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Cell|September 8, 1989
MyoD is a sequence-specific DNA binding protein requiring a region of myc homology to bind to the muscle creatine kinase enhancerA B Lassar, J N Buskin, D Lockshon, et al.Molecular and Cellular Biology|April 1, 1996
Analysis of muscle creatine kinase gene regulatory elements in skeletal and cardiac muscles of transgenic miceD B Donoviel, M A Shield, J N Buskin, et al.Gene Therapy|March 11, 2005
Stable transduction of myogenic cells with lentiviral vectors expressing a minidystrophinS Li, E Kimura, B M Fall, et al.Molecular Reproduction and Development|September 1, 1994
Role of FGFs in skeletal muscle and limb developmentB B Olwin, K Arthur, K Hannon, et al.Proceedings of the National Academy of Sciences of the United States of America|April 1, 1988
Heart and bone tumors in transgenic miceR R Behringer, J J Peschon, A Messing, et al.The Journal of Biological Chemistry|February 16, 1996
A novel cytoplasmic dual specificity protein tyrosine phosphatase implicated in muscle and neuronal differentiationR J Mourey, Q C Vega, J S Campbell, et al.Nature|August 19, 1993
Overexpression of dystrophin in transgenic mdx mice eliminates dystrophic symptoms without toxicityG A Cox, N M Cole, K Matsumura, et al.Cell|August 11, 1989
Interactions between heterologous helix-loop-helix proteins generate complexes that bind specifically to a common DNA sequenceC Murre, P S McCaw, H Vaessin, et al.The American Journal of Physiology|September 1, 1987
Isolated muscle cells as a physiological modelM Lieberman, S D Hauschka, Z W Hall, et al.Molecular Therapy : the Journal of the American Society of Gene Therapy|July 19, 2000
Analysis of muscle creatine kinase regulatory elements in recombinant adenoviral vectorsM A Hauser, A Robinson, D Hartigan-O'Connor, et al.Pageof 11