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SIGNATURE: A workbench for gene expression signature analysis

机译:签名:基因表达签名分析的工作台

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Background The biological phenotype of a cell, such as a characteristic visual image or behavior, reflects activities derived from the expression of collections of genes. As such, an ability to measure the expression of these genes provides an opportunity to develop more precise and varied sets of phenotypes. However, to use this approach requires computational methods that are difficult to implement and apply, and thus there is a critical need for intelligent software tools that can reduce the technical burden of the analysis. Tools for gene expression analyses are unusually difficult to implement in a user-friendly way because their application requires a combination of biological data curation, statistical computational methods, and database expertise. Results We have developed SIGNATURE, a web-based resource that simplifies gene expression signature analysis by providing software, data, and protocols to perform the analysis successfully. This resource uses Bayesian methods for processing gene expression data coupled with a curated database of gene expression signatures, all carried out within a GenePattern web interface for easy use and access. Conclusions SIGNATURE is available for public use at http://genepattern.genome.duke.edu/signature/ webcite .
机译:背景技术细胞的生物表型,例如特征性的视觉图像或行为,反映了源自基因集合表达的活性。这样,测量这些基因表达的能力提供了发展更精确和变化的表型组的机会。然而,使用这种方法需要难以实现和应用的计算方法,因此迫切需要能够减轻分析技术负担的智能软件工具。基因表达分析工具通常难以以用户友好的方式实现,因为其应用需要结合生物学数据管理,统计计算方法和数据库专业知识。结果我们开发了SIGNATURE,这是一种基于Web的资源,通过提供软件,数据和协议来成功执行分析,从而简化了基因表达签名分析。该资源使用贝叶斯方法处理基因表达数据,并结合精选的基因表达签名数据库,所有这些操作都在GenePattern Web界面中进行,以方便使用和访问。结论SIGNATURE可在http://genepattern.genome.duke.edu/signature/webcite上公开使用。

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