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Introduction to ExPlain™ What is ExPlain? ExPlain is a set of tools for the analysis of gene sets and sequences It can be used to: 1. 2. 3. 4. Find binding sites in a promoter Build composite binding site models Map gene and protein lists to pathways Explore and view gene regulatory networks ExPlain Tools • • • • Classification into functional categories (GO, diseases, tissues)... Enrichment analysis... Mapping on canonical pathways... Mapping on user interaction pathways... • • • • • • TF binding site search (Match)... Combined pattern and matrix search (PMatch)... CM: Composite Models (genetic algorithm)... Identify Composite Model regulated genes... Phylogenetic footprinting (conserved TFBS)... Filter sites using intervals... • • Search for key nodes... Search for clusters... Regulatory Network Analysis • • • • Statistics calculator... Generate graph on interval... Generate graph on geneset... Graphing Widgets Mapping to known pathways Binding Site Analysis The ExPlain Interface File Menu Data Menu Analysis Menu Icons and Tools Context Specific The Wizards Wizards - Automated work flows for common analyses 4 separate workflows A good place to start Wizard as a Reminder Binding Site Analysis • Binding Site Representation as a matrix • Each site has a specificity • These are created from experimental evidence Match uses these matrices to find new potential binding sites MATCH Parameters Promoters to Analyze Set to compare to Matrixes to use Note on loading sequences Promoter window TSS Sequence 5’ -1000 Default promoter position 0 100 3’ Composite Models • Create combinations of binding sites that are unique to a gene set. • This input for a composite model search in a gene set and a MATCH output. Key Node Analysis • Find nodes that are connected to gene in network. ? ? Gene1 Gene2 Gene3 Cluster Analysis • Tries to connect each pair of molecules of the input set. ? Gene3 Gene1 Gene2 Exercises for Today 1. Find binding sites on a sequence 2. Pathway Analysis – Map a gene set to pathway – Enrichment Analysis 3. Find over and under represented binding sites in a gene set 4. Construct a composite model 5. Find key node 6. Use the viewer