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签名搜索:用于基因表达签名搜索和功能解释的环境。

signatureSearch: environment for gene expression signature searching and functional interpretation.

机构信息

Institute for Integrative Genome Biology, 1207F Genomics Building, University of California, Riverside, CA 92521, USA.

California Pacific Medical Center Research Institute, 550 16th Street, 2nd floor, San Francisco, CA 94158, USA.

出版信息

Nucleic Acids Res. 2020 Dec 2;48(21):e124. doi: 10.1093/nar/gkaa878.

Abstract

signatureSearch is an R/Bioconductor package that integrates a suite of existing and novel algorithms into an analysis environment for gene expression signature (GES) searching combined with functional enrichment analysis (FEA) and visualization methods to facilitate the interpretation of the search results. In a typical GES search (GESS), a query GES is searched against a database of GESs obtained from large numbers of measurements, such as different genetic backgrounds, disease states and drug perturbations. Database matches sharing correlated signatures with the query indicate related cellular responses frequently governed by connected mechanisms, such as drugs mimicking the expression responses of a disease. To identify which processes are predominantly modulated in the GESS results, we developed specialized FEA methods combined with drug-target network visualization tools. The provided analysis tools are useful for studying the effects of genetic, chemical and environmental perturbations on biological systems, as well as searching single cell GES databases to identify novel network connections or cell types. The signatureSearch software is unique in that it provides access to an integrated environment for GESS/FEA routines that includes several novel search and enrichment methods, efficient data structures, and access to pre-built GES databases, and allowing users to work with custom databases.

摘要

signatureSearch 是一个 R/Bioconductor 软件包,它将一系列现有的和新颖的算法集成到一个基因表达特征(GES)搜索分析环境中,结合功能富集分析(FEA)和可视化方法,以方便解释搜索结果。在典型的 GES 搜索(GESS)中,查询 GES 会在数据库中搜索 GES,该数据库由大量测量值(如不同的遗传背景、疾病状态和药物扰动)获得。与查询具有相关特征的数据库匹配表明相关的细胞反应通常由连接的机制控制,例如药物模拟疾病的表达反应。为了确定 GESS 结果中主要调节哪些过程,我们开发了专门的 FEA 方法,结合药物-靶标网络可视化工具。提供的分析工具对于研究遗传、化学和环境扰动对生物系统的影响以及搜索单细胞 GES 数据库以识别新的网络连接或细胞类型非常有用。signatureSearch 软件的独特之处在于它提供了对 GESS/FEA 例程的集成环境的访问,其中包括几个新颖的搜索和富集方法、高效的数据结构以及对预构建的 GES 数据库的访问,并允许用户使用自定义数据库。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bad/7708038/9b34dc61a759/gkaa878fig1.jpg

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