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Molecular and Cellular Biology|March 1, 1994
A novel myogenic regulatory circuit controls slow/cardiac troponin C gene transcription in skeletal muscleM S Parmacek, H S Ip, F Jung, et al.Current Opinion in Genetics & Development|June 23, 1999
Cardiac hypertrophy: sorting out the circuitryT A McKinsey, E N OlsonThe Journal of Biological Chemistry|May 15, 1990
Functional receptors for transforming growth factor-beta are retained by biochemically differentiated C2 myocytes in growth factor-deficient medium containing EGTA but down-regulated during terminal differentiationJ S Hu, E N OlsonTrends in Genetics : TIG|September 1, 1997
Modular regulation of muscle gene transcription: a mechanism for muscle cell diversityA B Firulli, E N OlsonDevelopment (Cambridge, England)|September 8, 1999
Building the heart piece by piece: modularity of cis-elements regulating Nkx2-5 transcriptionR J Schwartz, E N OlsonDevelopmental Biology|November 10, 1998
Twist is required for muscle template splitting during adult Drosophila myogenesisR M Cripps, E N OlsonDevelopmental Cell|November 16, 2001
Antisocial, an intracellular adaptor protein, is required for myoblast fusion in DrosophilaE H Chen, E N OlsonOncogene|July 1, 1989
Developmental regulation of intermediate filament and actin mRNAs during myogenesis is disrupted by oncogenic ras genesE N Olson, Y G CapetanakiMolecular Neurobiology|January 1, 1988
Control of myogenic differentiation by cellular oncogenesM D Schneider, E N OlsonGenes & 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 OlsonPageof 63