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The CATH classification revisited - architectures reviewed and new ways to characterize structural divergence in superfamilies.

, , , , , , and . Nucleic Acids Res., 37 (Database-Issue): 310-314 (2009)

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CATH: comprehensive structural and functional annotations for genome sequences., , , , , , , , , and 4 other author(s). Nucleic Acids Res., 43 (Database-Issue): 376-381 (2015)Assigning genomic sequences to CATH., , , , , , , and . Nucleic Acids Res., 28 (1): 277-282 (2000)CATH: increased structural coverage of functional space., , , , , , , , , and 8 other author(s). Nucleic Acids Res., 49 (Database-Issue): D266-D273 (2021)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)FLORA: A Novel Method to Predict Protein Function from Structure in Diverse Superfamilies., , , , and . PLoS Comput. Biol., (2009)BioJS: an open source standard for biological visualisation - its status in 2014., , , , , , , , , and 10 other author(s). F1000Research, (2014)Functional classification of CATH superfamilies: a domain-based approach for protein function annotation., , , , , and . Bioinform., 31 (21): 3460-3467 (2015)Characterizing and explaining the impact of disease-associated mutations in proteins without known structures or structural homologs., , , , , , and . Briefings Bioinform., (2022)PDBe-KB: a community-driven resource for structural and functional annotations., , , , , , , , , and 45 other author(s). Nucleic Acids Res., 48 (Database-Issue): D344-D353 (2020)InterPro in 2019: improving coverage, classification and access to protein sequence annotations., , , , , , , , , and 32 other author(s). Nucleic Acids Res., 47 (Database-Issue): D351-D360 (2019)