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Xbra
4400416A
NIH Public Access Author Manuscript Dev Dyn
The Xenopus Brachyury Promoter Is Activated by FGF and Low Concentrations of Activin and Suppressed by High Concentrations of Ac
Early Evolution of the T-Box Transcription Factor Family
Vertebrate Ctr1 Coordinates Morphogenesis and Progenitor Cell Fate and Regulates Embryonic Stem Cell Differentiation
Mesoderm Formation in Response to Brachyury Requires FGF Signalling S
ZEB2, the Mowat-Wilson Syndrome Transcription Factor: Confirmations, Novel Functions, and Continuing Surprises
Switching on the Notochord
Molecule, the Xenopus Brachyury Gene, Into a Neuralizing Factor
Interference with Brachyury Function Inhibits Convergent Extension
Xwnt11 Regulates Gastrulation Movements 2229
Inhibition of Xbra Transcription Activation Causes Defects in Mesodermal Patterning and Reveals Autoregulation of Xbra in Dorsal Mesoderm
Patterns and Control of Cell Motility in the Xenopus Gastrula
The Pitx2 Homeobox Protein Is Required Early for Endoderm
Charting Brachyury-Mediated Developmental Pathways During Early Mouse Embryogenesis
Goosecoid and Mix.1 Regulate Xbra
Vivo T-Box Transcription Factor Profiling Reveals Joint Regulation of Embryonic Neuromesodermal Bipotency
Xror2 Modulates Convergent Extension 5229 Generated Using an in Vitro Site-Directed Mutagenesis System Conserved Cysteines (Fig
Top View
Endodermal Nodal-Related Signals and Mesoderm Induction in Xenopus
Analysis of Competence and of Brachyury Autoinduction by Use of Hormone- Inducible Xbra
Patterning of the Mesoderm in Xenopus: Dose-Dependent and Synergistic Effects of Brachyury and Pintallavis
Regulation of Xenopus Brachyury by Repression 2731 Reporter Was Released by Additional Digestion with Saci
Efgf Is Expressed in the Dorsal Midline of Xenopus Laevis
Xnr3 Regulates Convergent Extension Movements Via the FGF Receptor Chika Yokota, Matt Kofron, Mike Zuck, Douglas W
Furry Is Required for Cell Movements During Gastrulation and Functionally Interacts with NDR1 Ailen S