Target-derived neurotrophic factors are essential for the survival and differentiation of developing neurons. Recent evidence indicates that neurotrophins, a family of proteins related to nerve growth factor, may also participate in activity-dependent modification of synaptic connections. Using rat hippocampal cultures and Xenopus nerve-muscle cultures as model systems, the applicants propose to investigate the spatial and temporal properties of neurotrophic secretion and action at the synapse. In part I, the applicants will examine acute pre- and postsynaptic effects of exogenous brain-derived neurotrophic factor (BDNF) on the basal synaptic properties and activity-induced plasticity at hippocampal and neuromuscular synapses. Using local delivery of BDNF and BDNF-coated beads, the applicants will determine the spatial and temporal patterns in the BDNF action. The applicants will also examine whether electrical activity affects the action of BDNF by altering the binding, transduction, or internalization of the factor. The potential """"""""gating"""""""" and """"""""synergistic"""""""" effect of cAMP-dependent processes on the BDNF action will also be explored. In part II, the applicant will examine whether secretion of BDNF from neurons overexpressing BDNF or endogenous secretion of TrkB ligands can modulate synaptic efficacy, whether synaptic activity can trigger a localized secretion of BDNF, and whether the action of secreted BDNF is restricted to the site of BDNF secretion. The trafficking and secretion of BDNF will also be followed by using fluorescently tagged BDNF. Finally, in part III, they will examine the long-term actions of BDNF on the structure and function of the synapse, determine whether such long-term actions can retain synapse-specificity, whether active transport, Ca2+ signaling, gene activation and protein synthesis, and activation of protein kinases and phosphotases are involved in the transduction of long-term BDNF effects. Finally, the applicants will examine the possibility that selective synaptic """"""""tag"""""""" associated with long-term specific synaptic modification is due to an activity-dependent upregulation of the receptiveness of the synapse to the action of neurotrophic. Taken together, these in vitro studies provide unique opportunities to address several fundamental questions concerning the role of neurotrophic in synaptic plasticity, and promise to contribute new information relevant to our basic understanding of the nervous system.

Agency
National Institute of Health (NIH)
Institute
National Institute of Neurological Disorders and Stroke (NINDS)
Type
Research Project (R01)
Project #
1R01NS037831-01
Application #
2682527
Study Section
Neurological Sciences Subcommittee 1 (NLS)
Program Officer
Leblanc, Gabrielle G
Project Start
1998-07-24
Project End
2002-06-30
Budget Start
1998-07-24
Budget End
1999-06-30
Support Year
1
Fiscal Year
1998
Total Cost
Indirect Cost
Name
University of California San Diego
Department
Biology
Type
Schools of Arts and Sciences
DUNS #
077758407
City
La Jolla
State
CA
Country
United States
Zip Code
92093
Liu, Qing-song; Pu, Lu; Poo, Mu-ming (2005) Repeated cocaine exposure in vivo facilitates LTP induction in midbrain dopamine neurons. Nature 437:1027-31
Zhou, Qiang; Homma, Koichi J; Poo, Mu-ming (2004) Shrinkage of dendritic spines associated with long-term depression of hippocampal synapses. Neuron 44:749-57
Wardle, Rinda A; Poo, Mu-ming (2003) Brain-derived neurotrophic factor modulation of GABAergic synapses by postsynaptic regulation of chloride transport. J Neurosci 23:8722-32
Zhang, Xiao hui; Poo, Mu-ming (2002) Localized synaptic potentiation by BDNF requires local protein synthesis in the developing axon. Neuron 36:675-88
Kao, Hung-Teh; Song, Hong-jun; Porton, Barbara et al. (2002) A protein kinase A-dependent molecular switch in synapsins regulates neurite outgrowth. Nat Neurosci 5:431-7
Ganguly, K; Schinder, A F; Wong, S T et al. (2001) GABA itself promotes the developmental switch of neuronal GABAergic responses from excitation to inhibition. Cell 105:521-32
Ming, G; Henley, J; Tessier-Lavigne, M et al. (2001) Electrical activity modulates growth cone guidance by diffusible factors. Neuron 29:441-52
Schinder, A F; Berninger, B; Poo, M (2000) Postsynaptic target specificity of neurotrophin-induced presynaptic potentiation. Neuron 25:151-63
Schinder, A F; Poo, M (2000) The neurotrophin hypothesis for synaptic plasticity. Trends Neurosci 23:639-45
Boulanger, L; Poo, M (1999) Gating of BDNF-induced synaptic potentiation by cAMP. Science 284:1982-4

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