenin through a mechanism independent of DNA bindingT J Brennan, D G Edmondson, L Li, et al.Genes & Development|May 1, 1989
A gene with homology to the myc similarity region of MyoD1 is expressed during myogenesis and is sufficient to activate the muscle differentiation programD G Edmondson, E N OlsonGenes & Development|April 1, 1990
Myogenin resides in the nucleus and acquires high affinity for a conserved enhancer element on heterodimerizationT J Brennan, E N OlsonProceedings of the National Academy of Sciences of the United States of America|July 1, 1991
Mutagenesis of the myogenin basic region identifies an ancient protein motif critical for activation of myogenesisT J Brennan, T Chakraborty, E N OlsonDevelopment (Cambridge, England)|May 1, 1994
Mef2 gene expression marks the cardiac and skeletal muscle lineages during mouse embryogenesisD G Edmondson, G E Lyons, J F Martin, et al.Molecular and Cellular Biology|September 1, 1992
Analysis of the myogenin promoter reveals an indirect pathway for positive autoregulation mediated by the muscle-specific enhancer factor MEF-2D G Edmondson, T C Cheng, P Cserjesi, et al.Molecular and Cellular Biology|July 1, 1991
Inefficient homooligomerization contributes to the dependence of myogenin on E2A products for efficient DNA bindingT Chakraborty, T J Brennan, L Li, et al.Journal of Neuroscience Research|July 1, 1996
Extensive motor neuron survival in the absence of secondary skeletal muscle fiber formationT J Brennan, E N Olson, W H Klein, et al.Pageof 29