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PRODIGY: a web server for predicting the binding affinity of protein-protein complexes.

, , , , and . Bioinformatics, 32 (23): 3676-3678 (2016)

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Performance of HADDOCK and a simple contact-based protein-ligand binding affinity predictor in the D3R Grand Challenge 2., , , , , , , , , and 3 other author(s). Journal of Computer-Aided Molecular Design, 32 (1): 175-185 (2018)Improving protein-RNA interface prediction by combining sequence homology based method with a naive Bayes classifier: preliminary results., , , , and . BCB, page 556-558. ACM, (2011)PRODIGY: a web server for predicting the binding affinity of protein-protein complexes., , , , and . Bioinformatics, 32 (23): 3676-3678 (2016)Protein-ligand pose and affinity prediction: Lessons from D3R Grand Challenge 3., , and . Journal of Computer-Aided Molecular Design, 33 (1): 83-91 (2019)HomPPI: A Class of Sequence Homology Based Protein-Protein Interface Prediction Methods., , and . BMC Bioinformatics, (2011)Ranking docked models of protein-protein complexes using predicted partner-specific protein-protein interfaces: a preliminary study., , , , and . BCB, page 441-445. ACM, (2011)Striking Similarities in Diverse Telomerase Proteins Revealed by Combining Structure Prediction and Machine Learning Approaches., , , , , , , , , and 1 other author(s). Pacific Symposium on Biocomputing, page 501-512. World Scientific, (2008)Template-based protein-protein docking exploiting pairwise interfacial residue restraints., , , , and . Briefings in Bioinformatics, 18 (3): 458-466 (2017)Large-scale prediction of binding affinity in protein-small ligand complexes: the PRODIGY-LIG web server., , , , , , , and . Bioinformatics, 35 (9): 1585-1587 (2019)