Alzheimer?s disease (AD) is the most costly and devastating neurodegenerative disorder of the 21st century. To conquer AD, therapies must be developed to prevent the neuropathological manifestations of the disease. It is widely held that accumulation of beta amyloid (AB) plaques in AD brain causes oxidative damage and inflammatory responses involving glial cell activation that, in turn, leads to neuronal cell death. Many factors, including apolipoproteins, phospholipids and cholesterol, can influence aggregation of AB and its cytotoxic actions. There is evidence for the roles of plasma membrane lipids and G protein-coupled receptor functions in the cytotoxic effects of AB in the AD brain. The major loci of this Program Project Grant (PPG) are 1) to examine the effects of AB and oxidant stressors on neural cell functions relevant to the AD phenotype, including activation of phospholipases, cyclo-oxygenases and G protein-coupled receptors, and 2) to determine relationships between cholesterol homeostasis, lipoproteins and AD. This highly integrated PPG, directed by Dr. Grace Sun, consists of an Administrative Core, a Cell Culture Core and three research projects. Project #1 (G. Sun, PL) will determine the effects of AB and lipoproteins on oxidative and inflammatory responses in neural cells mediated by phospholipases A2. Project #2 (G. Weisman, PL) will determine the effects of AB and lipoproteins on G protein-coupled P2Y2 nucleotide receptor functions in glial and neuronal cells. Project #3 (G. Wood, PL) will determine how AB affects cholesterol homeostasis, transport and distribution in cell membranes and subcellular organelles. By understanding the role of lipids, lipoproteins, and receptor-mediated cell signaling pathways in AD pathology, the proposed studies will provide important new information that will impact the development of effective pharmacotherapies for this debilitating disease.

Agency
National Institute of Health (NIH)
Institute
National Institute on Aging (NIA)
Type
Research Program Projects (P01)
Project #
1P01AG018357-01A1
Application #
6323931
Study Section
Special Emphasis Panel (ZAG1-PCR-9 (J1))
Program Officer
Snyder, D Stephen
Project Start
2001-05-01
Project End
2006-04-30
Budget Start
2001-05-01
Budget End
2002-04-30
Support Year
1
Fiscal Year
2001
Total Cost
$852,032
Indirect Cost
Name
University of Missouri-Columbia
Department
Biochemistry
Type
Schools of Medicine
DUNS #
112205955
City
Columbia
State
MO
Country
United States
Zip Code
65211
Simonyi, Agnes; Chen, Zihong; Jiang, Jinghua et al. (2015) Inhibition of microglial activation by elderberry extracts and its phenolic components. Life Sci 128:30-8
Erb, Laurie; Cao, Chen; Ajit, Deepa et al. (2015) P2Y receptors in Alzheimer's disease. Biol Cell 107:1-21
Yang, X; Sheng, W; Ridgley, D M et al. (2015) Astrocytes regulate ?-secretase-cleaved soluble amyloid precursor protein secretion in neuronal cells: Involvement of group IIA secretory phospholipase A2. Neuroscience 300:508-17
Walker, Jennifer M; Klakotskaia, Diana; Ajit, Deepa et al. (2015) Beneficial effects of dietary EGCG and voluntary exercise on behavior in an Alzheimer's disease mouse model. J Alzheimers Dis 44:561-72
Sun, Grace Y; Chuang, Dennis Y; Zong, Yijia et al. (2014) Role of cytosolic phospholipase A2 in oxidative and inflammatory signaling pathways in different cell types in the central nervous system. Mol Neurobiol 50:6-14
Afshordel, Sarah; Wood, Wellington Gibson; Igbavboa, Urule et al. (2014) Impaired geranylgeranyltransferase-I regulation reduces membrane-associated Rho protein levels in aged mouse brain. J Neurochem 129:732-42
Liao, Zhongji; Cao, Chen; Wang, Jianjie et al. (2014) The P2Y2 Receptor Interacts with VE-Cadherin and VEGF Receptor-2 to Regulate Rac1 Activity in Endothelial Cells. J Biomed Sci Eng 7:1105-1121
Ajit, Deepa; Woods, Lucas T; Camden, Jean M et al. (2014) Loss of P2Y? nucleotide receptors enhances early pathology in the TgCRND8 mouse model of Alzheimer's disease. Mol Neurobiol 49:1031-42
Wood, W Gibson; Li, Ling; Müller, Walter E et al. (2014) Cholesterol as a causative factor in Alzheimer's disease: a debatable hypothesis. J Neurochem 129:559-72
Wood, W Gibson; Igbavboa, Urule; Muller, Walter E et al. (2013) Statins, Bcl-2, and apoptosis: cell death or cell protection? Mol Neurobiol 48:308-14

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