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- THE EVOLUTION OF DUPLICATED GENES CONSIDERING PROTEIN STABILITY CONSTRAINTS
- Mutation Matrices and Physical-Chemical Properties: Correlations and Implications
- Estimating the Total Number of Protein Folds Sridhar Govindarajan,1 Ruben Recabarren,1 and Richard A. Goldstein1,2*
- Surveying determinants of protein structure designability across different energy models and amino-acid alphabets: A consensus
- Predicting Protein Secondary Structure with Probabilistic Schemata of Evolutionarily-derived Information
- Optimization of a New Score Function for the Detection of Remote Homologs
- How to Generate Improved Potentials for Protein Tertiary Structure Prediction: A Lattice Model Study
- MODELING EVOLUTION AT THE PROTEIN LEVEL USING AN ADJUSTABLE AMINO ACID FITNESS MODEL
- Universal correlation between energy gap and foldability for the random energy model and lattice proteins
- Mol. Biol. Evol. 16(2):173179. 1999 1999 by the Society for Molecular Biology and Evolution. ISSN: 0737-4038
- Effect of Alphabet Size and Foldability Requirements on Protein Structure Designability
- Optimizing energy potentials for success in protein tertiary structure prediction
- Models of Natural Mutations Including Site Heterogeneity
- Beyond Mutation Matrices: Physical-Chemistry Based Evolutionary Models
- Evolution of Model Proteins on a Foldability Landscape
- Sridhar Govindarajan1 Richard A. Goldstein1,2
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- Probabilistic Reconstruction of Ancestral Protein Sequences Jeffrey M. Koshi,1
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- Optimizing for Success: A New Score Function For Distantly Related Protein Sequence Comparison
- Evolution of functionality in lattice Paul D. Williams,* David D. Pollock, and Richard A. Goldstein*
- Distribution of Indel Lengths and Richard A. Goldstein1,2*
- The Distribution of Structures in Evolving Protein
- Compaction and folding in model proteins Ting-Lan Chiu