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GAP43 gene
Known as:
NERVE GROWTH-RELATED PEPTIDE GAP43
, axonal membrane protein GAP-43
, PP46
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National Institutes of Health
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Related topics
Related topics
1 relation
Growth Associated Protein 43
Papers overview
Semantic Scholar uses AI to extract papers important to this topic.
2003
2003
GAP43 stimulates inositol trisphosphate‐mediated calcium release in response to hypotonicity
M. Caprini
,
A. Gomis
,
+4 authors
A. Ferrer-Montiel
EMBO Journal
2003
Corpus ID: 43330238
The identification of osmo/mechanosensory proteins in mammalian sensory neurons is still elusive. We have used an expression…
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Highly Cited
1993
Highly Cited
1993
Distribution of GAP-43 (B50/F1) mRNA in the adult rat brain by in situ hybridization using an alkaline phosphatase labeled probe.
G. Yao
,
H. Kiyama
,
M. Tohyama
Brain Research. Molecular Brain Research
1993
Corpus ID: 43144668
1993
1993
Neocortex and hippocampus contain distinct distributions of calcium‐calmodulin protein kinase II and GAP43 mRNA
K. Jacobs
,
R. Neve
,
J. Donoghue
The Journal of comparative neurology
1993
Corpus ID: 24781117
Calcium‐calmodulin protein kinase II and GAP43 are two molecules which have been linked to synaptic plasticity. Localization of…
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Highly Cited
1992
Highly Cited
1992
Immunocytochemical detection of the growth-associated protein B-50 by newly characterized monoclonal antibodies in human brain and muscle.
M. Mercken
,
U. Lübke
,
M. Vandermeeren
,
J. Gheuens
,
A. Oestreicher
Journal of Neurobiology
1992
Corpus ID: 31860244
The growth-associated protein B-50 also termed GAP-43, F1, pp46, P-57 and neuromodulin is a nervous tissue-specific protein…
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Highly Cited
1992
Highly Cited
1992
The expression of GAP43 mRNA during the late embryonic and early postnatal development of the CNS of the rat: an in situ hybridization study.
T. Mahalik
,
A. Carrier
,
G. Owens
,
G. Clayton
Brain research. Developmental brain research
1992
Corpus ID: 1198855
Review
1990
Review
1990
Regulation of free calmodulin levels in neurons by neuromodulin: relationship to neuronal growth and regeneration.
R. J. Estep
,
K. Alexander
,
D. Storm
Current Topics in Cellular Regulation
1990
Corpus ID: 27803845
Highly Cited
1989
Highly Cited
1989
Protein kinase C substrates from bovine brain. Purification and characterization of neuromodulin, a neuron-specific calmodulin-binding protein.
J. Baudier
,
C. Bronner
,
D. Kligman
,
R. Cole
Journal of Biological Chemistry
1989
Corpus ID: 25856565
Although such solubility is uncommon among proteins generally, several bovine brain proteins were found to be soluble in 2.5…
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Highly Cited
1989
Highly Cited
1989
The two major phosphoproteins in growth cones are probably identical to two protein kinase C substrates correlated with persistence of long- term potentiation
Robert B. Nelson
,
David J. Linden
,
Carolyn Hyman
,
K. H. Pfenninger
,
A. Routtenberg
Journal of Neuroscience
1989
Corpus ID: 5694630
Regulation of neural protein kinase C (PKC) activity appears to directly affect the persistence of long-term potentiation (LTP…
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Highly Cited
1987
Highly Cited
1987
The neuronal growth-associated protein GAP-43 (B-50, F1): neuronal specificity, developmental regulation and regional distribution of the human and rat mRNAs.
R. Neve
,
N. Perrone-Bizzozero
,
+4 authors
L. Benowitz
Brain Research
1987
Corpus ID: 12639917
1987
1987
Intracellular regulators of neuronal sprouting: II. Phosphorylation reactions in isolated growth cones
Carolyn Hyman
,
K. H. Pfenninger
Journal of Neuroscience
1987
Corpus ID: 29769829
Mechanisms potentially involved in the regulation of neurite growth were investigated. Since both the phosphatidylinositol (PI…
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