One approach to assigning a function to presenilin 1 (PS1) is to identify those proteins with which it interacts.
The specific aims are based upon our discovery of a novel brain protein which interacts with the extended hydrophilic """"""""loop"""""""" region (residues 263-407) of PS1. The interacting gene product we discovered is a novel member of a gene family represented by its prototypic members, beta-catenin in vertebrates, and Armadillo in Drosophila. These proteins have dual roles: they are components of the adherens junction, an adhesive structure which forms between homotypic cells, and intermediaries in the Wingless/Wnt signaling pathway which is involved in body axis formation and segment polarity. We have termed the PS1 interacting gene, beta-catenin, because it shares with other catenins a series of 42 amino acid imperfect repeats and our preliminary evidence suggests it is resident in the adherens junction. Another reason this interaction is potential significant is the growing body of evidence that presenilin has a role in early development, particularly in relation to the Notch pathway which specifies cell fate. However, the sound genetic evidence of a functional relationship between Notch and presenilin does not reveal the specific proteins which interact with these gene products. Remarkably, a downstream element in the Wg/Wnt pathway, specifically the Disheveled gene, imposes an inhibitory regulation on Notch. Therefore the PS1 interacting gene which resembles known family members of the Notch regulatory pathway, Wnt/Wg may represent a pivotal control point.
Our aims will characterize the function of delta-catenin and address the hypothesis that modulation of upstream elements in the delta-catenin signaling pathway will alter the levels of Abeta produced by the cell. We will conclusively demonstrated whether delta-catenin is resident in the adherns junction, the relationship of these junctions to synapses in the CNS, and the regulation and control elements which target delta-catenin to the adherns junction. We will determine whether delta-catenin lies in the Wnt signaling pathway by assessing the effects of Wnt signals on delta- catenin stability and searching for interactive proteins. We will attempt to assign an early developmental role to delta-catenin by preparing a disrupter mouse. Finally, we will establish a relationship between delta- catenin and Alzheimer's disease by determining whether PS-1 mutations alter the interaction with delta-catenin and whether delta-catenin lies in a pathway capable of regulating APP metabolism and Abeta generation.

Agency
National Institute of Health (NIH)
Institute
National Institute on Aging (NIA)
Type
Research Program Projects (P01)
Project #
5P01AG015379-02
Application #
6201070
Study Section
Project Start
1999-09-01
Project End
2000-08-31
Budget Start
1997-10-01
Budget End
1998-09-30
Support Year
2
Fiscal Year
1999
Total Cost
Indirect Cost
Name
Brigham and Women's Hospital
Department
Type
DUNS #
071723621
City
Boston
State
MA
Country
United States
Zip Code
02115
Jorfi, Mehdi; D'Avanzo, Carla; Kim, Doo Yeon et al. (2018) Three-Dimensional Models of the Human Brain Development and Diseases. Adv Healthc Mater 7:
Hartmann, Stephanie; Zheng, Fang; Kyncl, Michele C et al. (2018) ?-Secretase BACE1 Promotes Surface Expression and Function of Kv3.4 at Hippocampal Mossy Fiber Synapses. J Neurosci 38:3480-3494
Norambuena, Andrés; Wallrabe, Horst; Cao, Rui et al. (2018) A novel lysosome-to-mitochondria signaling pathway disrupted by amyloid-? oligomers. EMBO J 37:
Funane, Tsukasa; Hou, Steven S; Zoltowska, Katarzyna Marta et al. (2018) Selective plane illumination microscopy (SPIM) with time-domain fluorescence lifetime imaging microscopy (FLIM) for volumetric measurement of cleared mouse brain samples. Rev Sci Instrum 89:053705
Zoltowska, Katarzyna Marta; Maesako, Masato; Meier, Joshua et al. (2018) Novel interaction between Alzheimer's disease-related protein presenilin 1 and glutamate transporter 1. Sci Rep 8:8718
Park, Joseph; Wetzel, Isaac; Marriott, Ian et al. (2018) A 3D human triculture system modeling neurodegeneration and neuroinflammation in Alzheimer's disease. Nat Neurosci 21:941-951
Chatila, Zena K; Kim, Eunhee; Berlé, Clara et al. (2018) BACE1 Regulates Proliferation and Neuronal Differentiation of Newborn Cells in the Adult Hippocampus in Mice. eNeuro 5:
Zoltowska, Katarzyna Marta; Berezovska, Oksana (2018) Dynamic Nature of presenilin1/?-Secretase: Implication for Alzheimer's Disease Pathogenesis. Mol Neurobiol 55:2275-2284
Jorfi, Mehdi; D'Avanzo, Carla; Tanzi, Rudolph E et al. (2018) Human Neurospheroid Arrays for In Vitro Studies of Alzheimer's Disease. Sci Rep 8:2450
Kara, Eleanna; Marks, Jordan D; Fan, Zhanyun et al. (2017) Isoform- and cell type-specific structure of apolipoprotein E lipoparticles as revealed by a novel Forster resonance energy transfer assay. J Biol Chem 292:14720-14729

Showing the most recent 10 out of 147 publications