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3DLigandSite: predicting ligand-binding sites using similar structures.

, , and . Nucleic Acids Res., 38 (Web-Server-Issue): 469-473 (2010)

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3DLigandSite: predicting ligand-binding sites using similar structures., , and . Nucleic Acids Res., 38 (Web-Server-Issue): 469-473 (2010)Capturing expert knowledge with argumentation: a case study in bioinformatics., , , , and . Bioinform., 22 (8): 924-933 (2006)FoldSynth: Interactive 2D/3D Visualisation Platform for Molecular Strands., , , , , , , and . VCBM, page 41-50. Eurographics Association, (2015)Sequencing delivers diminishing returns for homology detection: implications for mapping the protein universe., , , and . Bioinform., 26 (21): 2664-2671 (2010)SAWTED: Structure Assignment With Text Description-Enhanced detection of remote homologues with automated SWISS-PROT annotation comparisons., , and . Bioinform., 16 (2): 125-129 (2000)Recognition of remote protein homologies using three-dimensional information to generate a position specific scoring matrix in the program 3D-PSSM., , and . RECOMB, page 218-225. ACM, (1999)Using DNA to Generate 3D Organic Art Forms., , , , , and . EvoWorkshops, volume 4974 of Lecture Notes in Computer Science, page 433-442. Springer, (2008)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)Predicting the Sub-Cellular Location of Proteins from Text Using Support Vector Machines., , and . Pacific Symposium on Biocomputing, page 374-385. (2002)From DNA to 3D organic art forms., , , , , and . SIGGRAPH Sketches, page 5. ACM, (2007)