DIANA-Lab, Biomedical Sciences Research Center 'Alexander Fleming', 16672 Vari, Greece.
Nucleic Acids Res. 2013 Jan;41(Database issue):D239-45. doi: 10.1093/nar/gks1246. Epub 2012 Nov 28.
Recently, the attention of the research community has been focused on long non-coding RNAs (lncRNAs) and their physiological/pathological implications. As the number of experiments increase in a rapid rate and transcriptional units are better annotated, databases indexing lncRNA properties and function gradually become essential tools to this process. Aim of DIANA-LncBase (www.microrna.gr/LncBase) is to reinforce researchers' attempts and unravel microRNA (miRNA)-lncRNA putative functional interactions. This study provides, for the first time, a comprehensive annotation of miRNA targets on lncRNAs. DIANA-LncBase hosts transcriptome-wide experimentally verified and computationally predicted miRNA recognition elements (MREs) on human and mouse lncRNAs. The analysis performed includes an integration of most of the available lncRNA resources, relevant high-throughput HITS-CLIP and PAR-CLIP experimental data as well as state-of-the-art in silico target predictions. The experimentally supported entries available in DIANA-LncBase correspond to >5000 interactions, while the computationally predicted interactions exceed 10 million. DIANA-LncBase hosts detailed information for each miRNA-lncRNA pair, such as external links, graphic plots of transcripts' genomic location, representation of the binding sites, lncRNA tissue expression as well as MREs conservation and prediction scores.
最近,研究界的注意力集中在长非编码 RNA(lncRNA)及其生理/病理意义上。随着实验数量的快速增加和转录单元得到更好的注释,索引 lncRNA 属性和功能的数据库逐渐成为该过程的必要工具。DIANA-LncBase(www.microrna.gr/LncBase)的目的是加强研究人员的尝试,并揭示 microRNA(miRNA)-lncRNA 的潜在功能相互作用。本研究首次对 lncRNA 上的 miRNA 靶标进行了全面注释。DIANA-LncBase 提供了人类和小鼠 lncRNA 上经过实验验证和计算预测的 miRNA 识别元件(MRE)的转录组范围。分析包括整合大多数可用的 lncRNA 资源、相关的高通量 HITS-CLIP 和 PAR-CLIP 实验数据以及最先进的计算靶标预测。DIANA-LncBase 中提供的实验支持条目对应于 >5000 个相互作用,而计算预测的相互作用超过 1000 万。DIANA-LncBase 为每个 miRNA-lncRNA 对提供了详细信息,例如外部链接、转录本基因组位置的图形图、结合位点的表示、lncRNA 组织表达以及 MREs 的保守性和预测分数。