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Nucleic Acids Research|April 7, 2017
mCSM-NA: predicting the effects of mutations on protein-nucleic acids interactionsDouglas E V Pires, David B AscherNucleic Acids Research|May 25, 2016
mCSM-AB: a web server for predicting antibody-antigen affinity changes upon mutation with graph-based signaturesDouglas E V Pires, David B AscherNucleic Acids Research|May 7, 2016
CSM-lig: a web server for assessing and comparing protein-small molecule affinitiesDouglas E V Pires, David B AscherJournal of Chemical Information and Modeling|July 3, 2020
mycoCSM: Using Graph-Based Signatures to Identify Safe Potent Hits against MycobacteriaDouglas E V Pires, David B AscherNucleic Acids Research|May 21, 2020
mmCSM-AB: guiding rational antibody engineering through multiple point mutationsYoochan Myung, Douglas E V Pires, David B AscherBioinformatics (Oxford, England)|June 29, 2023
Understanding the complementarity and plasticity of antibody-antigen interfacesYoochan Myung, Douglas E V Pires, David B AscherBioinformatics (Oxford, England)|November 4, 2021
CSM-AB: graph-based antibody-antigen binding affinity prediction and docking scoring functionYoochan Myung, Douglas E V Pires, David B AscherMethods in Molecular Biology (Clifton, N.J.)|March 30, 2018
Prediction and Optimization of Pharmacokinetic and Toxicity Properties of the LigandDouglas E V Pires, Lisa M Kaminskas, David B AscherNucleic Acids Research|May 16, 2014
DUET: a server for predicting effects of mutations on protein stability using an integrated computational approachDouglas E V Pires, David B Ascher, Tom L BlundellBioinformatics (Oxford, England)|November 28, 2013
mCSM: predicting the effects of mutations in proteins using graph-based signaturesDouglas E V Pires, David B Ascher, Tom L BlundellPageof 21