The novel tyrosine kinase ZAK1 activates GSK3 to direct cell fate specification Article

Kim, L, Liu, J, Kimmel, AR. (1999). The novel tyrosine kinase ZAK1 activates GSK3 to direct cell fate specification . 99(4), 399-408. 10.1016/S0092-8674(00)81526-3

cited authors

  • Kim, L; Liu, J; Kimmel, AR

authors

abstract

  • Inhibition of GSK3 by 7-TM Wnt/wg receptor signaling is critical for specifying embryonic cell fate patterns. In Dictyostelium, the 7-TM cAMP receptors regulate GSK3 by parallel, antagonistic pathways to establish a developmental body plan. We describe here a novel tyrosine kinase, ZAK1, downstream of 7-TM cAMP receptor signaling that is required for GSK3 activation during development, zak1-nulls have reduced GSK3 activity and are defective in GSK3-regulated developmental pathways. Moreover, recombinant ZAK1 phosphorylates and activates GSK3 in vitro. We propose that ZAK1 is a positive regulator of GSK3 activity required for cell pattern formation in Dictyostelium and speculate that similar mechanisms exist to antagonize Wnt/wg signaling for metazoan cell fate specification.

publication date

  • January 1, 1999

Digital Object Identifier (DOI)

start page

  • 399

end page

  • 408

volume

  • 99

issue

  • 4