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PMID: 12538521 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Hedgehog signalling maintains the optic stalk-retinal interface through the regulation of Vax gene activity.

Development (Cambridge, England) ·Vol. 130 ·No. 5 ·2003-03-00 ·Pages 955-68

Take-uchi M, Clarke JD, Wilson SW

Abstract

During early formation of the eye, the optic vesicle becomes partitioned into a proximal domain that forms the optic nerve and a distal domain that forms the retina. In this study, we investigate the activity of Nodal, Hedgehog (Hh) and Fgf signals and Vax family homeodomain proteins in this patterning event. We show that zebrafish vax1 and vax2 are expressed in overlapping domains encompassing the ventral retina, optic stalks and preoptic area. Abrogation of Vax1 and Vax2 activity leads to a failure to close the choroid fissure and progressive expansion of retinal tissue into the optic nerve, finally resulting in a fusion of retinal neurons and pigment epithelium with forebrain tissue. We show that Hh signals acting through Smoothened act downstream of the Nodal pathway to promote Vax gene expression. However, in the absence of both Nodal and Hh signals, Vax genes are expressed revealing that other signals, which we show include Fgfs, contribute to Vax gene regulation. Finally, we show that Pax2.1 and Vax1/Vax2 are likely to act in parallel downstream of Hh activity and that the bel locus (yet to be cloned) mediates the ability of Hh-, and perhaps Fgf-, signals to induce Vax expression in the preoptic area. Taking all these results together, we present a model of the partitioning of the optic vesicle along its proximo-distal axis.

MeSH Terms
Animals Body Patterning Coloboma/pathology Eye Proteins Gene Expression Regulation Gene Expression Regulation, Developmental Genes, Homeobox Hedgehog Proteins Homeodomain Proteins/genetics,metabolism Humans In Situ Hybridization Neuropeptides/genetics,metabolism Nodal Protein Optic Nerve/anatomy & histology,embryology,physiology Phylogeny Receptors, Cell Surface/metabolism Receptors, Fibroblast Growth Factor/metabolism Receptors, G-Protein-Coupled Recombinant Fusion Proteins/metabolism Retina/anatomy & histology,embryology,physiology Signal Transduction/physiology Smoothened Receptor Trans-Activators/genetics,metabolism Transforming Growth Factor beta/metabolism Xenopus Proteins Zebrafish/anatomy & histology,embryology,genetics,metabolism Zebrafish Proteins
Chemicals
Eye Proteins Hedgehog Proteins Homeodomain Proteins NODAL protein, human Neuropeptides Nodal Protein Nodal protein, mouse Receptors, Cell Surface Receptors, Fibroblast Growth Factor Receptors, G-Protein-Coupled Recombinant Fusion Proteins SMO protein, human Smo protein, mouse Smoothened Receptor Trans-Activators Transforming Growth Factor beta VAX2 protein, human Vax1 protein, mouse Xenopus Proteins Zebrafish Proteins smo protein, zebrafish vax1 protein, zebrafish vax2 protein, Xenopus
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Take-uchi Masaya
Department of Anatomy and Developmental Biology, University College London, Gower Street, London, WC1E 6BT, UK. m.take-uchi@ucl.ac.uk, s.wilson@ucl.ac.uk
Clarke Jonathan D W
Wilson Stephen W
Article Info
Journal
Development (Cambridge, England)
Abbr.
Development
ISSN
0950-1991
Published
2003-03-00
Pages
955-68
Language
English
Region
England
NLM ID
8701744
Subset
IM
Grants
Wellcome Trust · WT040852 · United Kingdom
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