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The SUPERFAMILY database in 2007: families and functions.

, , , , and . Nucleic Acids Res., 35 (Database-Issue): 308-313 (2007)

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An insight into domain combinations., , and . ISMB (Supplement of Bioinformatics), page 83-89. (2001)Convergent evolution of domain architectures (is rare).. Bioinform., 21 (8): 1464-1471 (2005)Predicting the functional consequences of cancer-associated amino acid substitutions., , , , and . Bioinform., 29 (12): 1504-1510 (2013)SUPERFAMILY - sophisticated comparative genomics, data mining, visualization and phylogeny., , , , , , , and . Nucleic Acids Res., 37 (Database-Issue): 380-386 (2009)The SUPERFAMILY database in 2007: families and functions., , , , and . Nucleic Acids Res., 35 (Database-Issue): 308-313 (2007)SUPERFAMILY 1.75 including a domain-centric gene ontology method., , , , , , and . Nucleic Acids Res., 39 (Database-Issue): 427-434 (2011)Genome3D: integrating a collaborative data pipeline to expand the depth and breadth of consensus protein structure annotation., , , , , , , , , and 7 other author(s). Nucleic Acids Res., 48 (Database-Issue): D314-D319 (2020)The SCOP database in 2020: expanded classification of representative family and superfamily domains of known protein structures., , , and . Nucleic Acids Res., 48 (Database-Issue): D376-D382 (2020)A disease-drug-phenotype matrix inferred by walking on a functional domain network, and . Mol. BioSyst., 9 (7): 1686--1696 (2013)The SUPERFAMILY 2.0 database: a significant proteome update and a new webserver., , , , and . Nucleic Acids Res., 47 (Database-Issue): D490-D494 (2019)