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Prebiotic Protein Design supports a Halophile Origin of Foldable Proteins
Prebiotic Protein Design supports a Halophile Origin of Foldable Proteins
Alternative Folding Nuclei Definitions Facilitate the Evolution of a Symmetric Protein Fold from a Smaller Peptide Motif
Alternative Folding Nuclei Definitions Facilitate the Evolution of a Symmetric Protein Fold from a Smaller Peptide Motif
Mutation Choice to Eliminate Buried Free Cysteines in Protein Therapeutics
Mutation Choice to Eliminate Buried Free Cysteines in Protein Therapeutics
Folding Nucleus Structure Persists in Thermally-Aggregated FGF-1
Folding Nucleus Structure Persists in Thermally-Aggregated FGF-1
Single Aromatic Core Mutation Converts a Designed "Primitive" Protein from Halophile to Mesophile Folding
Single Aromatic Core Mutation Converts a Designed "Primitive" Protein from Halophile to Mesophile Folding
SYMMETRIC PROTEIN ARCHITECTURE IN PROTEIN DESIGN: TOP-DOWN SYMMETRIC DECONSTRUCTION
SYMMETRIC PROTEIN ARCHITECTURE IN PROTEIN DESIGN: TOP-DOWN SYMMETRIC DECONSTRUCTION
Evolution and design of protein structure by folding nucleus symmetric expansion
Evolution and design of protein structure by folding nucleus symmetric expansion
Emergence of Symmetric Protein Architecture from a Simple Peptide Motif
Emergence of Symmetric Protein Architecture from a Simple Peptide Motif
Characterization of binding of LARP6 to the 5' stem-loop of collagen mRNAs
Characterization of binding of LARP6 to the 5' stem-loop of collagen mRNAs
Experimental support for the foldability-function tradeoff hypothesis
Experimental support for the foldability-function tradeoff hypothesis
Simplified Protein Design Biased for Pre-Biotic Amino Acids Yields a Foldable, Halophilic Protein
Simplified Protein Design Biased for Pre-Biotic Amino Acids Yields a Foldable, Halophilic Protein
Kallikrein-related Peptidase 6
Kallikrein-related Peptidase 6