Literature DB >> 8939612

Early developmental expression and experimental axis determination by the chicken Vg1 gene.

E A Seleiro1, D J Connolly, J Cooke.   

Abstract

BACKGROUND: Genes of the transforming growth factor beta (TGF beta) superfamily have been implicated in the earliest steps of developmental patterning in vertebrates. In Xenopus, the Vg1 gene is a candidate for the initiator of axis formation: its RNA and protein are broadly but appropriately localized at the start of development, and processed Vg1 protein is a powerful inducer of organized axial tissue in blastular animal caps in vitro and when locally produced in vivo after injection of Vg1 mRNA into blastomeres. Site-specific proteolytic processing occurs ubiquitously for most TGF beta members, producing the active peptide ligand, but is tightly restricted, by unknown mechanisms, for endogenous Vg protein in Xenopus and zebrafish embryos. This restriction may be involved in the spatial localization of activity required for an organizing role.
RESULTS: We have characterized an amniote (chick) orthologue of Vg1, cVg1, and examined its developmental expression. The early expression of cVg1 includes a phase broadly related to the known time and site of axis (primitive streak) initiation; the initial transcription of cVg1 is centred in the posterior marginal zone (PMZ), a region of the blastoderm known to contain the axial organizing activity at this stage. We also observed later neural and paraxial mesodermal expression of cVg1, which has not been described previously for Vg homologues in other vertebrates. We have grafted transfected COS cells, producing processed cVg1 protein, to peripheral positions around the chick early blastoderm. Such grafts initiate formation of morphologically complete primitive streaks, simulating the properties of grafts from the PMZ.
CONCLUSIONS: In vertebrate development, Vg genes may be required for an evolutionarily conserved early step in positioning or induction of the axis.

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Year:  1996        PMID: 8939612     DOI: 10.1016/s0960-9822(96)00752-x

Source DB:  PubMed          Journal:  Curr Biol        ISSN: 0960-9822            Impact factor:   10.834


  18 in total

Review 1.  Forming and interpreting gradients in the early Xenopus embryo.

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2.  A role for Vg1/Nodal signaling in specification of the intermediate mesoderm.

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3.  Exploring the roles of FGF/MAPK and cVG1/GDF signalling on mesendoderm induction and convergent extension during chick primitive streak formation.

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4.  The extra-embryonic area opaca plays a role in positioning the primitive streak of the early chick embryo.

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5.  Gata2 provides an early anterior bias and uncovers a global positioning system for polarity in the amniote embryo.

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6.  Notochord repression of endodermal Sonic hedgehog permits pancreas development.

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7.  Modeling gastrulation in the chick embryo: formation of the primitive streak.

Authors:  Bakhtier Vasiev; Ariel Balter; Mark Chaplain; James A Glazier; Cornelis J Weijer
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8.  EGF-CFC proteins are essential coreceptors for the TGF-beta signals Vg1 and GDF1.

Authors:  Simon K Cheng; Felix Olale; James T Bennett; Ali H Brivanlou; Alexander F Schier
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Review 9.  Early human development: new data raise important embryological and ethical questions relevant for stem cell research.

Authors:  Hans-Werner Denker
Journal:  Naturwissenschaften       Date:  2003-12-18

10.  Expression patterns of signalling molecules and transcription factors in the early rabbit embryo and their significance for modelling amniote axis formation.

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Journal:  Dev Genes Evol       Date:  2021-06-07       Impact factor: 0.900

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