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Protein Engineering, Design & Selection : PEDS|February 23, 2020
Molecular dynamics simulations suggest stabilizing mutations in a de novo designed α/β proteinMatthew Gill, Michelle E McCully
Journal of Computational Chemistry|November 5, 2021
Thermostabilization mechanisms in thermophilic versus mesophilic three-helix bundle proteinsCatrina Nguyen, Lauren M Yearwood, Michelle E McCully
Biochemistry|June 17, 2008
Microscopic reversibility of protein folding in molecular dynamics simulations of the engrailed homeodomainMichelle E McCully, David A C Beck, Valerie Daggett
Protein Engineering, Design & Selection : PEDS|September 27, 2012
Promiscuous contacts and heightened dynamics increase thermostability in an engineered variant of the engrailed homeodomainMichelle E McCully, David A C Beck, Valerie Daggett
Protein Engineering, Design & Selection : PEDS|February 17, 2022
The stability and dynamics of computationally designed proteinsNatali A Gonzalez, Brigitte A Li, Michelle E McCully
Proceedings of the National Academy of Sciences of the United States of America|October 24, 2012
Multimolecule test-tube simulations of protein unfolding and aggregationMichelle E McCully, David A C Beck, Valerie Daggett
Biophysical Journal|September 7, 2010
Refolding the engrailed homeodomain: structural basis for the accumulation of a folding intermediateMichelle E McCully, David A C Beck, Alan R Fersht, et al.
Biophysical Journal|February 2, 2019
A Dynamic Hydrophobic Core and Surface Salt Bridges Thermostabilize a Designed Three-Helix BundleCatrina Nguyen, Jennifer T Young, Gabriel G Slade, et al.
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