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首页> 外文期刊>Alzheimer s Research & Therapy >AlzGPS: a genome-wide positioning systems platform to catalyze multi-omics for Alzheimer’s drug discovery
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AlzGPS: a genome-wide positioning systems platform to catalyze multi-omics for Alzheimer’s drug discovery

机译:Alzgps:一个基因组定位系统平台,用于催化用于阿尔茨海默的药物发现的多OMICS

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Recent DNA/RNA sequencing and other multi-omics technologies have advanced the understanding of the biology and pathophysiology of AD, yet there is still a lack of disease-modifying treatments for AD. A new approach to integration of the genome, transcriptome, proteome, and human interactome in the drug discovery and development process is essential for this endeavor. In this study, we developed AlzGPS (Genome-wide Positioning Systems platform for Alzheimer’s Drug Discovery, https://alzgps.lerner.ccf.org ), a comprehensive systems biology tool to enable searching, visualizing, and analyzing multi-omics, various types of heterogeneous biological networks, and clinical databases for target identification and development of effective prevention and treatment for AD. Via AlzGPS: (1) we curated more than 100 AD multi-omics data sets capturing DNA, RNA, protein, and small molecule profiles underlying AD pathogenesis (e.g., early vs. late stage and tau or amyloid endophenotype); (2) we constructed endophenotype disease modules by incorporating multi-omics findings and human protein-protein interactome networks; (3) we provided possible treatment information from ~?3000 FDA approved/investigational drugs for AD using state-of-the-art network proximity analyses; (4) we curated nearly 300 literature references for high-confidence drug candidates; (5) we included information from over 1000?AD clinical trials noting drug’s mechanisms-of-action and primary drug targets, and linking them to our integrated multi-omics view for targets and network analysis results for the drugs; (6) we implemented a highly interactive web interface for database browsing and network visualization. Network visualization enabled by AlzGPS includes brain-specific neighborhood networks for genes-of-interest, endophenotype disease module networks for omics-of-interest, and mechanism-of-action networks for drugs targeting disease modules. By virtue of combining systems pharmacology and network-based integrative analysis of multi-omics data, AlzGPS offers actionable systems biology tools for accelerating therapeutic development in AD.
机译:最近的DNA / RNA测序和其他多OMICS技术已经提出了对广告的生物学和病理生理学的理解,但仍然缺乏疾病改性的广告治疗方法。在药物发现和开发过程中整合基因组,转录组,蛋白质组和人偶联的新方法对于这一努力至关重要。在这项研究中,我们开发了Alzgps(用于阿尔茨海默氏药物发现的基因组定位系统平台,https:/alzgps.lerner.ccf.org),一个全面的系统生物学工具,可以启用搜索,可视化和分析多个子,各种各样的多个子异构生物网络的类型,以及针对AD的目标识别和发展的临床数据库。通过alzgps:(1)我们策划了100多个广告多OMICS数据集捕获DNA,RNA,蛋白质和小分子谱的下面的AD发病机制(例如,早期与晚期和Tau或淀粉样蛋白型蛋白); (2)通过掺入多OMICS发现和人蛋白质 - 蛋白质互乱网络来构建内切蛋白型疾病模块; (3)我们提供了来自〜3000 FDA批准/调查药物的可能治疗信息,用于使用最先进的网络邻近分析分析; (4)我们策划了近300名文献引用的高信任药物候选人; (5)我们包括来自超过1000的信息?AD临床试验注意到药物的行为机制和主要药物目标,并将它们与我们的综合多OMICS视图联系起来,针对药物的目标和网络分析结果; (6)我们为数据库浏览和网络可视化实现了一个高度交互式的Web界面。 ALZGPS实现的网络可视化包括用于兴趣基因的大脑特异性邻域网络,用于遗产的内肠型疾病模块网络,以及针对靶向疾病模块的药物的动作机制网络。通过组合系统药理学和基于网络的多OMICS数据的整合分析,ALZGPS提供可操作的系统生物学工具,用于加速广告中的治疗发展。

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