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首页> 外文期刊>Biology Direct >Predicted functional interactome of Caenorhabditis elegans and a web tool for the functional interpretation of differentially expressed genes
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Predicted functional interactome of Caenorhabditis elegans and a web tool for the functional interpretation of differentially expressed genes

机译:预测Caenorhabditis elegans的功能性互联蛋白和差异表达基因功能解释的网络工具

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摘要

The nematode worm, Caenorhabditis elegans, is a saprophytic species that has been emerging as a standard model organism since the early 1960s. This species is useful in numerous fields, including developmental biology, neurobiology, and ageing. A high-quality comprehensive molecular interaction network is needed to facilitate molecular mechanism studies in C. elegans. We present the predicted functional interactome of Caenorhabditis elegans (FIC), which integrates functional association data from 10 public databases to infer functional gene interactions on diverse functional perspectives. In this work, FIC includes 108,550 putative functional associations with balanced sensitivity and specificity, which are expected to cover 21.42% of all C. elegans protein interactions, and 29.25% of these associations may represent protein interactions. Based on FIC, we developed a gene set linkage analysis (GSLA) web tool to interpret potential functional impacts from a set of differentially expressed genes observed in transcriptome analyses. We present the predicted C. elegans interactome database FIC, which is a high-quality database of predicted functional interactions among genes. The functional interactions in FIC serve as a good reference interactome for GSLA to annotate differentially expressed genes for their potential functional impacts. In a case study, the FIC/GSLA system shows more comprehensive and concise annotations compared to other widely used gene set annotation tools, including PANTHER and DAVID. FIC and its associated GSLA are available at the website http://worm.biomedtzc.cn .
机译:塞伦佐杆菌杆菌的线虫虫是一种嗜酸性物种,自20世纪60年代初以来一直是标准模型生物体。该物种在许多领域是有用的,包括发育生物学,神经生物学和老化。需要一种高质量的综合分子相互作用网络,以促进C.秀丽隐杆线的分子机制研究。我们介绍了Caenorhabditis elegans(FIC)的预测官能酰蛋白组,其将功能关联数据从10个公共数据库中整合到推断各种功能视角上的功能基因相互作用。在这项工作中,FIC包括108,550个具有平衡敏感性和特异性的推定功能关联,预计将占据所有C.秀丽隐杆线虫蛋白质相互作用的21.42%,而29.25%的这些关联可能代表蛋白质相互作用。基于FIC,我们开发了一种基因组联动分析(GSLA)网状工具,以解释在转录组分析中观察到的一组差异表达基因的潜在功能影响。我们介绍了预测的C. elegans互乱数据库FIC,它是基因之间的预测功能相互作用的高质量数据库。 FIC中的功能相互作用用作GSLA的良好参考互分子,用于注释差异表达基因的潜在功能影响。在一个案例研究中,与其他广泛使用的基因套装注释工具相比,FIC / GSLA系统显示更全面和简洁的注释,包括Panther和David。 FIC及其相关的GSLA在网站http://worm.biomedtzc.cn上提供。

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