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Development, Vol 120, Issue 2 369-380, Copyright © 1994 by Company of Biologists
JOURNAL ARTICLES |
M Peifer, D Sweeton, M Casey and E Wieschaus
Department of Biology, University of North Carolina, Chapel Hill 27599-3280.
wingless/wnt-1 signaling directs cell fate during development. Genetic analysis in Drosophila identified genes that may encode components of the wingless signal transduction system. Drosophila Armadillo, homolog of vertebrate beta-catenin, is required for wingless signaling. Unlike armadillo RNA, Armadillo protein accumulates non-uniformly in different cells of each embryonic segment. We found that cells alter their intracellular distribution of Armadillo in response to Wingless signal, accumulating increased levels of cytoplasmic Armadillo relative to those of membrane-associated protein. Levels of cytoplasmic Armadillo are also regulated by Zeste-White 3 kinase. Analysis of double mutants demonstrates that Armadillo's role in wingless signaling is direct, and that Armadillo functions downstream of both wingless and zeste-white 3. We present a model for the role of Armadillo stripes in transduction of wingless signal.
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R. Nusse, C. Harryman Samos, M. Brink, K. Willert, K.M. Cadigan, A. Wodarz, M. Fish, and E. Rulifson Cell Culture and Whole Animal Approaches to Understanding Signaling by Wnt Proteins in Drosophila Cold Spring Harb Symp Quant Biol, January 1, 1997; 62(0): 185 - 190. [Abstract] [PDF] |
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C. Eisenberg, R. Gourdie, and L. Eisenberg Wnt-11 is expressed in early avian mesoderm and required for the differentiation of the quail mesoderm cell line QCE-6 Development, January 1, 1997; 124(2): 525 - 536. [Abstract] [PDF] |
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J R Miller and R T Moon Signal transduction through beta-catenin and specification of cell fate during embryogenesis. Genes & Dev., October 15, 1996; 10(20): 2527 - 2539. [PDF] |
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C Yost, M Torres, J R Miller, E Huang, D Kimelman, and R T Moon The axis-inducing activity, stability, and subcellular distribution of beta-catenin is regulated in Xenopus embryos by glycogen synthase kinase 3. Genes & Dev., June 15, 1996; 10(12): 1443 - 1454. [Abstract] [PDF] |
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M L Hermiston, M H Wong, and J I Gordon Forced expression of E-cadherin in the mouse intestinal epithelium slows cell migration and provides evidence for nonautonomous regulation of cell fate in a self-renewing system. Genes & Dev., April 15, 1996; 10(8): 985 - 996. [Abstract] [PDF] |
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T Uemura, H Oda, R Kraut, S Hayashi, Y Kotaoka, and M Takeichi Zygotic Drosophila E-cadherin expression is required for processes of dynamic epithelial cell rearrangement in the Drosophila embryo. Genes & Dev., March 15, 1996; 10(6): 659 - 671. [Abstract] [PDF] |
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A. Zhu and F. Watt Expression of a dominant negative cadherin mutant inhibits proliferation and stimulates terminal differentiation of human epidermal keratinocytes J. Cell Sci., January 12, 1996; 109(13): 3013 - 3023. [Abstract] [PDF] |
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M Hatzfeld and C Nachtsheim Cloning and characterization of a new armadillo family member, p0071, associated with the junctional plaque: evidence for a subfamily of closely related proteins J. Cell Sci., January 11, 1996; 109(11): 2767 - 2778. [Abstract] [PDF] |
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C Wylie, M Kofron, C Payne, R Anderson, M Hosobuchi, E Joseph, and J Heasman Maternal beta-catenin establishes a 'dorsal signal' in early Xenopus embryos Development, January 10, 1996; 122(10): 2987 - 2996. [Abstract] [PDF] |
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K. Cadigan and R Nusse wingless signaling in the Drosophila eye and embryonic epidermis Development, January 9, 1996; 122(9): 2801 - 2812. [Abstract] [PDF] |
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X Yu, S Hoppler, S Eresh, and M Bienz decapentaplegic, a target gene of the wingless signalling pathway in the Drosophila midgut Development, January 3, 1996; 122(3): 849 - 858. [Abstract] [PDF] |
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