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利用现有数据集,在特定患者亚组中生成对阿尔茨海默病生物学的新见解。

Leveraging existing data sets to generate new insights into Alzheimer's disease biology in specific patient subsets.

作者信息

Fowler Kevin D, Funt Jason M, Artyomov Maxim N, Zeskind Benjamin, Kolitz Sarah E, Towfic Fadi

机构信息

Immuneering Corporation, Cambridge, Massachusetts, United States of America.

Department of Immunology and Pathology, Washington University in St. Louis, St. Louis, Missouri, United States of America.

出版信息

Sci Rep. 2015 Sep 23;5:14324. doi: 10.1038/srep14324.

Abstract

To generate new insights into the biology of Alzheimer's Disease (AD), we developed methods to combine and reuse a wide variety of existing data sets in new ways. We first identified genes consistently associated with AD in each of four separate expression studies, and confirmed this result using a fifth study. We next developed algorithms to search hundreds of thousands of Gene Expression Omnibus (GEO) data sets, identifying a link between an AD-associated gene (NEUROD6) and gender. We therefore stratified patients by gender along with APOE4 status, and analyzed multiple SNP data sets to identify variants associated with AD. SNPs in either the region of NEUROD6 or SNAP25 were significantly associated with AD, in APOE4+ females and APOE4+ males, respectively. We developed algorithms to search Connectivity Map (CMAP) data for medicines that modulate AD-associated genes, identifying hypotheses that warrant further investigation for treating specific AD patient subsets. In contrast to other methods, this approach focused on integrating multiple gene expression datasets across platforms in order to achieve a robust intersection of disease-affected genes, and then leveraging these results in combination with genetic studies in order to prioritize potential genes for targeted therapy.

摘要

为了对阿尔茨海默病(AD)的生物学特性有新的认识,我们开发了一些方法,以新的方式组合和重新利用各种现有的数据集。我们首先在四项独立的表达研究中分别确定了与AD持续相关的基因,并使用第五项研究证实了这一结果。接下来,我们开发了算法来搜索数十万个人类基因表达综合数据库(GEO)数据集,确定了一个与AD相关基因(NEUROD6)和性别的联系。因此,我们根据性别以及APOE4状态对患者进行分层,并分析多个单核苷酸多态性(SNP)数据集,以确定与AD相关的变异。NEUROD6或SNAP25区域的SNP分别与APOE4阳性女性和APOE4阳性男性的AD显著相关。我们开发了算法来搜索连通性图谱(CMAP)数据,寻找可调节AD相关基因的药物,确定值得对特定AD患者亚组进行进一步治疗研究的假设。与其他方法不同,这种方法侧重于整合跨平台的多个基因表达数据集,以实现疾病相关基因的可靠交集,然后将这些结果与基因研究相结合,以便为靶向治疗确定潜在基因的优先级。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1581/4585817/b7c1112dbf94/srep14324-f1.jpg

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