The original criteria defining neurotrophic factors called for the existence of soluble, diffusible proteins which act in a local cellular environment to maintain neuronal survival, promote neurite outgrowth, and, in the best of circumstances, enhance neuronal regeneration. Some molecules like basic fibroblast growth factor, however, are highly neurotrophic, but do not meet these criteria. Rather than being soluble and diffusible, these molecules are not secreted in a classical sense, but localized and remain at the cell surface in what appears to be a biologically inert form. This limited bioavailability of basic FGF appears to regulate its activity and sequester the growth factor at its site of action. Accordingly, it is thought to act in a juxtacrine fashion, most likely requiring cell contact to mediate transfer between cells. In the current proposal, we will investigate the possible role that this growth factor plays as a neurotrophic agent, and attempt to identify the molecular mechanisms that mediate its activation from sequestered extracellular compartments. We will evaluate the role of its high affinity receptor in regulating its activity, and determine whether post translational changes in the molecule are involved in regulating its bioavailability at the cell surface. A cloning strategy is presented which, when successful, will identify the molecular mechanisms that mediate the transfer of the growth factor from sites of sequestration to low affinity sites of delivery, and ultimately to its high affinity receptor.

Project Start
1997-06-01
Project End
1998-05-31
Budget Start
1996-10-01
Budget End
1997-09-30
Support Year
7
Fiscal Year
1997
Total Cost
Indirect Cost
Name
University of California San Diego
Department
Type
DUNS #
077758407
City
La Jolla
State
CA
Country
United States
Zip Code
92093
Maher, Pamela (2014) Proteasome Assay in Cell Lysates. Bio Protoc 4:
Brennand, K J; Simone, A; Tran, N et al. (2012) Modeling psychiatric disorders at the cellular and network levels. Mol Psychiatry 17:1239-53
Brennand, Kristen J; Simone, Anthony; Jou, Jessica et al. (2011) Modelling schizophrenia using human induced pluripotent stem cells. Nature 473:221-5
Brennand, Kristen J; Gage, Fred H (2011) Concise review: the promise of human induced pluripotent stem cell-based studies of schizophrenia. Stem Cells 29:1915-22
Maher, Pamela (2008) Proteasome inhibitors prevent oxidative stress-induced nerve cell death by a novel mechanism. Biochem Pharmacol 75:1994-2006
Maher, Pamela (2008) The flavonoid fisetin promotes nerve cell survival from trophic factor withdrawal by enhancement of proteasome activity. Arch Biochem Biophys 476:139-44
Maher, Pamela; Salgado, Karmen F; Zivin, Justin A et al. (2007) A novel approach to screening for new neuroprotective compounds for the treatment of stroke. Brain Res 1173:117-25
Shackelford, Deborah A (2006) DNA end joining activity is reduced in Alzheimer's disease. Neurobiol Aging 27:596-605
Lapchak, Paul A (2006) Memantine, an uncompetitive low affinity NMDA open-channel antagonist improves clinical rating scores in a multiple infarct embolic stroke model in rabbits. Brain Res 1088:141-7
Lapchak, Paul A (2006) 3alpha-OL-5-beta-pregnan-20-one hemisuccinate, a steroidal low-affinity NMDA receptor antagonist improves clinical rating scores in a rabbit multiple infarct ischemia model: synergism with tissue plasminogen activator. Exp Neurol 197:531-7

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