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Predicting target-ligand interactions using protein ligand-binding site and ligand substructures.

, , , , and . BMC Systems Biology, 9 (S-1): S2 (2015)

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Pairwise input neural network for target-ligand interaction prediction., , , , , and . BIBM, page 67-70. IEEE Computer Society, (2014)Multi-fields model for predicting target-ligand interaction., , , and . Neurocomputing, (2016)Predicting target-ligand interactions using protein ligand-binding site and ligand substructures., , , , and . BMC Systems Biology, 9 (S-1): S2 (2015)RxnFinder: biochemical reaction search engines using molecular structures, molecular fragments and reaction similarity., , , , and . Bioinformatics, 27 (17): 2465-2467 (2011)Structural Interpretation of the Topological Index. 2. The Molecular Connectivity Index, the Kappa Index, and the Atom-type E-State Index., , , , and . Journal of Chemical Information and Modeling, 44 (4): 1193-1201 (2004)PrecursorFinder: a customized biosynthetic precursor explorer., , , , , , , , and . Bioinformatics, 35 (9): 1603-1604 (2019)BioSynther: a customized biosynthetic potential explorer., , , and . Bioinformatics, 32 (3): 472-473 (2016)ChemoPy: freely available python package for computational biology and chemoinformatics., , , and . Bioinformatics, 29 (8): 1092-1094 (2013)Structural Interpretation of a Topological Index. 1. External Factor Variable Connectivity Index (EFVCI)., , , , and . Journal of Chemical Information and Modeling, 44 (2): 437-446 (2004)External Factor Variable Connectivity Index., , , , , , , and . Journal of Chemical Information and Computer Sciences, 43 (3): 773-778 (2003)