Rory Crean
Affiliations: | 2020- | Chemistry - BMC | Uppsala University, Uppsala, Uppsala län, Sweden |
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Crean RM, Slusky JSG, Kasson PM, et al. (2023) KIF-Key Interactions Finder: A program to identify the key molecular interactions that regulate protein conformational changes. The Journal of Chemical Physics. 158: 144114 |
Brickel S, Demkiv AO, Crean RM, et al. (2022) Q-RepEx: A Python pipeline to increase the sampling of empirical valence bond simulations. Journal of Molecular Graphics & Modelling. 119: 108402 |
Shen R, Crean RM, Olsen KJ, et al. (2022) Insights into the importance of WPD-loop sequence for activity and structure in protein tyrosine phosphatases. Chemical Science. 13: 13524-13540 |
Crean RM, Biler M, Corbella M, et al. (2022) Correction to "Loop Dynamics and Enzyme Catalysis in Protein Tyrosine Phosphatases". Journal of the American Chemical Society. 144: 10091-10093 |
Pfeiffer M, Crean RM, Moreira C, et al. (2022) Essential Functional Interplay of the Catalytic Groups in Acid Phosphatase. Acs Catalysis. 12: 3357-3370 |
Winter SD, Jones HBL, Răsădean DM, et al. (2021) Chemical Mapping Exposes the Importance of Active Site Interactions in Governing the Temperature Dependence of Enzyme Turnover. Acs Catalysis. 11: 14854-14863 |
Shen R, Crean RM, Johnson SJ, et al. (2021) Single Residue on the WPD-Loop Affects the pH Dependency of Catalysis in Protein Tyrosine Phosphatases. Jacs Au. 1: 646-659 |
Crean RM, Biler M, van der Kamp MW, et al. (2021) Loop Dynamics and Enzyme Catalysis in Protein Tyrosine Phosphatases. Journal of the American Chemical Society |
Biler M, Crean RM, Schweiger AK, et al. (2020) Ground-State Destabilization by Active-Site Hydrophobicity Controls the Selectivity of a Cofactor-Free Decarboxylase. Journal of the American Chemical Society. 142: 20216-20231 |
Crean RM, Gardner JM, Kamerlin SCL. (2020) Harnessing Conformational Plasticity to Generate Designer Enzymes. Journal of the American Chemical Society. 142: 11324-11342 |