The specific heparin sulfate proteoglycan, perlecan, is a constant companion and integral component of beta-amyloid protein (Abeta)- containing amyloid deposits in Alzheimer's disease (AD) brain. The overall objective of this proposal is to elucidate and define the mechanisms involving perlecan in the normal function of the beta-amyloid precursor protein (betaPP), in its association with Abeta, and in the pathogenesis of AD.
In Aim #1, antibody-mediated cell surface capping of betaPP, double labelled immunofluorescence and confocal microscopy, will be used in rat primary cultures of microglia, astrocytes and neurons to assess whether betaPP functions in association with perlecan on the cell surface or in the extracellular matrix during neurite outgrowth (by morphometry) or cell adhesion (by adhesion assays).
In Aim #2, we will characterize the mechanisms of perlecan-Abeta interactions by 1) identifying perlecan (and other PGs) in isolated amyloid plaque cores and neurofibrillary tangles using specific solubilization techniques and PG structural biochemistry, and 2) identifying specific perlecan core protein domain(s) and GAG chain structure(s) involved in Abeta-binding (by analyzing tryptic digestions of SASD-125 I-perlecan coupled to Abeta peptides, and by affinity coelectrophoresis, affinity chromatography and solid phase binding assays). In addition, we will use the latter two techniques to assess the interaction of perlecan with Apolipoprotein E4 versus E3.
In Aim #3, we will determine the levels (by Northern analysis and mRNA slot blots) and sites (by in situ hybridization) of perlecan synthesis in AD and normal aged brain, and in primary cultures will identify perlecan producing cells (by structural PG biochemistry, Western and Northern analysis) which bind Abeta or betaPP (by affinity column chromatography).
In Aim #4, we will determine 1) the effects of formation of perlecan-Abeta/betaPP or GAG-Abeta complexes (using aggregation assays analyzed by electron microscopy, congo red staining, Thioflavin T spectrofluorometry, X-ray diffraction and infrared spectroscopy) and 2) whether perlecan protects Abeta/betaPP degradation using HPLC, SDS-PAGE, Western blotting and scanning densitometry. Additionally, we will use chemical modulators of PG synthesis, and introduce exogenous PGs/GAGs into primary cultures to assess the consequences of altered PG synthesis on betaPP metabolism and Abeta production. Furthermore, we will infuse Abeta or perlecan into rat brain to determine (by immunocytochemistry, Northern analysis and structural biochemistry) whether Abeta causes an upregulation in perlecan expression and synthesis, and whether perlecan influences betaPP expression and synthesis in vivo. Deciphering the mechanisms underlying perlecan's interaction with Abeta/betaPP will be essential to understand several key steps in the pathogenesis of AD and may provide relevant targets for therapeutic intervention in the future.

Agency
National Institute of Health (NIH)
Institute
National Institute on Aging (NIA)
Type
Specialized Center (P50)
Project #
5P50AG005136-13
Application #
5204461
Study Section
Project Start
Project End
Budget Start
Budget End
Support Year
13
Fiscal Year
1996
Total Cost
Indirect Cost
Kaur, Antarpreet; Edland, Steven D; Peavy, Guerry M (2018) The MoCA-Memory Index Score: An Efficient Alternative to Paragraph Recall for the Detection of Amnestic Mild Cognitive Impairment. Alzheimer Dis Assoc Disord 32:120-124
Taylor, Laura M; McMillan, Pamela J; Liachko, Nicole F et al. (2018) Pathological phosphorylation of tau and TDP-43 by TTBK1 and TTBK2 drives neurodegeneration. Mol Neurodegener 13:7
Flanagan, Margaret E; Larson, Eric B; Walker, Rod L et al. (2018) Associations between Use of Specific Analgesics and Concentrations of Amyloid-? 42 or Phospho-Tau in Regions of Human Cerebral Cortex. J Alzheimers Dis 61:653-662
Schaffert, Jeff; LoBue, Christian; White, Charles L et al. (2018) Traumatic brain injury history is associated with an earlier age of dementia onset in autopsy-confirmed Alzheimer's disease. Neuropsychology 32:410-416
Brenowitz, Willa D; Han, Fang; Kukull, Walter A et al. (2018) Treated hypothyroidism is associated with cerebrovascular disease but not Alzheimer's disease pathology in older adults. Neurobiol Aging 62:64-71
Tulloch, Jessica; Leong, Lesley; Thomson, Zachary et al. (2018) Glia-specific APOE epigenetic changes in the Alzheimer's disease brain. Brain Res 1698:179-186
Gallagher, Damien; Kiss, Alex; Lanctot, Krista L et al. (2018) Toward Prevention of Mild Cognitive Impairment in Older Adults With Depression: An Observational Study of Potentially Modifiable Risk Factors. J Clin Psychiatry 80:
Blue, Elizabeth E; Bis, Joshua C; Dorschner, Michael O et al. (2018) Genetic Variation in Genes Underlying Diverse Dementias May Explain a Small Proportion of Cases in the Alzheimer's Disease Sequencing Project. Dement Geriatr Cogn Disord 45:1-17
Gray, Shelly L; Anderson, Melissa L; Hanlon, Joseph T et al. (2018) Exposure to Strong Anticholinergic Medications and Dementia-Related Neuropathology in a Community-Based Autopsy Cohort. J Alzheimers Dis 65:607-616
Reed, May J; Damodarasamy, Mamatha; Pathan, Jasmine L et al. (2018) Increased Hyaluronan and TSG-6 in Association with Neuropathologic Changes of Alzheimer's Disease. J Alzheimers Dis :

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