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Genes & Development|April 1, 1997
The winged helix transcription factor MFH1 is required for proliferation and patterning of paraxial mesoderm in the mouse embryoG E Winnier, L Hargett, B L HoganDevelopment (Cambridge, England). Supplement|January 1, 1994
Growth factors in development: the role of TGF-beta related polypeptide signalling molecules in embryogenesisB L Hogan, M Blessing, G E Winnier, et al.Genomics|June 1, 1996
The chromosomal mapping of four genes encoding winged helix proteins expressed early in mouse developmentP A Labosky, G E Winnier, H Sasaki, et al.Mechanisms of Development|March 24, 1998
Mouse Mesenchyme forkhead 2 (Mf2): expression, DNA binding and induction by sonic hedgehog during somitogenesisS C Wu, J Grindley, G E Winnier, et al.Genes & Development|March 15, 1997
The bZIP transcription factor LCR-F1 is essential for mesoderm formation in mouse developmentS C Farmer, C W Sun, G E Winnier, et al.Mechanisms of Development|June 1, 1999
A mouse homologue of FAST-1 transduces TGF beta superfamily signals and is expressed during early embryogenesisE Weisberg, G E Winnier, X Chen, et al.Proceedings of the National Academy of Sciences of the United States of America|April 1, 1997
Essential role of the tyrosine kinase substrate phospholipase C-gamma1 in mammalian growth and developmentQ S Ji, G E Winnier, K D Niswender, et al.Developmental Biology|August 15, 1997
Haploinsufficient phenotypes in Bmp4 heterozygous null mice and modification by mutations in Gli3 and Alx4N R Dunn, G E Winnier, L K Hargett, et al.Developmental Biology|September 10, 1999
Roles for the winged helix transcription factors MF1 and MFH1 in cardiovascular development revealed by nonallelic noncomplementation of null allelesG E Winnier, T Kume, K Deng, et al.Development (Cambridge, England)|April 1, 1997
The winged helix gene, Mf3, is required for normal development of the diencephalon and midbrain, postnatal growth and the milk-ejection reflexP A Labosky, G E Winnier, T L Jetton, et al.Pageof 1