Different tau mutations cause FTD by different mechanisms; in some cases, the biochemical properties of tau are altered while in others, splicing of exon 10 (El0) is altered. Mutations affecting splicing act by altering at least 4 different regulatory mechanisms: 1) the strength of the 5' splice site of E10; 2) an exon splicing enhancer regulatory element in E10; 3) an exon splicing silencer in E10; and 4) an inhibitory sequence directly adjacent to the 3' end of E10. FTD mutations either increase or decrease E10 incorporation into tau mRNA. In some families that show linkage to chromosome 17, no mutations in the open reading frame of tau or in sequences directly flanking exons have been found. Also, for progressive supranuclear palsy (PSP), association studies demonstrate that tau genetic variability is a risk factor for PSP, yet no mutations/risk factors are present in the open reading frame of tau. Thus, additional regulatory mutations in intronic sequences not directly adjacent to exons remain to be found. The different mechanisms affected by the different mutations are responsible for the diverse phenotype observed in different FTD kindred. The following will be performed: 1) additional FTD families will be screened for tau mutations; 2) sporadic FTD subjects will be screened for mutations; 3) the functional consequences of each mutation on RNA splicing and tau protein function will be determined; 4) a P1 artificial chromosome (PAC) clone containing the complete tau gene will be characterized for use in generating transgenic animals; 5) tau mutations will be introduced into the PAC; 6) the normal and mutated PACs will be used to generate transgenic animals. This work will determine how tau mutations function in vivo and generate transgenic animals with tau pathology.

Agency
National Institute of Health (NIH)
Institute
National Institute on Aging (NIA)
Type
Research Program Projects (P01)
Project #
2P01AG017586-06
Application #
6851876
Study Section
Special Emphasis Panel (ZAG1-ZIJ-9 (O4))
Project Start
2005-03-15
Project End
2010-02-28
Budget Start
2005-03-15
Budget End
2006-02-28
Support Year
6
Fiscal Year
2005
Total Cost
$242,710
Indirect Cost
Name
University of Pennsylvania
Department
Type
DUNS #
042250712
City
Philadelphia
State
PA
Country
United States
Zip Code
19104
Cousins, Katheryn A Q; Ash, Sharon; Grossman, Murray (2018) Production of verbs related to body movement in amyotrophic lateral sclerosis (ALS) and Parkinson's Disease (PD). Cortex 100:127-139
Kassubek, Jan; Müller, Hans-Peter; Del Tredici, Kelly et al. (2018) Longitudinal Diffusion Tensor Imaging Resembles Patterns of Pathology Progression in Behavioral Variant Frontotemporal Dementia (bvFTD). Front Aging Neurosci 10:47
Alcolea, Daniel; Irwin, David J; Illán-Gala, Ignacio et al. (2018) Elevated YKL-40 and low sAPP?:YKL-40 ratio in antemortem cerebrospinal fluid of patients with pathologically confirmed FTLD. J Neurol Neurosurg Psychiatry :
Zhang, Bin; Yao, Yuemang; Cornec, Anne-Sophie et al. (2018) A brain-penetrant triazolopyrimidine enhances microtubule-stability, reduces axonal dysfunction and decreases tau pathology in a mouse tauopathy model. Mol Neurodegener 13:59
Porta, Sílvia; Xu, Yan; Restrepo, Clark R et al. (2018) Patient-derived frontotemporal lobar degeneration brain extracts induce formation and spreading of TDP-43 pathology in vivo. Nat Commun 9:4220
Sanchez-Contreras, Monica Y; Kouri, Naomi; Cook, Casey N et al. (2018) Replication of progressive supranuclear palsy genome-wide association study identifies SLCO1A2 and DUSP10 as new susceptibility loci. Mol Neurodegener 13:37
Robinson, John L; Corrada, Maria M; Kovacs, Gabor G et al. (2018) Non-Alzheimer's contributions to dementia and cognitive resilience in The 90+ Study. Acta Neuropathol :
Brettschneider, Johannes; Suh, EunRan; Robinson, John L et al. (2018) Converging Patterns of ?-Synuclein Pathology in Multiple System Atrophy. J Neuropathol Exp Neurol 77:1005-1016
Suh, EunRan; Grando, Kaitlyn; Van Deerlin, Vivianna M (2018) Validation of a Long-Read PCR Assay for Sensitive Detection and Sizing of C9orf72 Hexanucleotide Repeat Expansions. J Mol Diagn 20:871-882
Zee, Jarcy; Xie, Sharon X (2018) The Kaplan-Meier Method for Estimating and Comparing Proportions in a Randomized Controlled Trial with Dropouts. Biostat Epidemiol 2:23-33

Showing the most recent 10 out of 593 publications