Publication | Open Access
tappAS: a comprehensive computational framework for the analysis of the functional impact of differential splicing
68
Citations
108
References
2020
Year
GeneticsMolecular BiologyTranscriptomics TechnologySplicing VariantTranscriptional RegulationLong Non-coding RnaTranscriptomicsComprehensive Computational FrameworkFunctional ImpactRecent AdvancesRna SequencingFunctional ReadoutAlternative Transcript IdentificationOmicsPathway AnalysisGene ExpressionFunctional GenomicsBioinformaticsProtein BioinformaticsLong-read SequencingGene Sequence AnnotationNatural SciencesComputational BiologyDifferential SplicingSystems BiologyMedicine
Recent advances in long-read sequencing solve inaccuracies in alternative transcript identification of full-length transcripts in short-read RNA-Seq data, which encourages the development of methods for isoform-centered functional analysis. Here, we present tappAS, the first framework to enable a comprehensive Functional Iso-Transcriptomics (FIT) analysis, which is effective at revealing the functional impact of context-specific post-transcriptional regulation. tappAS uses isoform-resolved annotation of coding and non-coding functional domains, motifs, and sites, in combination with novel analysis methods to interrogate different aspects of the functional readout of transcript variants and isoform regulation. tappAS software and documentation are available at https://app.tappas.org.
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