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ATF3 upregulation in glia during Wallerian degeneration: differential expression in peripheral nerves and CNS white matter

BACKGROUND: Many changes in gene expression occur in distal stumps of injured nerves but the transcriptional control of these events is poorly understood. We have examined the expression of the transcription factors ATF3 and c-Jun by non-neuronal cells during Wallerian degeneration following injury...

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Autores principales: Hunt, David, Hossain-Ibrahim, Kismet, Mason, Matthew RJ, Coffin, Robert S, Lieberman, AR, Winterbottom, Julia, Anderson, PN
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2004
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC400733/
https://www.ncbi.nlm.nih.gov/pubmed/15113454
http://dx.doi.org/10.1186/1471-2202-5-9
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author Hunt, David
Hossain-Ibrahim, Kismet
Mason, Matthew RJ
Coffin, Robert S
Lieberman, AR
Winterbottom, Julia
Anderson, PN
author_facet Hunt, David
Hossain-Ibrahim, Kismet
Mason, Matthew RJ
Coffin, Robert S
Lieberman, AR
Winterbottom, Julia
Anderson, PN
author_sort Hunt, David
collection PubMed
description BACKGROUND: Many changes in gene expression occur in distal stumps of injured nerves but the transcriptional control of these events is poorly understood. We have examined the expression of the transcription factors ATF3 and c-Jun by non-neuronal cells during Wallerian degeneration following injury to sciatic nerves, dorsal roots and optic nerves of rats and mice, using immunohistochemistry and in situ hybridization. RESULTS: Following sciatic nerve injury – transection or transection and reanastomosis – ATF3 was strongly upregulated by endoneurial, but not perineurial cells, of the distal stumps of the nerves by 1 day post operation (dpo) and remained strongly expressed in the endoneurium at 30 dpo when axonal regeneration was prevented. Most ATF3+ cells were immunoreactive for the Schwann cell marker, S100. When the nerve was transected and reanastomosed, allowing regeneration of axons, most ATF3 expression had been downregulated by 30 dpo. ATF3 expression was weaker in the proximal stumps of the injured nerves than in the distal stumps and present in fewer cells at all times after injury. ATF3 was upregulated by endoneurial cells in the distal stumps of injured neonatal rat sciatic nerves, but more weakly than in adult animals. ATF3 expression in transected sciatic nerves of mice was similar to that in rats. Following dorsal root injury in adult rats, ATF3 was upregulated in the part of the root between the lesion and the spinal cord (containing Schwann cells), beginning at 1 dpo, but not in the dorsal root entry zone or in the degenerating dorsal column of the spinal cord. Following optic nerve crush in adult rats, ATF3 was found in some cells at the injury site and small numbers of cells within the optic nerve displayed weak immunoreactivity. The pattern of expression of c-Jun in all types of nerve injury was similar to that of ATF3. CONCLUSION: These findings raise the possibility that ATF3/c-Jun heterodimers may play a role in regulating changes in gene expression necessary for preparing the distal segments of injured peripheral nerves for axonal regeneration. The absence of the ATF3 and c-Jun from CNS glia during Wallerian degeneration may limit their ability to support regeneration.
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spelling pubmed-4007332004-05-02 ATF3 upregulation in glia during Wallerian degeneration: differential expression in peripheral nerves and CNS white matter Hunt, David Hossain-Ibrahim, Kismet Mason, Matthew RJ Coffin, Robert S Lieberman, AR Winterbottom, Julia Anderson, PN BMC Neurosci Research Article BACKGROUND: Many changes in gene expression occur in distal stumps of injured nerves but the transcriptional control of these events is poorly understood. We have examined the expression of the transcription factors ATF3 and c-Jun by non-neuronal cells during Wallerian degeneration following injury to sciatic nerves, dorsal roots and optic nerves of rats and mice, using immunohistochemistry and in situ hybridization. RESULTS: Following sciatic nerve injury – transection or transection and reanastomosis – ATF3 was strongly upregulated by endoneurial, but not perineurial cells, of the distal stumps of the nerves by 1 day post operation (dpo) and remained strongly expressed in the endoneurium at 30 dpo when axonal regeneration was prevented. Most ATF3+ cells were immunoreactive for the Schwann cell marker, S100. When the nerve was transected and reanastomosed, allowing regeneration of axons, most ATF3 expression had been downregulated by 30 dpo. ATF3 expression was weaker in the proximal stumps of the injured nerves than in the distal stumps and present in fewer cells at all times after injury. ATF3 was upregulated by endoneurial cells in the distal stumps of injured neonatal rat sciatic nerves, but more weakly than in adult animals. ATF3 expression in transected sciatic nerves of mice was similar to that in rats. Following dorsal root injury in adult rats, ATF3 was upregulated in the part of the root between the lesion and the spinal cord (containing Schwann cells), beginning at 1 dpo, but not in the dorsal root entry zone or in the degenerating dorsal column of the spinal cord. Following optic nerve crush in adult rats, ATF3 was found in some cells at the injury site and small numbers of cells within the optic nerve displayed weak immunoreactivity. The pattern of expression of c-Jun in all types of nerve injury was similar to that of ATF3. CONCLUSION: These findings raise the possibility that ATF3/c-Jun heterodimers may play a role in regulating changes in gene expression necessary for preparing the distal segments of injured peripheral nerves for axonal regeneration. The absence of the ATF3 and c-Jun from CNS glia during Wallerian degeneration may limit their ability to support regeneration. BioMed Central 2004-03-04 /pmc/articles/PMC400733/ /pubmed/15113454 http://dx.doi.org/10.1186/1471-2202-5-9 Text en Copyright © 2004 Hunt et al; licensee BioMed Central Ltd. This is an Open Access article: verbatim copying and redistribution of this article are permitted in all media for any purpose, provided this notice is preserved along with the article's original URL.
spellingShingle Research Article
Hunt, David
Hossain-Ibrahim, Kismet
Mason, Matthew RJ
Coffin, Robert S
Lieberman, AR
Winterbottom, Julia
Anderson, PN
ATF3 upregulation in glia during Wallerian degeneration: differential expression in peripheral nerves and CNS white matter
title ATF3 upregulation in glia during Wallerian degeneration: differential expression in peripheral nerves and CNS white matter
title_full ATF3 upregulation in glia during Wallerian degeneration: differential expression in peripheral nerves and CNS white matter
title_fullStr ATF3 upregulation in glia during Wallerian degeneration: differential expression in peripheral nerves and CNS white matter
title_full_unstemmed ATF3 upregulation in glia during Wallerian degeneration: differential expression in peripheral nerves and CNS white matter
title_short ATF3 upregulation in glia during Wallerian degeneration: differential expression in peripheral nerves and CNS white matter
title_sort atf3 upregulation in glia during wallerian degeneration: differential expression in peripheral nerves and cns white matter
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC400733/
https://www.ncbi.nlm.nih.gov/pubmed/15113454
http://dx.doi.org/10.1186/1471-2202-5-9
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