Maternal and embryonic expression of zebrafish lef1
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D. Raible | R. Moon | R. Geisler | D. Grunwald | P. Haffter | C. Cretekos | R. Dorsky | A. Snyder
[1] Randall T. Moon,et al. Control of neural crest cell fate by the Wnt signalling pathway , 1998, Nature.
[2] Z. Paroush,et al. Transcriptional repression by AML1 and LEF-1 is mediated by the TLE/Groucho corepressors. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[3] H. Maischein,et al. Function of zebrafish β-catenin and TCF-3 in dorsoventral patterning , 1998, Mechanisms of Development.
[4] G. Dressler,et al. TCF-4 binds β-catenin and is expressed in distinct regions of the embryonic brain and limbs , 1998, Mechanisms of Development.
[5] B. Paw,et al. Characterization of whole genome radiation hybrid mapping resources for non-mammalian vertebrates. , 1998, Nucleic acids research.
[6] H. Clevers,et al. Differential expression of the HMG box transcription factors XTcf-3 and XLef-1 during early Xenopus development , 1998, Mechanisms of Development.
[7] M. Bienz. TCF: transcriptional activator or repressor? , 1998, Current opinion in cell biology.
[8] C. Tabin,et al. Distinct WNT pathways regulating AER formation and dorsoventral polarity in the chick limb bud. , 1998, Science.
[9] M. Ekker,et al. A microsatellite genetic linkage map for zebrafish (Danio rerio) , 1998, Nature Genetics.
[10] H Clevers,et al. TCF/LEF factor earn their wings. , 1997, Trends in genetics : TIG.
[11] R. Moon,et al. A beta-catenin/XTcf-3 complex binds to the siamois promoter to regulate dorsal axis specification in Xenopus. , 1997, Genes & development.
[12] E. Stewart,et al. An STS-based radiation hybrid map of the human genome. , 1997, Genome research.
[13] Konrad Basler,et al. pangolinencodes a Lef-1 homologue that acts downstream of Armadillo to transduce the Wingless signal in Drosophila , 1997, Nature.
[14] Michael Kühl,et al. Functional interaction of β-catenin with the transcription factor LEF-1 , 1996, Nature.
[15] J. Eisen,et al. Motoneuron fate specification revealed by patterned LIM homeobox gene expression in embryonic zebrafish. , 1995, Development.
[16] R. Lin,et al. pop-1 Encodes an HMG box protein required for the specification of a mesoderm precursor in Early C. elegans embryos , 1995, Cell.
[17] L. Lettice,et al. Whole-mount in situ hybridizations on zebrafish embryos using a mixture of digoxigenin- and fluorescein-labelled probes. , 1994, Trends in genetics : TIG.
[18] H Clevers,et al. Differential expression of the HMG box factors TCF-1 and LEF-1 during murine embryogenesis. , 1993, Development.
[19] D. Raible,et al. Segregation and early dispersal of neural crest cells in the embryonic zebrafish , 1992, Developmental dynamics : an official publication of the American Association of Anatomists.
[20] R Grosschedl,et al. LEF-1, a gene encoding a lymphoid-specific protein with an HMG domain, regulates T-cell receptor alpha enhancer function [corrected]. , 1991, Genes & development.
[21] K. Jones,et al. A thymus-specific member of the HMG protein family regulates the human T cell receptor C alpha enhancer. , 1991, Genes & development.
[22] C. Waddington. Mechanisms of Development , 1955, Nature.
[23] H. Maischein,et al. Function of zebrafish beta-catenin and TCF-3 in dorsoventral patterning. , 1998, Mechanisms of development.
[24] R Grosschedl,et al. Functional interaction of beta-catenin with the transcription factor LEF-1. , 1996, Nature.