Mutadelic: mutation analysis using description logic inferencing capabilities
Autor: | Michael Krauthammer, Matthew E. Holford |
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Jazyk: | angličtina |
Rok vydání: | 2015 |
Předmět: |
Statistics and Probability
medicine.medical_specialty Computer science DNA Mutational Analysis Genomics computer.software_genre medicine.disease_cause Biochemistry DNA sequencing Workflow Software Description logic medicine Humans Molecular Biology Mutation Information retrieval business.industry High-Throughput Nucleotide Sequencing Molecular Sequence Annotation Original Papers Hematologic Diseases Computer Science Applications Computational Mathematics Computational Theory and Mathematics Medical genetics Data mining business computer |
Popis: | Motivation: As next generation sequencing gains a foothold in clinical genetics, there is a need for annotation tools to characterize increasing amounts of patient variant data for identifying clinically relevant mutations. While existing informatics tools provide efficient bulk variant annotations, they often generate excess information that may limit their scalability. Results: We propose an alternative solution based on description logic inferencing to generate workflows that produce only those annotations that will contribute to the interpretation of each variant. Workflows are dynamically generated using a novel abductive reasoning framework called a basic framework for abductive workflow generation (AbFab). Criteria for identifying disease-causing variants in Mendelian blood disorders were identified and implemented as AbFab services. A web application was built allowing users to run workflows generated from the criteria to analyze genomic variants. Significant variants are flagged and explanations provided for why they match or fail to match the criteria. Availability and implementation: The Mutadelic web application is available for use at http://krauthammerlab.med.yale.edu/mutadelic. Contact: michael.krauthammer@yale.edu Supplementary information: Supplementary data are available at Bioinformatics online. |
Databáze: | OpenAIRE |
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