The aims of the program as a whole are to explore the functional and pathological consequences of pathogenic tau formation in a mouse model of neurodegeneration with special reievance to Alzheimer's disease. Project 5 aims to examine three potentially pathogenic pathways that may be involved in the initiation and progression of involved tauopathy; the role of kinases in pathogenesis and the impact of kinase inhibitors, 2) the role of tau aggregation and the impact of aggregation inhibitors, and 3) the role of elevated Abeta and the effect of Abeta reduction on plaque and tangle formation. Each of these aims is integrally linked to the aims of other projects on the PPG, and the overall aim of the PPG to examine the neurobiology of tauopathy. In addition, information will be generated as to the feasibility of targeting these pathways therapeutically. To address these aims, we have developed a new mouse model of tauopathy, by expressing all six isoforms of wild-type human tau with the correct temporal and spatial distribution in mice in the absence of mouse tau. These mice show pathological changes that are very relevant to tauopathy, and AD especially, including a compartmental switch from an axonal distribution of normal soluble tau, to accumulation of hyperphosphorylated, insoluble tau in the somatodendritic compartment of neurons. This is accompanied by an age-related, progressive increase in tau hyperphosphorylation, conformational alterations of tau, the formation of filamentous tau aggregates and neurodegeneration and cell death of neocortical and hippocarrrpal neurons. These mice are ideal subjects in which to examine mechanisms underlying pathogenesis, and validate them using potentially beneficial therapeutic approaches.

Agency
National Institute of Health (NIH)
Institute
National Institute of Neurological Disorders and Stroke (NINDS)
Type
Research Program Projects (P01)
Project #
5P01NS048447-05
Application #
7661636
Study Section
National Institute of Neurological Disorders and Stroke Initial Review Group (NSD)
Project Start
Project End
Budget Start
2009-07-01
Budget End
2010-06-30
Support Year
5
Fiscal Year
2008
Total Cost
$232,681
Indirect Cost
Name
New York State Psychiatric Institute
Department
Type
DUNS #
167204994
City
New York
State
NY
Country
United States
Zip Code
10032
Yuan, Aidong; Kumar, Asok; Sasaki, Takahiro et al. (2013) Global axonal transport rates are unaltered in htau mice in vivo. J Alzheimers Dis 37:579-86
Alldred, Melissa J; Duff, Karen E; Ginsberg, Stephen D (2012) Microarray analysis of CA1 pyramidal neurons in a mouse model of tauopathy reveals progressive synaptic dysfunction. Neurobiol Dis 45:751-62
Counts, Scott E; Che, Shaoli; Ginsberg, Stephen D et al. (2011) Gender differences in neurotrophin and glutamate receptor expression in cholinergic nucleus basalis neurons during the progression of Alzheimer's disease. J Chem Neuroanat 42:111-7
Ginsberg, Stephen D; Che, Shaoli; Hashim, Audrey et al. (2011) Differential regulation of catechol-O-methyltransferase expression in a mouse model of aggression. Brain Struct Funct 216:347-56
Parkhurst, Christopher N; Gan, Wen-Biao (2010) Microglia dynamics and function in the CNS. Curr Opin Neurobiol 20:595-600
Ginsberg, Stephen D; Mufson, Elliott J; Counts, Scott E et al. (2010) Regional selectivity of rab5 and rab7 protein upregulation in mild cognitive impairment and Alzheimer's disease. J Alzheimers Dis 22:631-9
Polydoro, Manuela; Acker, Christopher M; Duff, Karen et al. (2009) Age-dependent impairment of cognitive and synaptic function in the htau mouse model of tau pathology. J Neurosci 29:10741-9
Ikonomovic, Milos D; Wecker, Lynn; Abrahamson, Eric E et al. (2009) Cortical alpha7 nicotinic acetylcholine receptor and beta-amyloid levels in early Alzheimer disease. Arch Neurol 66:646-51
Peng, Shiyong; Garzon, Diego J; Marchese, Monica et al. (2009) Decreased brain-derived neurotrophic factor depends on amyloid aggregation state in transgenic mouse models of Alzheimer's disease. J Neurosci 29:9321-9
Levine, Seymour; Saltzman, Arthur; Levy, Efrat et al. (2009) Systemic pathology in aged mouse models of Down's syndrome and Alzheimer's disease. Exp Mol Pathol 86:18-22

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