Cargando…

Pbx homeodomain proteins pattern both the zebrafish retina and tectum

BACKGROUND: Pbx genes encode TALE class homeodomain transcription factors that pattern the developing neural tube, pancreas, and blood. Within the hindbrain, Pbx cooperates with Hox proteins to regulate rhombomere segment identity. Pbx cooperates with Eng to regulate midbrain-hindbrain boundary main...

Descripción completa

Detalles Bibliográficos
Autores principales: French, Curtis R, Erickson, Timothy, Callander, Davon, Berry, Karyn M, Koss, Ron, Hagey, Daniel W, Stout, Jennifer, Wuennenberg-Stapleton, Katrin, Ngai, John, Moens, Cecilia B, Waskiewicz, Andrew J
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1934912/
https://www.ncbi.nlm.nih.gov/pubmed/17634100
http://dx.doi.org/10.1186/1471-213X-7-85
_version_ 1782134353956962304
author French, Curtis R
Erickson, Timothy
Callander, Davon
Berry, Karyn M
Koss, Ron
Hagey, Daniel W
Stout, Jennifer
Wuennenberg-Stapleton, Katrin
Ngai, John
Moens, Cecilia B
Waskiewicz, Andrew J
author_facet French, Curtis R
Erickson, Timothy
Callander, Davon
Berry, Karyn M
Koss, Ron
Hagey, Daniel W
Stout, Jennifer
Wuennenberg-Stapleton, Katrin
Ngai, John
Moens, Cecilia B
Waskiewicz, Andrew J
author_sort French, Curtis R
collection PubMed
description BACKGROUND: Pbx genes encode TALE class homeodomain transcription factors that pattern the developing neural tube, pancreas, and blood. Within the hindbrain, Pbx cooperates with Hox proteins to regulate rhombomere segment identity. Pbx cooperates with Eng to regulate midbrain-hindbrain boundary maintenance, and with MyoD to control fast muscle cell differentiation. Although previous results have demonstrated that Pbx is required for proper eye size, functions in regulating retinal cell identity and patterning have not yet been examined. RESULTS: Analysis of retinal ganglion cell axon pathfinding and outgrowth in pbx2/4 null embryos demonstrated a key role for pbx genes in regulating neural cell behavior. To identify Pbx-dependent genes involved in regulating retino-tectal pathfinding, we conducted a microarray screen for Pbx-dependent transcripts in zebrafish, and detected genes that are specifically expressed in the eye and tectum. A subset of Pbx-dependent retinal transcripts delineate specific domains in the dorso-temporal lobe of the developing retina. Furthermore, we determined that some Pbx-dependent transcripts also require Meis1 and Gdf6a function. Since gdf6a expression is also dependent on Pbx, we propose a model in which Pbx proteins regulate expression of the growth factor gdf6a, which in turn regulates patterning of the dorso-temporal lobe of the retina. This, in concert with aberrant tectal patterning in pbx2/4 null embryos, may lead to the observed defects in RGC outgrowth. CONCLUSION: These data define a novel role for Pbx in patterning the vertebrate retina and tectum in a manner required for proper retinal ganglion cell axon outgrowth.
format Text
id pubmed-1934912
institution National Center for Biotechnology Information
language English
publishDate 2007
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-19349122007-07-31 Pbx homeodomain proteins pattern both the zebrafish retina and tectum French, Curtis R Erickson, Timothy Callander, Davon Berry, Karyn M Koss, Ron Hagey, Daniel W Stout, Jennifer Wuennenberg-Stapleton, Katrin Ngai, John Moens, Cecilia B Waskiewicz, Andrew J BMC Dev Biol Research Article BACKGROUND: Pbx genes encode TALE class homeodomain transcription factors that pattern the developing neural tube, pancreas, and blood. Within the hindbrain, Pbx cooperates with Hox proteins to regulate rhombomere segment identity. Pbx cooperates with Eng to regulate midbrain-hindbrain boundary maintenance, and with MyoD to control fast muscle cell differentiation. Although previous results have demonstrated that Pbx is required for proper eye size, functions in regulating retinal cell identity and patterning have not yet been examined. RESULTS: Analysis of retinal ganglion cell axon pathfinding and outgrowth in pbx2/4 null embryos demonstrated a key role for pbx genes in regulating neural cell behavior. To identify Pbx-dependent genes involved in regulating retino-tectal pathfinding, we conducted a microarray screen for Pbx-dependent transcripts in zebrafish, and detected genes that are specifically expressed in the eye and tectum. A subset of Pbx-dependent retinal transcripts delineate specific domains in the dorso-temporal lobe of the developing retina. Furthermore, we determined that some Pbx-dependent transcripts also require Meis1 and Gdf6a function. Since gdf6a expression is also dependent on Pbx, we propose a model in which Pbx proteins regulate expression of the growth factor gdf6a, which in turn regulates patterning of the dorso-temporal lobe of the retina. This, in concert with aberrant tectal patterning in pbx2/4 null embryos, may lead to the observed defects in RGC outgrowth. CONCLUSION: These data define a novel role for Pbx in patterning the vertebrate retina and tectum in a manner required for proper retinal ganglion cell axon outgrowth. BioMed Central 2007-07-16 /pmc/articles/PMC1934912/ /pubmed/17634100 http://dx.doi.org/10.1186/1471-213X-7-85 Text en Copyright © 2007 French et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
French, Curtis R
Erickson, Timothy
Callander, Davon
Berry, Karyn M
Koss, Ron
Hagey, Daniel W
Stout, Jennifer
Wuennenberg-Stapleton, Katrin
Ngai, John
Moens, Cecilia B
Waskiewicz, Andrew J
Pbx homeodomain proteins pattern both the zebrafish retina and tectum
title Pbx homeodomain proteins pattern both the zebrafish retina and tectum
title_full Pbx homeodomain proteins pattern both the zebrafish retina and tectum
title_fullStr Pbx homeodomain proteins pattern both the zebrafish retina and tectum
title_full_unstemmed Pbx homeodomain proteins pattern both the zebrafish retina and tectum
title_short Pbx homeodomain proteins pattern both the zebrafish retina and tectum
title_sort pbx homeodomain proteins pattern both the zebrafish retina and tectum
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1934912/
https://www.ncbi.nlm.nih.gov/pubmed/17634100
http://dx.doi.org/10.1186/1471-213X-7-85
work_keys_str_mv AT frenchcurtisr pbxhomeodomainproteinspatternboththezebrafishretinaandtectum
AT ericksontimothy pbxhomeodomainproteinspatternboththezebrafishretinaandtectum
AT callanderdavon pbxhomeodomainproteinspatternboththezebrafishretinaandtectum
AT berrykarynm pbxhomeodomainproteinspatternboththezebrafishretinaandtectum
AT kossron pbxhomeodomainproteinspatternboththezebrafishretinaandtectum
AT hageydanielw pbxhomeodomainproteinspatternboththezebrafishretinaandtectum
AT stoutjennifer pbxhomeodomainproteinspatternboththezebrafishretinaandtectum
AT wuennenbergstapletonkatrin pbxhomeodomainproteinspatternboththezebrafishretinaandtectum
AT ngaijohn pbxhomeodomainproteinspatternboththezebrafishretinaandtectum
AT moensceciliab pbxhomeodomainproteinspatternboththezebrafishretinaandtectum
AT waskiewiczandrewj pbxhomeodomainproteinspatternboththezebrafishretinaandtectum