The overall hypothesis of this proposal is that the tissue plasminogen activator/plasminogen (tPA/plg) fibrinolytic cascade, a proteolytic system which has been implicated in the clearance of amyloid-beta (A-beta) peptide, is an important pathway to investigate for developing possible therapeutic agents against Alzheimer's disease (AD). The abnormal deposition of A-beta in the parenchyma and blood vessels of the brain is a pathological hallmark of AD, the most common cause of dementia and cognitive decline in the aged. Additionally, epidemiological studies indicate that diseases that compromise the circulatory system are risk factors for the development of AD, and imply that AD has a cerebrovascular component. The objectives of this proposal are to investigate the role of the tPA/plg system in the progression of AD-like pathology in transgenic mice overexpressing the amyloid-beta precursor protein (A-betaPP). The tPA/plg system activity is depressed in AD transgenic mice and in individuals with AD, due to the expression of plasminogen activator inhibitor-1 (PAl-l), a protein overexpressed during inflammation, commonly seen in AD. To accomplish this goal, we propose three specific aims. First, we plan to investigate the effects of the loss of tPA, plg, or PAl-1 expression in A-betaPP transgenic mice in a C57/BI6 background. Second, we plan to investigate the role of fibrin deposition in exacerbating the pathology and cerebrovascular dysfunction in AD. Third, we plan to identify new compounds that block the interaction of PAl-1 and tPA, and to test these, along with known PAl-1 inhibitors, for their effects in AD mouse models. These experiments will take advantage of transgenic and knockout mouse lines as in vivo paradigms for the development of possible therapeutic intervention strategies, targeting the tPA/plasmin cascade, against AD progression ? ?

Agency
National Institute of Health (NIH)
Institute
National Institute of Neurological Disorders and Stroke (NINDS)
Type
Research Project (R01)
Project #
5R01NS050537-03
Application #
7112914
Study Section
Hemostasis and Thrombosis Study Section (HT)
Program Officer
Refolo, Lorenzo
Project Start
2004-09-25
Project End
2009-08-31
Budget Start
2006-09-01
Budget End
2007-08-31
Support Year
3
Fiscal Year
2006
Total Cost
$381,629
Indirect Cost
Name
Rockefeller University
Department
Biology
Type
Other Domestic Higher Education
DUNS #
071037113
City
New York
State
NY
Country
United States
Zip Code
10065
Singh, Pradeep K; Kawasaki, Masanori; Berk-Rauch, Hanna E et al. (2018) Aminopyrimidine Class Aggregation Inhibitor Effectively Blocks A?-Fibrinogen Interaction and A?-Induced Contact System Activation. Biochemistry 57:1399-1409
Yamamoto-Imoto, Hitomi; Zamolodchikov, Daria; Chen, Zu-Lin et al. (2018) A novel detection method of cleaved plasma high-molecular-weight kininogen reveals its correlation with Alzheimer's pathology and cognitive impairment. Alzheimers Dement (Amst) 10:480-489
Strickland, Sidney (2018) Blood will out: vascular contributions to Alzheimer's disease. J Clin Invest 128:556-563
Chen, Zu-Lin; Revenko, Alexey S; Singh, Pradeep et al. (2017) Depletion of coagulation factor XII ameliorates brain pathology and cognitive impairment in Alzheimer disease mice. Blood 129:2547-2556
Norris, Erin H; Strickland, Sidney (2017) Fibrinogen in the Nervous System: Glia Beware. Neuron 96:951-953
Ahn, Hyung J; Chen, Zu-Lin; Zamolodchikov, Daria et al. (2017) Interactions of ?-amyloid peptide with fibrinogen and coagulation factor XII may contribute to Alzheimer's disease. Curr Opin Hematol 24:427-431
Zamolodchikov, Daria; Berk-Rauch, Hanna E; Oren, Deena A et al. (2016) Biochemical and structural analysis of the interaction between ?-amyloid and fibrinogen. Blood 128:1144-51
Zamolodchikov, D; Renné, T; Strickland, S (2016) The Alzheimer's disease peptide ?-amyloid promotes thrombin generation through activation of coagulation factor XII. J Thromb Haemost 14:995-1007
Yao, Yao; Norris, Erin H; Mason, Christopher E et al. (2016) Laminin regulates PDGFR?(+) cell stemness and muscle development. Nat Commun 7:11415
Chung, Y C; Kruyer, A; Yao, Y et al. (2016) Hyperhomocysteinemia exacerbates Alzheimer's disease pathology by way of the ?-amyloid fibrinogen interaction. J Thromb Haemost 14:1442-52

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