Genomic convergence: identifying candidate genes for Parkinson's disease by combining serial analysis of gene expression and genetic linkage.
We present a multifactorial, multistep approach called genomic convergence that combines gene expression with genomic linkage analysis to identify and prioritize candidate susceptibility genes for Parkinson's disease (PD). To initiate this process, we used serial analysis of gene expression (SAGE) to identify genes expressed in two normal substantia nigras (SN) and adjacent midbrain tissue. This identified over 3700 transcripts, including the three most abundant SAGE tags, which did not correspond to any known genes or ESTs. We developed high-throughput bioinformatics methods to map the genes corresponding to these tags and identified 402 SN genes that lay within five large genomic linkage regions, previously identified in 174 multiplex PD families. These genes represent excellent candidates for PD susceptibility alleles and further genomic convergence and analyses.
Duke Scholars
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Related Subject Headings
- Substantia Nigra
- RNA, Messenger
- RNA
- Parkinson Disease
- Humans
- Genetics & Heredity
- Genetic Techniques
- Genetic Predisposition to Disease
- Genetic Linkage
- Gene Library
Citation
Published In
ISSN
Publication Date
Volume
Issue
Start / End Page
Location
Related Subject Headings
- Substantia Nigra
- RNA, Messenger
- RNA
- Parkinson Disease
- Humans
- Genetics & Heredity
- Genetic Techniques
- Genetic Predisposition to Disease
- Genetic Linkage
- Gene Library