Neuronal cell survival is dependent upon many trophic influences, of which nerve growth factor (NGF) has been the most extensively studied and understood. The long term goal of this grant proposal is to understand the molecular mechanism of nerve cell survival. The NGF family includes brain derived neurotrophic factor and neurotrophins_3 and NT_4/5. Each of these proteins interacts with two different transmembrane receptors, members of the trk tyrosine kinase subfamily and the p75 neurotrophin receptor, a member of the TNF family of receptors. The actions of these receptors determine neuronal cell numbers during development. Co_expression of p75 with trk family members may play a number of crucial functions, including increasing the affinity of ligand binding when trophic factors are present only in limiting concentrations; regulation of tyrosine kinase activity; and greater discrimination between different neurotrophin factors. Additionally, novel signaling pathways utilizing sphingolipid turnover are used by neurotrophins and cytokines as another potential signal transduction mechanism to mediate apoptosis. Selectivity of neurotrophin action is likely to depend upon adual receptor system in which coexpression of trk family members with p75 result in distinctive downstream biological responses. This proposal will focus upon the receptor binding and signaling requirements for NGF. The investigation has implications for mechanisms of cell survival, differentiation and cell death of neuronal cell populations, which will ultimately bear upon our understanding of many neurodegenerative diseases, such as motor neuron and Alzheimer's dementia.

Agency
National Institute of Health (NIH)
Institute
National Institute of Neurological Disorders and Stroke (NINDS)
Type
Research Project (R01)
Project #
5R01NS021072-17
Application #
6477303
Study Section
Neurology B Subcommittee 2 (NEUB)
Program Officer
Mamounas, Laura
Project Start
1985-04-01
Project End
2003-11-30
Budget Start
2001-12-01
Budget End
2002-11-30
Support Year
17
Fiscal Year
2002
Total Cost
$379,056
Indirect Cost
Name
New York University
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
City
New York
State
NY
Country
United States
Zip Code
10016
Linderman, Jessica A; Kobayashi, Mariko; Rayannavar, Vinayak et al. (2017) Immune Escape via a Transient Gene Expression Program Enables Productive Replication of a Latent Pathogen. Cell Rep 18:1312-1323
Ginsberg, Stephen D; Malek-Ahmadi, Michael H; Alldred, Melissa J et al. (2017) Selective decline of neurotrophin and neurotrophin receptor genes within CA1 pyramidal neurons and hippocampus proper: Correlation with cognitive performance and neuropathology in mild cognitive impairment and Alzheimer's disease. Hippocampus :
Mitre, Mariela; Mariga, Abigail; Chao, Moses V (2017) Neurotrophin signalling: novel insights into mechanisms and pathophysiology. Clin Sci (Lond) 131:13-23
Bowling, Heather; Bhattacharya, Aditi; Klann, Eric et al. (2016) Deconstructing brain-derived neurotrophic factor actions in adult brain circuits to bridge an existing informational gap in neuro-cell biology. Neural Regen Res 11:363-7
Sleiman, Sama F; Henry, Jeffrey; Al-Haddad, Rami et al. (2016) Exercise promotes the expression of brain derived neurotrophic factor (BDNF) through the action of the ketone body ?-hydroxybutyrate. Elife 5:
Bowling, Heather; Bhattacharya, Aditi; Zhang, Guoan et al. (2016) BONLAC: A combinatorial proteomic technique to measure stimulus-induced translational profiles in brain slices. Neuropharmacology 100:76-89
Mitre, Mariela; Marlin, Bianca J; Schiavo, Jennifer K et al. (2016) A Distributed Network for Social Cognition Enriched for Oxytocin Receptors. J Neurosci 36:2517-35
Anastasia, Agustin; Barker, Phillip A; Chao, Moses V et al. (2015) Detection of p75NTR Trimers: Implications for Receptor Stoichiometry and Activation. J Neurosci 35:11911-20
Daskalakis, Nikolaos P; De Kloet, Edo Ronald; Yehuda, Rachel et al. (2015) Early Life Stress Effects on Glucocorticoid-BDNF Interplay in the Hippocampus. Front Mol Neurosci 8:68
Mariga, Abigail; Glaser, Juliane; Mathias, Leo et al. (2015) Definition of a Bidirectional Activity-Dependent Pathway Involving BDNF and Narp. Cell Rep 13:1747-56

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