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PMID: 9852573 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Nerve growth factor-dependent activation of NF-kappaB contributes to survival of sympathetic neurons.

Maggirwar SB, Sarmiere PD, Dewhurst S, Freeman RS

Abstract

Neurotrophins activate multiple signaling pathways in neurons. However, the precise roles of these signaling molecules in cell survival are not well understood. In this report, we show that nerve growth factor (NGF) activates the transcription factors NF-kappaB and AP-1 in cultured sympathetic neurons. Activated NF-kappaB complexes were shown to consist of heterodimers of p50 and Rel proteins (RelA, as well as c-Rel), and NF-kappaB activation was found to occur independently of de novo protein synthesis but in a manner that required the action of the proteasome complex. Treatment with the NF-kappaB inhibitory peptide SN50 in the continuous presence of NGF resulted in dose-dependent induction of cell death. Under the conditions used, SN50 was shown to selectively inhibit NF-kappaB activation but not the activation of other cellular transcription factors such as AP-1 and cAMP response element-binding protein. Cells treated with SN50 exhibited morphological and biochemical hallmarks of apoptosis, and the kinetics of cell killing were accelerated relative to death induced by NGF withdrawal. Finally, experiments were conducted to test directly whether NF-kappaB could act as a survival factor for NGF-deprived neurons. Microinjection of cells with an expression plasmid encoding NF-kappaB (c-Rel) resulted in enhanced neuronal survival after withdrawal of NGF, whereas cells that were transfected with a vector encoding a mutated derivative of c-Rel lacking the transactivation domain underwent cell death to the same extent as control cells. Together, these findings suggest that the activation of NF-kappaB/Rel transcription factors may contribute to the survival of NGF-dependent sympathetic neurons.

MeSH Terms
Adrenergic Fibers/drug effects,metabolism Animals Apoptosis Cell Survival/drug effects Cells, Cultured Cysteine Proteinase Inhibitors/pharmacology DNA/metabolism DNA-Binding Proteins/metabolism Dimerization Embryo, Mammalian Host Cell Factor C1 Hydrolysis I-kappa B Proteins NF-KappaB Inhibitor alpha NF-kappa B/antagonists & inhibitors,drug effects,metabolism NF-kappa B p50 Subunit Nerve Growth Factors/pharmacology Octamer Transcription Factor-1 Oligopeptides/pharmacology Peptide Hydrolases/metabolism Peptides/pharmacology Protein Binding/drug effects Proto-Oncogene Proteins/biosynthesis Proto-Oncogene Proteins c-rel Rats Superior Cervical Ganglion/drug effects,metabolism Transcription Factor AP-1/metabolism Transcription Factor RelA Transcription Factors/metabolism
Chemicals
Cysteine Proteinase Inhibitors DNA-Binding Proteins Host Cell Factor C1 I-kappa B Proteins NF-kappa B NF-kappa B p50 Subunit Nerve Growth Factors Nfkbia protein, rat Octamer Transcription Factor-1 Oligopeptides Peptides Pou2f1 protein, rat Proto-Oncogene Proteins Proto-Oncogene Proteins c-rel SN50 peptide Transcription Factor AP-1 Transcription Factor RelA Transcription Factors NF-KappaB Inhibitor alpha DNA Peptide Hydrolases
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Maggirwar S B
Department of Microbiology and Immunology, University of Rochester Medical Center, Rochester, New York 14642, USA.
Sarmiere P D
Dewhurst S
Freeman R S
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Article Info
Journal
The Journal of neuroscience : the official journal of the Society for Neuroscience
Abbr.
J Neurosci
ISSN
0270-6474
Published
1998-12-15
Pages
10356-65
Language
English
Region
United States
NLM ID
8102140
PMCID
PMC6793355
Subset
IM
Grants
NINDS NIH HHS · R01 NS34400 · United States
NIEHS NIH HHS · ES07026 · United States
NIEHS NIH HHS · R01 ES007026 · United States
NINDS NIH HHS · R01 NS034400 · United States
NIMH NIH HHS · P01 MH57556 · United States
NIEHS NIH HHS · T32 ES007026 · United States
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