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Current Protein & Peptide Science|September 29, 2015
Analysis of protein-protein interaction networks based on binding affinityK Yugandhar, M Michael GromihaBioinformatics (Oxford, England)|August 31, 2014
Protein-protein binding affinity prediction from amino acid sequenceK Yugandhar, M Michael GromihaMethods in Molecular Biology (Clifton, N.J.)|October 28, 2016
Computational Approaches for Predicting Binding Partners, Interface Residues, and Binding Affinity of Protein-Protein ComplexesK Yugandhar, M Michael GromihaProteins|March 21, 2014
Feature selection and classification of protein-protein complexes based on their binding affinities using machine learning approachesK Yugandhar, M Michael GromihaProgress in Biophysics and Molecular Biology|January 11, 2017
Integrating computational methods and experimental data for understanding the recognition mechanism and binding affinity of protein-protein complexesM Michael Gromiha, K YugandharCurrent Opinion in Structural Biology|November 21, 2016
Protein-protein interactions: scoring schemes and binding affinityM Michael Gromiha, K Yugandhar, Sherlyn JemimahBioinformatics (Oxford, England)|May 13, 2017
PROXiMATE: a database of mutant protein-protein complex thermodynamics and kineticsSherlyn Jemimah, K Yugandhar, M Michael GromihaInternational Journal of Biological Macromolecules|October 30, 2016
Important amino acid residues involved in folding and binding of protein-protein complexesA Kulandaisamy, V Lathi, K ViswaPoorani, et al.Journal of Chemical Information and Computer Sciences|September 23, 2003
Importance of native-state topology for determining the folding rate of two-state proteinsM Michael GromihaBiophysical Chemistry|May 3, 2003
Influence of cation-pi interactions in different folding types of membrane proteinsM Michael GromihaPageof 27