Literature DB >> 9169051

Cytoplasmically anchored plakoglobin induces a WNT-like phenotype in Xenopus.

J M Merriam1, A B Rubenstein, M W Klymkowsky.   

Abstract

Plakoglobin is one of two vertebrate proteins closely related to the Drosophila segment polarity gene product armadillo. Overexpression of plakoglobin induces neural axis duplication in Xenopus and the exogenous plakoglobin is localized to nuclei (Karnovsky, A., and Klymkowsky, M. W., Proc. Natl. Acad. Sci. USA 92, 4255, 1995; Rubenstein, A., et al., Dev. Genet., 1997, in press). We have carried out a series of experiments to test whether the nuclear localization of plakoglobin is required for its inductive effects. Prior to the midblastula transition exogenous plakoglobin is cytoplasmic and concentrated in the cortical regions of blastomeres; after the midblastula transition exogenous plakoglobin accumulates in embryonic nuclei. The addition of a "nuclear localization sequence" does not change the timing of plakoglobin's nuclear localization, suggesting that it is anchored in the cytoplasm prior to the midblastula transition. Next, we constructed two "membrane-anchored" forms of plakoglobin. These are exclusively cytoplasmic; yet both were as effective at producing a "Wnt-like" axis duplication as were "free," unfettered forms of plakoglobin. Moreover, expression of anchored plakoglobins had no apparent effect on the cytoplasmic or nuclear levels of beta-catenin. These data indicate that plakoglobin can act cytoplasmically to generate a WNT-like phenotype. Taken together with the ventralizing effects of a mutant from of the XTcf-3 transcription factor, described by Molenaar et al. Cell 86, 391, 1996, we speculate that in the early Xenopus embryo, activation of plakoglobin (or beta-catenin) inhibits the activity of XTcf-3 or a XTcf-3-like factor.

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Year:  1997        PMID: 9169051     DOI: 10.1006/dbio.1997.8550

Source DB:  PubMed          Journal:  Dev Biol        ISSN: 0012-1606            Impact factor:   3.582


  24 in total

1.  Membrane-anchored plakoglobins have multiple mechanisms of action in Wnt signaling.

Authors:  M W Klymkowsky; B O Williams; G D Barish; H E Varmus; Y E Vourgourakis
Journal:  Mol Biol Cell       Date:  1999-10       Impact factor: 4.138

2.  Differential mechanisms of LEF/TCF family-dependent transcriptional activation by beta-catenin and plakoglobin.

Authors:  J Zhurinsky; M Shtutman; A Ben-Ze'ev
Journal:  Mol Cell Biol       Date:  2000-06       Impact factor: 4.272

Review 3.  Signal transduction by the Wnt family of ligands.

Authors:  T C Dale
Journal:  Biochem J       Date:  1998-01-15       Impact factor: 3.857

4.  Wnt signaling and transcriptional control of Siamois in Xenopus embryos.

Authors:  M J Fan; W Grüning; G Walz; S Y Sokol
Journal:  Proc Natl Acad Sci U S A       Date:  1998-05-12       Impact factor: 11.205

5.  Identifying domains of EFHC1 involved in ciliary localization, ciliogenesis, and the regulation of Wnt signaling.

Authors:  Ying Zhao; Jianli Shi; Mark Winey; Michael W Klymkowsky
Journal:  Dev Biol       Date:  2016-01-16       Impact factor: 3.582

6.  Activation and evasion of the antiviral 2'-5' oligoadenylate synthetase/ribonuclease L pathway by hepatitis C virus mRNA.

Authors:  Jian-Qiu Han; David J Barton
Journal:  RNA       Date:  2002-04       Impact factor: 4.942

7.  SOX7 and SOX18 are essential for cardiogenesis in Xenopus.

Authors:  Chi Zhang; Tamara Basta; Michael W Klymkowsky
Journal:  Dev Dyn       Date:  2005-12       Impact factor: 3.780

8.  Roles of the C terminus of Armadillo in Wingless signaling in Drosophila.

Authors:  R T Cox; L M Pai; C Kirkpatrick; J Stein; M Peifer
Journal:  Genetics       Date:  1999-09       Impact factor: 4.562

Review 9.  Desmosomes: new perpetrators in tumour suppression.

Authors:  Rachel L Dusek; Laura D Attardi
Journal:  Nat Rev Cancer       Date:  2011-05       Impact factor: 60.716

10.  Defining the roles of beta-catenin and plakoglobin in LEF/T-cell factor-dependent transcription using beta-catenin/plakoglobin-null F9 cells.

Authors:  Masayuki Shimizu; Yoshitaka Fukunaga; Junichi Ikenouchi; Akira Nagafuchi
Journal:  Mol Cell Biol       Date:  2007-11-05       Impact factor: 4.272

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