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The International Journal of Developmental Biology|June 1, 1989
Cell lineage and determination of cell fate in ascidian embryosJ M Venuti, W R JefferyMechanisms of Development|August 14, 1999
Expression of the sea urchin MyoD homologue, SUM1, is not restricted to the myogenic lineage during embryogenesisR L Beach, P Seo, J M VenutiThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|September 22, 2001
Expression of Period genes: rhythmic and nonrhythmic compartments of the suprachiasmatic nucleus pacemakerT Hamada, J LeSauter, J M Venuti, et al.Developmental Biology|January 8, 2000
TCF is the nuclear effector of the beta-catenin signal that patterns the sea urchin animal-vegetal axisA Vonica, W Weng, B M Gumbiner, et al.Mechanisms of Development|April 1, 1993
Developmental potential of muscle cell progenitors and the myogenic factor SUM-1 in the sea urchin embryoJ M Venuti, L Gan, M T Kozlowski, et al.Human Molecular Genetics|May 16, 1998
A sea urchin gene encoding dystrophin-related proteinsJ Wang, A Pansky, J M Venuti, et al.Developmental Biology|March 1, 1988
Spectrin and calmodulin in spreading mouse blastomeresJ S Sobel, E G Goldstein, J M Venuti, et al.Developmental Biology|December 1, 1991
Sea urchin USF: a helix-loop-helix protein active in embryonic ectoderm cellsM T Kozlowski, L Gan, J M Venuti, et al.Proceedings of the National Academy of Sciences of the United States of America|July 15, 1991
A myogenic factor from sea urchin embryos capable of programming muscle differentiation in mammalian cellsJ M Venuti, L Goldberg, T Chakraborty, et al.The Journal of Cell Biology|February 1, 1995
Myogenin is required for late but not early aspects of myogenesis during mouse developmentJ M Venuti, J H Morris, J L Vivian, et al.Pageof 2