The view that memory is encoded by variations in the strength of synapses implies that long-term biochemical changes take place within subcellular microdomains of neurons. These changes are thought ultimately to be an effect of transcriptional regulation of specific genes. Localized changes, however, cannot be fully explained by a purely transcriptional control of gene expression. The neuron-specific ELAV-like HuB, HuC, and HuD RNA-binding proteins act posttranscriptionally by binding to adenine- and uridinerich elements (AREs) in the 3* untranslated region of a set of target mRNAs, and by increasing mRNA cytoplasmic stability andyor rate of translation. Here we show that neuronal ELAV-like genes undergo a sustained up-regulation in hippocampal pyramidal cells only of mice and rats that have learned a spatial discrimination paradigm. This learning-specific increase of ELAV-like proteins was localized within cytoplasmic compartments of the somata and proximal dendrites and was associated with the cytoskeleton. This increase was also accompanied by enhanced expression of the GAP-43 gene, known to be regulated mainly posttranscriptionally and whose mRNA is demonstrated here to be an in vivo ELAV-like target. Antisense-mediated knockdown of HuC impaired spatial learning performance in mice and induced a concomitant downregulation of GAP-43 expression. Neuronal ELAV-like proteins could exert learning-induced posttranscriptional control of an array of target genes uniquely suited to subserve substrates of memory storage.

Post-transcriptional regulation of gene expression in learning by the neuronal ELAV-like mRNA stabilizing proteins

PASCALE, ALESSIA ANGELA;
2001-01-01

Abstract

The view that memory is encoded by variations in the strength of synapses implies that long-term biochemical changes take place within subcellular microdomains of neurons. These changes are thought ultimately to be an effect of transcriptional regulation of specific genes. Localized changes, however, cannot be fully explained by a purely transcriptional control of gene expression. The neuron-specific ELAV-like HuB, HuC, and HuD RNA-binding proteins act posttranscriptionally by binding to adenine- and uridinerich elements (AREs) in the 3* untranslated region of a set of target mRNAs, and by increasing mRNA cytoplasmic stability andyor rate of translation. Here we show that neuronal ELAV-like genes undergo a sustained up-regulation in hippocampal pyramidal cells only of mice and rats that have learned a spatial discrimination paradigm. This learning-specific increase of ELAV-like proteins was localized within cytoplasmic compartments of the somata and proximal dendrites and was associated with the cytoskeleton. This increase was also accompanied by enhanced expression of the GAP-43 gene, known to be regulated mainly posttranscriptionally and whose mRNA is demonstrated here to be an in vivo ELAV-like target. Antisense-mediated knockdown of HuC impaired spatial learning performance in mice and induced a concomitant downregulation of GAP-43 expression. Neuronal ELAV-like proteins could exert learning-induced posttranscriptional control of an array of target genes uniquely suited to subserve substrates of memory storage.
2001
The Pharmacology/Toxicology category covers resources on all aspects of clinical pharmacology and toxicology including psycho-pharmacology, pharmacokinetics, pharmacotherapy, drug monitoring and drug safety, chemotherapy, clinical and hospital pharmacy, and clinical trials.
Sì, ma tipo non specificato
Inglese
Internazionale
STAMPA
98
20
11668
11673
ELAV; Memory; GAP-43; Hippocampus
7
info:eu-repo/semantics/article
262
Quattrone, Alessandro; Pascale, ALESSIA ANGELA; Nogues, X.; Zhao, W.; Gusev Pavel, A.; Pacini, A.; Alkon, D. L.
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/8116
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