AnnoMiner: a new web-tool to integrate epigenetics, transcription factor occupancy and transcriptomics data to predict transcriptional regulators
AnnoMiner: a new web-tool to integrate epigenetics, transcription factor occupancy and transcriptomics data to predict transcriptional regulators
Abstract Gene expression regulation requires precise transcriptional programs, led by transcription factors in combination with epigenetic events. Recent advances in epigenomic and transcriptomic techniques provided insight into different gene regulation mechanisms. However, to date it remains challenging to understand how combinations of transcription factors together with epigenetic events control cell-type specific gene expression. We developed the AnnoMiner web-server and introduce an innovative and flexible way to annotate and integrate epigenetic, and transcription factor occupancy data. First, AnnoMiner annotates user-provided peaks with gene features. Second, AnnoMiner can integrate genome binding data from two different transcriptional regulators together with gene features. Third, AnnoMiner offers to explore the transcriptional deregulation of 10 genes nearby a user-provided peak. AnnoMiner’s fourth function performs transcription factor or histone mark enrichment analysis for user-provided gene lists by utilizing hundreds of public, high-quality datasets from ENCODE for the model organisms human, mouse, Drosophila and C. elegans. Thus, AnnoMiner can predict transcriptional regulators for a studied process without the strict need for chromatin data from the same process. We compared AnnoMiner to existing tools and experimentally validated several transcriptional regulators predicted by AnnoMiner to indeed contribute to muscle morphogenesis in Drosophila. AnnoMiner is freely available at http://chimborazo.ibdm.univ-mrs.fr/AnnoMiner/.
Meiler Arno、Weikunat Michaela、Habermann Bianca H.、Marchiano Fabio、Schnorrer Frank
Max Planck Institute of BiochemistryMax Planck Institute of BiochemistryMax Planck Institute of Biochemistry||Aix-Marseille University, CNRSAix-Marseille University, CNRSMax Planck Institute of Biochemistry||Aix-Marseille University, CNRS
生物科学研究方法、生物科学研究技术分子生物学生物科学理论、生物科学方法
ChIP-seqtranscription factorepigenetic stateepigenetic modificationgenomic peak annotationgenomic peak integrationnearby gene annotationenrichment analysisflight muscle development
Meiler Arno,Weikunat Michaela,Habermann Bianca H.,Marchiano Fabio,Schnorrer Frank.AnnoMiner: a new web-tool to integrate epigenetics, transcription factor occupancy and transcriptomics data to predict transcriptional regulators[EB/OL].(2025-03-28)[2025-05-05].https://www.biorxiv.org/content/10.1101/2021.01.28.428613.点此复制
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