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CoMoDis: composite motif discovery in mammalian genomes - art. no. E1

机译:CoMoDis:哺乳动物基因组中的复合基序发现-艺术。没有。 E1

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摘要

Specificity of mammalian gene regulatory regions is achieved to a large extent through the combinatorial binding of sets of transcription factors to distinct binding sites, discrete combinations of which are often referred to as regulatory modules. Identification and subsequent characterization of gene regulatory modules will be a key step in assembling transcriptional regulatory networks from gene expression profiling data, with the ultimate goal of unravelling the regulatory codes that govern gene expression in various cell types. Here we describe the new bioinformatics tool, Composite Motif Discovery (CoMoDis), which streamlines computational identification of novel regulatory modules starting from a single seed motif. Seed motifs represent binding sites conserved across mammalian species. CoMoDis facilitates novel motif discovery by automating the extraction of DNA sequences flanking seed motifs and streamlining downstream motif discovery using a variety of tools, including several that utilize phylogenetic conservation criteria. CoMoDis is available at http://hscl.cimr.cam.ac.uk/CoMoDis_portal.html.
机译:哺乳动物基因调控区的特异性在很大程度上是通过转录因子组与不同结合位点的组合结合而实现的,这些结合位点的离散组合通常被称为调控模块。基因调控模块的鉴定和后续表征将是从基因表达谱数据组装转录调控网络的关键步骤,其最终目标是揭示出控制各种细胞类型中基因表达的调控代码。在这里,我们描述了新的生物信息学工具复合主题发现(CoMoDis),该工具简化了从单个种子基序开始的新型调节模块的计算识别。种子基序代表跨哺乳动物物种保守的结合位点。 CoMoDis通过使用多种工具(包括一些利用系统发育保存标准的工具)自动提取种子基序两侧的DNA序列并简化下游基序发现,从而促进了新的基序发现。 CoMoDis可从http://hscl.cimr.cam.ac.uk/CoMoDis_portal.html获得。

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