The long-term goal of this research is to identify and validate the proteomic changes in the development of neurodegeneration. Alzheimer's disease (AD) and Parkinson's disease (PD) are the two most common neurodegenerative diseases. Although AD and PD are considered distinct disorders, significant overlap occurs. Mild cognitive impairment (MCI) is a transient state between healthy aging and dementia, often representing a very early stage of cognitive decline associated with a degenerative dementing illness. Histopathologically, accumulation of abnormal proteins has been recognized as hallmarks of neurodegeneration in both AD and PD, suggesting that shared molecular mechanisms may mediate the pathogenesis of neurodegeneration in AD, PD, and AD/PD overlap disorders. Using novel mass spectrometry-based technologies, we will test our central hypothesis: changes in the ubiquitinated proteome and the postsynaptic proteome will reveal molecular commonality among AD, PD, and AD/PD overlap syndromes, and changes in protein patterns will accompany the evolution of disease from MCI to AD. We will use clinically well-characterized human postmortem samples to evaluate protein pattern changes in the ubiquitinated proteome and in the postsynaptic density (PSD). Samples of MCI, AD, PD and AD/PD overlap disease will be analyzed and compared to discover shared protein patterns. These protein changes will be further confirmed in a large set of disease cases. The results will enable the identification of potential biomarkers and provide critical molecular maps for subsequent studies of neurodegeneration.

Agency
National Institute of Health (NIH)
Institute
National Institute on Aging (NIA)
Type
Specialized Center (P50)
Project #
5P50AG025688-03
Application #
7415125
Study Section
Special Emphasis Panel (ZAG1)
Project Start
Project End
Budget Start
2007-05-01
Budget End
2008-04-30
Support Year
3
Fiscal Year
2007
Total Cost
$206,106
Indirect Cost
Name
Emory University
Department
Type
DUNS #
066469933
City
Atlanta
State
GA
Country
United States
Zip Code
30322
Goldstein, Felicia C; Milloy, Aaron; Loring, David W et al. (2018) Incremental Validity of Montreal Cognitive Assessment Index Scores in Mild Cognitive Impairment and Alzheimer Disease. Dement Geriatr Cogn Disord 45:49-55
Ramsey, Christine M; Gnjidic, Danijela; Agogo, George O et al. (2018) Longitudinal patterns of potentially inappropriate medication use following incident dementia diagnosis. Alzheimers Dement (N Y) 4:1-10
Weintraub, Sandra; Besser, Lilah; Dodge, Hiroko H et al. (2018) Version 3 of the Alzheimer Disease Centers' Neuropsychological Test Battery in the Uniform Data Set (UDS). Alzheimer Dis Assoc Disord 32:10-17
Hadjichrysanthou, Christoforos; McRae-McKee, Kevin; Evans, Stephanie et al. (2018) Potential Factors Associated with Cognitive Improvement of Individuals Diagnosed with Mild Cognitive Impairment or Dementia in Longitudinal Studies. J Alzheimers Dis 66:587-600
Wilmoth, Kristin; LoBue, Christian; Clem, Matthew A et al. (2018) Consistency of traumatic brain injury reporting in older adults with and without cognitive impairment. Clin Neuropsychol 32:524-529
Hanfelt, John J; Peng, Limin; Goldstein, Felicia C et al. (2018) Latent classes of mild cognitive impairment are associated with clinical outcomes and neuropathology: Analysis of data from the National Alzheimer's Coordinating Center. Neurobiol Dis 117:62-71
Ting, Simon Kang Seng; Foo, Heidi; Chia, Pei Shi et al. (2018) Dyslexic Characteristics of Chinese-Speaking Semantic Variant of Primary Progressive Aphasia. J Neuropsychiatry Clin Neurosci 30:31-37
Zhou, Zilu; Wang, Weixin; Wang, Li-San et al. (2018) Integrative DNA copy number detection and genotyping from sequencing and array-based platforms. Bioinformatics 34:2349-2355
Rangaraju, Srikant; Raza, Syed Ali; Li, Noel Xiang'An et al. (2018) Differential Phagocytic Properties of CD45low Microglia and CD45high Brain Mononuclear Phagocytes-Activation and Age-Related Effects. Front Immunol 9:405
Burke, Shanna L; Hu, Tianyan; Fava, Nicole M et al. (2018) Sex differences in the development of mild cognitive impairment and probable Alzheimer's disease as predicted by hippocampal volume or white matter hyperintensities. J Women Aging :1-25

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