Towards a comprehensive structural coverage of completed genomes: a structural genomics viewpointPROTEIN FAMILIES AND THEIR EVOLUTION—A STRUCTURAL PERSPECTIVEThe InterPro protein families database: the classification resource after 15 yearsA large-scale evaluation of computational protein function predictionExtending CATH: increasing coverage of the protein structure universe and linking structure with functionInterPro in 2011: new developments in the family and domain prediction databaseInterPro: the integrative protein signature databaseDomain assignment for protein structures using a consensus approach: characterization and analysisMultiple protein structure alignmentConsensus clustering and functional interpretation of gene-expression dataThe CATH Domain Structure Database and related resources Gene3D and DHS provide comprehensive domain family information for genome analysisProgress towards mapping the universe of protein foldsComprehensive genome analysis of 203 genomes provides structural genomics with new insights into protein family spaceGene3D: modelling protein structure, function and evolution.The history of the CATH structural classification of protein domainsRigid-body Ligand Recognition Drives Cytotoxic T-lymphocyte Antigen 4 (CTLA-4) Receptor TriggeringCrystal structures of the human Dysferlin inner DysF domainCATH--a hierarchic classification of protein domain structuresProtein superfamilies and domain superfoldsGenome3D: exploiting structure to help users understand their sequencesProtein structure alignmentGenome3D: a UK collaborative project to annotate genomic sequences with predicted 3D structures based on SCOP and CATH domainsFLORA: a novel method to predict protein function from structure in diverse superfamiliesAn expanded evaluation of protein function prediction methods shows an improvement in accuracyISCB's Initial Reaction to The New England Journal of Medicine Editorial on Data SharingISCB's initial reaction to New England Journal of Medicine editorial on data sharingThe implications of alternative splicing in the ENCODE protein complementProtein function annotation by homology-based inferenceOne fold with many functions: the evolutionary relationships between TIM barrel families based on their sequences, structures and functionsFrom protein structure to function.DOMPLOT: a program to generate schematic diagrams of the structural domain organization within proteins, annotated by ligand contacts.Evolution of function in protein superfamilies, from a structural perspective.Use of structure comparison methods for the refinement of protein structure predictions. I. Identifying the structural family of a protein from low-resolution models.Fast structure alignment for protein databank searching.Recognizing the fold of a protein structure.Progress of structural genomics initiatives: an analysis of solved target structures.Exploiting protein structure data to explore the evolution of protein function and biological complexity.Towards fully automated structure-based function prediction in structural genomics: a case studyCATHEDRAL: a fast and effective algorithm to predict folds and domain boundaries from multidomain protein structures.CATH: comprehensive structural and functional annotations for genome sequences.
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description
Profesora de Bioinformática en ...... mente en la base de datos CATH
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Professor of Bioinformatics
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bioinformaticus
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Christine Orengo
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Christine Orengo
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Christine Orengo
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Christine Orengo
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Christine Orengo
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Christine Orengo
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Christine Orengo
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Christine Orengo
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Christine Orengo
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Christine Orengo
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Christine Orengo
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Christine Orengo
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Christine Orengo
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Christine Orengo
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Christine Orengo
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Christine Orengo
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Christine Orengo
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C A Orengo
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C. Orengo
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Christine Anne Orengo
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Christine Orengo
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Christine Orengo
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Christine Orengo
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Christine Orengo
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Christine Orengo
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Christine Orengo
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Christine Orengo
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Christine Orengo
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orengo.christine