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The Gene Expression Landscape of Alzheimer's Disease Tauopathy and Selective Vulnerability- [electronic resource]
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The Gene Expression Landscape of Alzheimer's Disease Tauopathy and Selective Vulnerability- [electronic resource]
자료유형  
 학위논문
Control Number  
0016935524
International Standard Book Number  
9798380370462
Dewey Decimal Classification Number  
616
Main Entry-Personal Name  
Ayoub, Christopher Anthony.
Publication, Distribution, etc. (Imprint  
[S.l.] : The Ohio State University., 2023
Publication, Distribution, etc. (Imprint  
Ann Arbor : ProQuest Dissertations & Theses, 2023
Physical Description  
1 online resource(192 p.)
General Note  
Source: Dissertations Abstracts International, Volume: 85-03, Section: B.
General Note  
Advisor: Kuret, Jeffrey.
Dissertation Note  
Thesis (Ph.D.)--The Ohio State University, 2023.
Restrictions on Access Note  
This item must not be sold to any third party vendors.
Summary, Etc.  
요약Alzheimer's Disease (AD) is a debilitating neurodegenerative disorder characterized by the progressive and selective accumulation of neurofibrillary tangles in specific areas of the brain over the course of disease. Composed of aggregated tau protein, these tangles appear to spread from the earliest affected regions to networked brain regions across the synapse, templating additional pathology in a prion-like manner. However, the cerebellum appears to resist this prion-like insult, despite connectivity to early and profoundly affected regions. The selective vulnerability and resistance of specific brain regions and cell types to prion-like tau pathology offers a window into disease etiology and endogenous mechanisms of neuroprotection. The objective of this work was to untangle the adaptive changes to disease that respond in parallel and in contrast between differentially vulnerable tissues to provide new insight into disease etiology and new targets for biological validation in disease models.First, we define a unique gene expression approach termed Ratio of Ratios that tests differential gene expression across AD and control in the vulnerable prefrontal cortex and the resistant cerebellum. We apply this along with Desirability Function Analysis to a publicly available microarray data set to sort genes into priority groups demonstrating contrasting differential expression between regions that associates with selective vulnerability, and parallel differential expression between regions that is nonspecific to vulnerability. Among contrasting genes, we find a neuronal and endothelial proteostasis signature where chaperones are selectively upregulated in the cerebellum. Among parallel genes, we find a microglial, astrocytic, and endothelial signature of immune and stress activation. Using transcription factor interaction network analysis, we report potential key regulators of these contrasting and parallel responses. We also show that the identified chaperone proteins successfully antagonize tau aggregation in vitro.Building on this, we next tested the replicability of these findings in an independent transcriptomic data set to determine the generalizability of our conclusions. We found a strong correlation of the Ratio of Ratios metric between data sets, as well as strong overlap in prioritization when using relaxed criteria. Enrichment analysis of the priority sets defined independently between data sets demonstrated both replicated and non-replicated cell type specific markers and biological processes. Replicated contrasting upregulated processes again include proteostasis genes, but also include cell trafficking, implying a role for endocytosis and secretion of prion-like seeds. Using weighted gene coexpression network analysis, we report modules enriched for contrasting up and downregulated gene sets, as well as their top hubs.Finally, we extend this approach to a disease comparison between AD and Progressive Supranuclear Palsy, a distinct tauopathy where the cerebellum is indeed vulnerable. There we find predominantly parallel biological processes, including proteostasis, but again we identify enrichment of cell trafficking genes in the contrasting downregulated gene set.Altogether we provide a comprehensive view of the gene expression landscape in AD with a unique lens for selective vulnerability. This work generates numerous testable hypotheses for mechanistic studies in disease models of prion-like propagation that will move the field forward.
Subject Added Entry-Topical Term  
Neurosciences.
Subject Added Entry-Topical Term  
Bioinformatics.
Subject Added Entry-Topical Term  
Biology.
Subject Added Entry-Topical Term  
Genetics.
Index Term-Uncontrolled  
Alzheimer's Disease
Index Term-Uncontrolled  
Neurodegeneration
Index Term-Uncontrolled  
Tau protein
Index Term-Uncontrolled  
Tauopathy
Index Term-Uncontrolled  
Prion
Index Term-Uncontrolled  
Gene expression
Added Entry-Corporate Name  
The Ohio State University Biomedical Sciences
Host Item Entry  
Dissertations Abstracts International. 85-03B.
Host Item Entry  
Dissertation Abstract International
Electronic Location and Access  
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Control Number  
joongbu:643190
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