Fibrin is a blood-derived protein deposited in the nervous system after disease associated with vasculature rupture; such as stroke, multiple sclerosis (MS) and brain glioblastomas. Our previous studies in mice genetically or pharmacologically deficient in fibrinogen demonstrated that fibrin inhibits peripheral nerve regeneration and exacerbates inflammatory demyelination in the central nervous system in an animal model for MS. Our long term goal is to identify the molecular and cellular interface that fibrin utilizes to induce nervous system pathology. ? ? The specific hypothesis of this proposal is that fibrin interacts with the p75 neurotrophin receptor (p75NTR) to mediate its effects in the nervous system. Our hypothesis is based on the observations that 1: Fibrinogen and its derivatives directly bind to p75NTR and thus may directly modulate receptor function; 2. p75NTR expression in vivo regulates the bioavailability of fibrin and its derivatives in the nervous system. 3. Fibrinogen and its degradation products mediate diverse survival responses via p75NTR. ? ? Based on these observations, the experimental focus of this proposal is on the biochemical, in vivo and in vitro analysis of the p75NTR interactions with fibrinogen.
The specific aims are to: 1. Establish the biochemical interactions of p75NTR with fibrinogen and its derivatives, 2: Determine the biological effects induced by fibrin(ogen) in p75NTR - expressing cell types in the PNS and CNS and 3: Establish the contribution of p75NTR / fibrin interactions in nerve regeneration and inflammatory demyelination. Since p75NTR is upregulated in the adult nervous system in response to injury, identifying the molecular interactions of p75NTR with fibrin could potentially provide injury-specific targets for pharmacological intervention in a variety of diseases characterized by vascular damage, endothelial cell activation and decreased capacity for tissue repair. ? ?

Agency
National Institute of Health (NIH)
Institute
National Institute of Neurological Disorders and Stroke (NINDS)
Type
Research Project (R01)
Project #
5R01NS051470-04
Application #
7371903
Study Section
Neurodegeneration and Biology of Glia Study Section (NDBG)
Program Officer
Jacobs, Tom P
Project Start
2005-03-18
Project End
2008-04-30
Budget Start
2008-02-01
Budget End
2008-04-30
Support Year
4
Fiscal Year
2008
Total Cost
$10,743
Indirect Cost
Name
University of California San Diego
Department
Pharmacology
Type
Schools of Medicine
DUNS #
804355790
City
La Jolla
State
CA
Country
United States
Zip Code
92093
Baeza-Raja, Bernat; Sachs, Benjamin D; Li, Pingping et al. (2016) p75 Neurotrophin Receptor Regulates Energy Balance in Obesity. Cell Rep 14:255-68
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Zhang, Ming-Dong; Barde, Swapnali; Yang, Ting et al. (2016) Orthopedic surgery modulates neuropeptides and BDNF expression at the spinal and hippocampal levels. Proc Natl Acad Sci U S A 113:E6686-E6695
Schachtrup, Christian; Ryu, Jae Kyu; Mammadzada, Könül et al. (2015) Nuclear pore complex remodeling by p75(NTR) cleavage controls TGF-? signaling and astrocyte functions. Nat Neurosci 18:1077-80
Le Moan, Natacha; Baeten, Kim M; Rafalski, Victoria A et al. (2015) Hypoxia Inducible Factor-1? in Astrocytes and/or Myeloid Cells Is Not Required for the Development of Autoimmune Demyelinating Disease eNeuro 2:
Baeza-Raja, Bernat; Eckel-Mahan, Kristin; Zhang, Luoying et al. (2013) p75 neurotrophin receptor is a clock gene that regulates oscillatory components of circadian and metabolic networks. J Neurosci 33:10221-34
Gut, Philipp; Baeza-Raja, Bernat; Andersson, Olov et al. (2013) Whole-organism screening for gluconeogenesis identifies activators of fasting metabolism. Nat Chem Biol 9:97-104
Chen, Wanqiu; Guo, Yi; Walker, Espen J et al. (2013) Reduced mural cell coverage and impaired vessel integrity after angiogenic stimulation in the Alk1-deficient brain. Arterioscler Thromb Vasc Biol 33:305-10
Baeza-Raja, Bernat; Li, Pingping; Le Moan, Natacha et al. (2012) p75 neurotrophin receptor regulates glucose homeostasis and insulin sensitivity. Proc Natl Acad Sci U S A 109:5838-43
Merlini, Mario; Davalos, Dimitrios; Akassoglou, Katerina (2012) In vivo imaging of the neurovascular unit in CNS disease. Intravital 1:87-94

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