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StemChecker: a web-based tool to discover and explore stemness signatures in gene sets.

机译:StemChecker:基于Web的工具,用于发现和探索基因集中的茎特征。

摘要

Stem cells present unique regenerative abilities, offering great potential for treatment of prevalent pathologies such as diabetes, neurodegenerative and heart diseases. Various research groups dedicated significant effort to identify sets of genes-so-called stemness signatures-considered essential to define stem cells. However, their usage has been hindered by the lack of comprehensive resources and easy-to-use tools. For this we developed StemChecker, a novel stemness analysis tool, based on the curation of nearly fifty published stemness signatures defined by gene expression, RNAi screens, Transcription Factor (TF) binding sites, literature reviews and computational approaches. StemChecker allows researchers to explore the presence of stemness signatures in user-defined gene sets, without carrying-out lengthy literature curation or data processing. To assist in exploring underlying regulatory mechanisms, we collected over 80 target gene sets of TFs associated with pluri- or multipotency. StemChecker presents an intuitive graphical display, as well as detailed statistical results in table format, which helps revealing transcriptionally regulatory programs, indicating the putative involvement of stemness-associated processes in diseases like cancer. Overall, StemChecker substantially expands the available repertoire of online tools, designed to assist the stem cell biology, developmental biology, regenerative medicine and human disease research community. StemChecker is freely accessible at http://stemchecker.sysbiolab.eu.
机译:干细胞具有独特的再生能力,为治疗诸如糖尿病,神经退行性疾病和心脏病等流行疾病提供了巨大潜力。各个研究小组付出了巨大的努力来鉴定被认为是定义干细胞必不可少的基因集(所谓的干性签名)。但是,由于缺乏全面的资源和易于使用的工具,阻碍了它们的使用。为此,我们基于基因表达,RNAi筛选,转录因子(TF)结合位点,文献综述和计算方法所定义的近五十种已发表的干性签名的开发,开发了一种新颖的干性分析工具StemChecker。利用StemChecker,研究人员无需进行冗长的文献整理或数据处理,即可在用户定义的基因集中探索茎标记的存在。为了帮助探索潜在的调控机制,我们收集了80多个与多能或多能相关的TF靶基因集。 StemChecker以表格形式显示直观的图形显示以及详细的统计结果,有助于揭示转录调控程序,表明与干性相关的过程可能参与了癌症等疾病。总体而言,StemChecker大大扩展了在线工具的可用范围,旨在帮助干细胞生物学,发育生物学,再生医学和人类疾病研究界。可从http://stemchecker.sysbiolab.eu免费访问StemChecker。

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