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通过基因组趋同鉴定帕金森病候选基因:黑质的基因表达连续分析(SAGE)

Genomic convergence to identify candidate genes for Parkinson disease: SAGE analysis of the substantia nigra.

作者信息

Noureddine Maher A, Li Yi-Ju, van der Walt Joelle M, Walters Robert, Jewett Rita M, Xu Hong, Wang Tianyuan, Walter Jeffrey W, Scott Burton L, Hulette Christine, Schmechel Don, Stenger Judith E, Dietrich Fred, Vance Jeffery M, Hauser Michael A

机构信息

Center for Human Genetics, Duke University, Durham, North Carolina 27710-2903, USA.

出版信息

Mov Disord. 2005 Oct;20(10):1299-309. doi: 10.1002/mds.20573.

Abstract

Genomic convergence is a multistep approach that combines gene expression with genomic linkage to identify and prioritize susceptibility genes for complex disease. As a first step, we previously performed linkage analysis on 174 multiplex Parkinson's disease (PD) families, identifying five peaks for PD risk and two for genes affecting age at onset (AAO) in PD [Hauser et al., Hum Mol Genet 2003;12:671-677]. We report here the next step: serial analysis of gene expression [SAGE; Scott et al., JAMA 2001;286:2239-2242] to analyze substantia nigra tissue from three PD patients and two age-matched controls. We find 933 differentially expressed genes (P<0.05) between PD and controls, but of these, only 50 genes represented by unique SAGE tags map within our previously described PD linkage regions. Furthermore, genes encoded by mitochondrial DNA are expressed 1.5-fold higher in PD patients versus controls, without an increase in the corresponding nuclear-encoded mitochondrial components, suggesting an increase in mtDNA genomes in PD or a disjunction with nuclear expression. The next step in the genomic convergence process will be to screen these 50 high-quality candidate genes for association with PD risk susceptibility and genetic effects on AAO.

摘要

基因组聚合是一种多步骤方法,它将基因表达与基因组连锁分析相结合,以识别复杂疾病的易感基因并对其进行优先级排序。作为第一步,我们之前对174个帕金森病(PD)家系进行了连锁分析,确定了5个PD风险峰和2个影响PD发病年龄(AAO)的基因峰[豪泽等人,《人类分子遗传学》2003年;12:671 - 677]。我们在此报告下一步:基因表达序列分析[SAGE;斯科特等人,《美国医学会杂志》2001年;286:2239 - 2242],以分析3例PD患者和2例年龄匹配对照的黑质组织。我们发现PD患者与对照之间有933个差异表达基因(P<0.05),但其中只有50个由独特SAGE标签代表的基因位于我们之前描述的PD连锁区域内。此外,线粒体DNA编码的基因在PD患者中的表达比对照高1.5倍,而相应的核编码线粒体成分没有增加,这表明PD中线粒体DNA基因组增加或与核表达脱节。基因组聚合过程的下一步将是筛选这50个高质量候选基因,以确定它们与PD风险易感性以及对AAO的遗传效应之间的关联。

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