POU-domain factor Brn3a regulates both distinct and common programs of gene expression in the spinal and trigeminal sensory ganglia

<p>Abstract</p> <p>Background</p> <p>General somatic sensation is conveyed to the central nervous system at cranial levels by the trigeminal ganglion (TG), and at spinal levels by the dorsal root ganglia (DRG). Although these ganglia have similar functions, they have di...

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Main Authors: Fedtsova Natalia, Lanier Jason, Dykes Iain M, Eng S Raisa, Turner Eric E
Format: Article
Language:English
Published: BMC 2007-01-01
Series:Neural Development
Online Access:http://www.neuraldevelopment.com/content/2/1/3
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spelling doaj-b7b183abed6a410cae9ec9374d58edd12020-11-25T00:19:08ZengBMCNeural Development1749-81042007-01-0121310.1186/1749-8104-2-3POU-domain factor Brn3a regulates both distinct and common programs of gene expression in the spinal and trigeminal sensory gangliaFedtsova NataliaLanier JasonDykes Iain MEng S RaisaTurner Eric E<p>Abstract</p> <p>Background</p> <p>General somatic sensation is conveyed to the central nervous system at cranial levels by the trigeminal ganglion (TG), and at spinal levels by the dorsal root ganglia (DRG). Although these ganglia have similar functions, they have distinct embryological origins, in that both contain neurons originating from the neural crest, while only the TG includes cells derived from the placodal ectoderm.</p> <p>Results</p> <p>Here we use microarray analysis of E13.5 embryos to demonstrate that the developing DRG and TG have very similar overall patterns of gene expression. In mice lacking the POU-domain transcription factor Brn3a, the DRG and TG exhibit many common changes in gene expression, but a subset of Brn3a target genes show increased expression only in the TG. In the wild-type TG these Brn3a-repressed genes are silent, yet their promoter regions exhibit histone H3-acetylation levels similar to constitutively transcribed gene loci. This increased H3-acetylation is not observed in the DRG, suggesting that chromatin modifications play a role in cell-specific target gene regulation by Brn3a.</p> <p>Conclusion</p> <p>These results demonstrate that one developmental role of Brn3a is to repress potential differences in gene expression between sensory neurons generated at different axial levels, and to regulate a convergent program of developmental gene expression, in which functionally similar populations of neurons are generated from different embryological substrates.</p> http://www.neuraldevelopment.com/content/2/1/3
collection DOAJ
language English
format Article
sources DOAJ
author Fedtsova Natalia
Lanier Jason
Dykes Iain M
Eng S Raisa
Turner Eric E
spellingShingle Fedtsova Natalia
Lanier Jason
Dykes Iain M
Eng S Raisa
Turner Eric E
POU-domain factor Brn3a regulates both distinct and common programs of gene expression in the spinal and trigeminal sensory ganglia
Neural Development
author_facet Fedtsova Natalia
Lanier Jason
Dykes Iain M
Eng S Raisa
Turner Eric E
author_sort Fedtsova Natalia
title POU-domain factor Brn3a regulates both distinct and common programs of gene expression in the spinal and trigeminal sensory ganglia
title_short POU-domain factor Brn3a regulates both distinct and common programs of gene expression in the spinal and trigeminal sensory ganglia
title_full POU-domain factor Brn3a regulates both distinct and common programs of gene expression in the spinal and trigeminal sensory ganglia
title_fullStr POU-domain factor Brn3a regulates both distinct and common programs of gene expression in the spinal and trigeminal sensory ganglia
title_full_unstemmed POU-domain factor Brn3a regulates both distinct and common programs of gene expression in the spinal and trigeminal sensory ganglia
title_sort pou-domain factor brn3a regulates both distinct and common programs of gene expression in the spinal and trigeminal sensory ganglia
publisher BMC
series Neural Development
issn 1749-8104
publishDate 2007-01-01
description <p>Abstract</p> <p>Background</p> <p>General somatic sensation is conveyed to the central nervous system at cranial levels by the trigeminal ganglion (TG), and at spinal levels by the dorsal root ganglia (DRG). Although these ganglia have similar functions, they have distinct embryological origins, in that both contain neurons originating from the neural crest, while only the TG includes cells derived from the placodal ectoderm.</p> <p>Results</p> <p>Here we use microarray analysis of E13.5 embryos to demonstrate that the developing DRG and TG have very similar overall patterns of gene expression. In mice lacking the POU-domain transcription factor Brn3a, the DRG and TG exhibit many common changes in gene expression, but a subset of Brn3a target genes show increased expression only in the TG. In the wild-type TG these Brn3a-repressed genes are silent, yet their promoter regions exhibit histone H3-acetylation levels similar to constitutively transcribed gene loci. This increased H3-acetylation is not observed in the DRG, suggesting that chromatin modifications play a role in cell-specific target gene regulation by Brn3a.</p> <p>Conclusion</p> <p>These results demonstrate that one developmental role of Brn3a is to repress potential differences in gene expression between sensory neurons generated at different axial levels, and to regulate a convergent program of developmental gene expression, in which functionally similar populations of neurons are generated from different embryological substrates.</p>
url http://www.neuraldevelopment.com/content/2/1/3
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