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3D-GENOMICS: a database to compare structural and functional annotations of proteins between sequenced genomes.

, , , and . Nucleic Acids Research, 32 (Database-Issue): 245-250 (2004)

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Use of Inductive Logic Programming to Learn Principles of Protein Structure., , and . Electron. Trans. Artif. Intell., 4 (B): 119-124 (2000)Structural annotation of the human genome., and . German Conference on Bioinformatics, page 211-212. German Research Center for Biotechnology, (2001)Prediction of viable circular permutants using a graph theoretic approach., , and . Bioinformatics, 22 (11): 1353-1358 (2006)Machine Learning and biomolecular modelling., , , and . Machine Intelligence 13, page 193-212. Clarendon Press, Oxford, (1992)Carcinogenesis Predictions Using ILP., , , and . ILP, volume 1297 of Lecture Notes in Computer Science, page 273-287. Springer, (1997)Automatic determination of protein fold signatures from structural superpositions., , , and . Electron. Trans. Artif. Intell., 5 (B): 245-274 (2001)PROMOT: a FORTRAN program to scan protein sequences against a library of known motifs.. Computer Applications in the Biosciences, 7 (2): 257-260 (1991)The Effect of Relational Background Knowledge on Learning of Protein Three-Dimensional Fold Signatures., , and . Machine Learning, 43 (1/2): 81-95 (2001)PINALOG: a novel approach to align protein interaction networks - implications for complex detection and function prediction., and . Bioinformatics, 28 (9): 1239-1245 (2012)Genome3D: exploiting structure to help users understand their sequences., , , , , , , , , and 14 other author(s). Nucleic Acids Research, 43 (Database-Issue): 382-386 (2015)