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PMID: 2450099 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Inhibitors of protein synthesis and RNA synthesis prevent neuronal death caused by nerve growth factor deprivation.

The Journal of cell biology ·Vol. 106 ·No. 3 ·1988-03-00 ·Pages 829-44

Martin DP, Schmidt RE, DiStefano PS, Lowry OH, Carter JG, Johnson EM

Abstract

We have developed an experimental paradigm to study the mechanism by which nerve growth factor (NGF) allows the survival of sympathetic neurons. Dissociated sympathetic neurons from embryonic day-21 rats were grown in vitro for 7 d in the presence of NGF. Neurons were then deprived of trophic support by adding anti-NGF antiserum, causing them to die between 24 and 48 h later. Ultrastructural changes included disruption of neurites, followed by cell body changes characterized by an accumulation of lipid droplets, changes in the nuclear membrane, and dilation of the rough endoplasmic reticulum. No primary alterations of mitochondria or lysosomes were observed. The death of NGF-deprived neurons was characterized biochemically by assessing [35S]methionine incorporation into TCA precipitable protein and by measuring the release of the cytosolic enzyme adenylate kinase into the culture medium. Methionine incorporation began to decrease approximately 18 h post-deprivation and was maximally depressed by 36 h. Adenylate kinase began to appear in the culture medium approximately 30 h after deprivation, reaching a maximum by 54 h. The death of NGF-deprived neurons was entirely prevented by inhibiting protein or RNA synthesis. Cycloheximide, puromycin, anisomycin, actinomycin-D, and dichlorobenzimidazole riboside all prevented neuronal death subsequent to NGF deprivation as assessed by the above morphologic and biochemical criteria. The fact that sympathetic neurons must synthesize protein and RNA to die when deprived of NGF indicates that NGF, and presumably other neurotrophic factors, maintains neuronal survival by suppressing an endogenous, active death program.

MeSH Terms
Animals Cell Survival/drug effects Cells, Cultured Cycloheximide/pharmacology Dactinomycin/pharmacology Lysosomes/physiology Microscopy, Electron Nerve Growth Factors/metabolism,physiology Nerve Tissue Proteins/biosynthesis Neurons/drug effects,physiology,ultrastructure RNA/biosynthesis,drug effects Rats Sympathetic Nervous System/cytology
Chemicals
Nerve Growth Factors Nerve Tissue Proteins Dactinomycin RNA Cycloheximide
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Martin D P
Department of Pharmacology, Washington University School of Medicine, St. Louis, Missouri 63110.
Schmidt R E
DiStefano P S
Lowry O H
Carter J G
Johnson E M
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Article Info
Journal
The Journal of cell biology
Abbr.
J Cell Biol
ISSN
0021-9525
Published
1988-03-00
Pages
829-44
Language
English
Region
United States
NLM ID
0375356
PMCID
PMC2115082
Subset
IM
Grants
NIDDK NIH HHS · DK19645 · United States
NIGMS NIH HHS · GM07200 · United States
NINDS NIH HHS · NS18071 · United States
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