FoxA4 Favours Notochord Formation by Inhibiting Contiguous Mesodermal Fates and Restricts Anterior Neural Development in Xenopus Embryos
Page 1 of 1
FoxA4 Favours Notochord Formation by Inhibiting Contiguous Mesodermal Fates and Restricts Anterior Neural Development in Xenopus Embryos
Murgan S, Castro Colabianchi AM, Monti RJ, Boyadjián López LE, Aguirre CE, Stivala EG, Carrasco AE, López SL. FoxA4 Favours Notochord Formation by Inhibiting Contiguous Mesodermal Fates and Restricts Anterior Neural Development in Xenopus Embryos. PLoS ONE. 2014;9(10):e110559. doi:10.1371/journal.pone.0110559
Last edited by Jon Moulton on Fri Oct 24, 2014 1:37 pm; edited 1 time in total (Reason for editing : Fix URL)
Similar topics
» Ras-dva1 small GTPase regulates telencephalon development in Xenopus laevis embryos by controlling Fgf8 and Agr signaling at the anterior border of the neural plate
» Notch destabilises maternal β-catenin and restricts dorsal-anterior development in Xenopus
» A Homolog of Subtilisin-Like Proprotein Convertase 7 Is Essential to Anterior Neural Development in Xenopus
» The Nedd4 binding protein 3 is required for anterior neural development in Xenopus laevis
» Histone XH2AX is required for Xenopus anterior neural development: critical role of threonine 16 phosphorylation
» Notch destabilises maternal β-catenin and restricts dorsal-anterior development in Xenopus
» A Homolog of Subtilisin-Like Proprotein Convertase 7 Is Essential to Anterior Neural Development in Xenopus
» The Nedd4 binding protein 3 is required for anterior neural development in Xenopus laevis
» Histone XH2AX is required for Xenopus anterior neural development: critical role of threonine 16 phosphorylation
Page 1 of 1
Permissions in this forum:
You cannot reply to topics in this forum