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Computational Biology and Chemistry|April 19, 2005
Application of residue distribution along the sequence for discriminating outer membrane proteinsM Michael Gromiha, Shandar Ahmad, Makiko SuwaBioinformatics (Oxford, England)|November 13, 2019
ProAffiMuSeq: sequence-based method to predict the binding free energy change of protein-protein complexes upon mutation using functional classificationSherlyn Jemimah, Masakazu Sekijima, M Michael GromihaPreparative Biochemistry & Biotechnology|November 29, 2002
Role of cation-pi interactions to the stability of thermophilic proteinsM Michael Gromiha, Shali Thomas, C SanthoshBriefings in Bioinformatics|April 28, 2020
MPTherm: database for membrane protein thermodynamics for understanding folding and stabilityA Kulandaisamy, R Sakthivel, M Michael GromihaInternational Journal of Biological Macromolecules|December 23, 2009
Sequence and structural analysis of binding site residues in protein-protein complexesM Michael Gromiha, Kiyonobu Yokota, Kazuhiko FukuiNucleic Acids Research|July 18, 2006
CUPSAT: prediction of protein stability upon point mutationsVijaya Parthiban, M Michael Gromiha, Dietmar SchomburgMolecular Biosystems|July 14, 2009
Energy based approach for understanding the recognition mechanism in protein-protein complexesM Michael Gromiha, Kiyonobu Yokota, Kazuhiko FukuiMethods (San Diego, Calif.)|March 16, 2023
PDA-Pred: Predicting the binding affinity of protein-DNA complexes using machine learning techniques and structural featuresK Harini, Daisuke Kihara, M Michael GromihaAnalytical Biochemistry|September 9, 2015
Prediction of protein disorder on amino acid substitutionsP Anoosha, R Sakthivel, M Michael GromihaJournal of Chemical Information and Modeling|January 23, 2025
PRA-MutPred: Predicting the Effect of Point Mutations in Protein-RNA Complexes Using Structural FeaturesK Harini, M Sekijima, M Michael GromihaPageof 36