Literature DB >> 10498686

The homeobox gene, Xanf-1, can control both neural differentiation and patterning in the presumptive anterior neurectoderm of the Xenopus laevis embryo.

G V Ermakova1, E M Alexandrova, O V Kazanskaya, O L Vasiliev, M W Smith, A G Zaraisky.   

Abstract

From the onset of neurectoderm differentiation, homeobox genes of the Anf class are expressed within a region corresponding to the presumptive telencephalic and rostral diencephalic primordia. Here we investigate functions of the Xenopus member of Anf, Xanf-1, in the differentiation of the anterior neurectoderm. We demonstrate that ectopic Xanf-1 can expand the neural plate at expense of adjacent non-neural ectoderm. In tadpoles, the expanded regions of the plate developed into abnormal brain outgrowths. At the same time, Xanf-1 can inhibit terminal differentiation of primary neurones. We also show that, during gastrula/neurula stages, the exogenous Xanf-1 can downregulate four transcription regulators, XBF-1, Otx-2, Pax-6 and the endogenous Xanf-1, that are expressed in the anterior neurectoderm. However, during further development, when the exogenous Xanf-1 was presumably degraded, re-activation of XBF-1, Otx-2 and Pax-6 was observed in the abnormal outgrowths developed from blastomeres microinjected with Xanf-1 mRNA. Other effects of the ectopic Xanf-1 include cyclopic phenotype and inhibition of the cement gland, both by Otx-2-dependent and -independent mechanisms. Using fusions of Xanf-1 with the repressor domain of Drosophila engrailed or activator domain of herpes virus VP16 protein, we showed that most of the observed effects of Xanf-1 were probably elicited by its functioning as a transcription repressor. Altogether, our data indicate that the repressor function of Xanf-1 may be necessary for regulation of both neural differentiation and patterning in the presumptive anterior neurectoderm.

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Year:  1999        PMID: 10498686     DOI: 10.1242/dev.126.20.4513

Source DB:  PubMed          Journal:  Development        ISSN: 0950-1991            Impact factor:   6.868


  16 in total

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Authors:  Cynthia L Andoniadou; Massimo Signore; Rodrigo M Young; Carles Gaston-Massuet; Stephen W Wilson; Elaine Fuchs; Juan Pedro Martinez-Barbera
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Review 3.  Fluorescent proteins as biomarkers and biosensors: throwing color lights on molecular and cellular processes.

Authors:  Olesya V Stepanenko; Vladislav V Verkhusha; Irina M Kuznetsova; Vladimir N Uversky; K K Turoverov
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4.  Ras-dva is a novel Pit-1- and glucocorticoid-regulated gene in the embryonic anterior pituitary gland.

Authors:  Laura E Ellestad; Tom E Porter
Journal:  Endocrinology       Date:  2012-11-16       Impact factor: 4.736

5.  Anterior patterning genes induced by Zic1 are sensitive to retinoic acid and its metabolite, 4-oxo-RA.

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Journal:  Dev Dyn       Date:  2021-09-24       Impact factor: 3.780

6.  Ribozyme suppression of endogenous thyroid hormone receptor activity in Xenopus laevis cells.

Authors:  Wayland Lim; J David Furlow
Journal:  Nucleic Acids Res       Date:  2002-08-01       Impact factor: 16.971

7.  Xenopus mutant reveals necessity of rax for specifying the eye field which otherwise forms tissue with telencephalic and diencephalic character.

Authors:  Margaret B Fish; Takuya Nakayama; Marilyn Fisher; Nicolas Hirsch; Amanda Cox; Rollin Reeder; Samantha Carruthers; Amanda Hall; Derek L Stemple; Robert M Grainger
Journal:  Dev Biol       Date:  2014-09-16       Impact factor: 3.582

8.  Six3 functions in anterior neural plate specification by promoting cell proliferation and inhibiting Bmp4 expression.

Authors:  Gaia Gestri; Matthias Carl; Irene Appolloni; Stephen W Wilson; Giuseppina Barsacchi; Massimiliano Andreazzoli
Journal:  Development       Date:  2005-04-20       Impact factor: 6.868

9.  A second-generation device for automated training and quantitative behavior analyses of molecularly-tractable model organisms.

Authors:  Douglas Blackiston; Tal Shomrat; Cindy L Nicolas; Christopher Granata; Michael Levin
Journal:  PLoS One       Date:  2010-12-17       Impact factor: 3.240

10.  Lack of the murine homeobox gene Hesx1 leads to a posterior transformation of the anterior forebrain.

Authors:  Cynthia L Andoniadou; Massimo Signore; Ezat Sajedi; Carles Gaston-Massuet; Daniel Kelberman; Alan J Burns; Nobue Itasaki; Mehul Dattani; Juan Pedro Martinez-Barbera
Journal:  Development       Date:  2007-03-14       Impact factor: 6.868

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