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Volumn 9, Issue 11, 1997, Pages 2334-2339
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Stabilization of dendritic mRNAs by nitric oxide allows localized, activity-dependent enhancement of hippocampal protein synthesis
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Author keywords
Calcium calmodulin dependent protein kinase II; Hippocampus; Long term potentiation; Microtubule associated protein 2; Rat; Synaptic plasticity
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Indexed keywords
MESSENGER RNA;
MICROTUBULE ASSOCIATED PROTEIN 2;
N ACETYL S NITROSOPENICILLAMINE;
NITRIC OXIDE;
PROENKEPHALIN;
PROTEIN KINASE C;
PROTEIN SUBUNIT;
TUBULIN;
ANIMAL CELL;
ARTICLE;
CONTROLLED STUDY;
DENDRITIC CELL;
EMBRYO;
HIPPOCAMPUS;
IMMUNOREACTIVITY;
NERVE CELL CULTURE;
NERVE CELL PLASTICITY;
NONHUMAN;
PRIORITY JOURNAL;
PROTEIN SYNTHESIS;
RAT;
SYNAPSE;
ANIMALS;
ANTIMETABOLITES;
CA(2+)-CALMODULIN DEPENDENT PROTEIN KINASE;
CELLS, CULTURED;
DENDRITES;
ENZYME INHIBITORS;
HIPPOCAMPUS;
IMMUNOHISTOCHEMISTRY;
IN SITU HYBRIDIZATION;
MICROTUBULE-ASSOCIATED PROTEINS;
NERVE TISSUE PROTEINS;
NITRIC OXIDE;
PENICILLAMINE;
RATS;
RNA, MESSENGER;
S-NITROSO-N-ACETYLPENICILLAMINE;
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EID: 0031437278
PISSN: 0953816X
EISSN: None
Source Type: Journal
DOI: 10.1111/j.1460-9568.1997.tb01650.x Document Type: Article |
Times cited : (16)
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References (3)
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