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Proteins|November 20, 2019
Escapement mechanisms: Efficient free energy transduction by reciprocally-coupled gatingCharles W CarterStructure (London, England : 1993)|December 17, 2009
E pluribus tres: the 2009 nobel prize in chemistryCharles W CarterThe Journal of Biological Chemistry|September 12, 2014
Urzymology: experimental access to a key transition in the appearance of enzymesCharles W CarterGenome Biology and Evolution|June 6, 2025
Structural Enzymology, Phylogenetics, Differentiation, and Symbolic Reflexivity at the Dawn of BiologyCharles W Carter, Guo Qing Tang, Sourav Kumar Patra, et al.Biorxiv : the Preprint Server for Biology|January 7, 2025
WITHDRAWN: Structural Enzymology, Phylogenetics, Differentiation, and Symbolic Reflexivity at the Dawn of BiologyCharles W Carter, Guo Qing Tang, Sourav Kumar Patra, et al.RNA Biology|November 24, 2015
tRNA acceptor-stem and anticodon bases embed separate features of amino acid chemistryCharles W Carter, Richard WolfendenJournal of Molecular Biology|September 5, 2006
Computational studies of tryptophanyl-tRNA synthetase: activation of ATP by induced-fitMaryna Kapustina, Charles W CarterProceedings of the National Academy of Sciences of the United States of America|June 3, 2015
tRNA acceptor stem and anticodon bases form independent codes related to protein foldingCharles W Carter, Richard WolfendenJournal of the American Chemical Society|January 5, 2008
Mg2+-free Bacillus stearothermophilus tryptophanyl-tRNA synthetase retains a major fraction of the overall rate enhancement for tryptophan activationVioletta Weinreb, Charles W CarterBioinformatics (Oxford, England)|February 5, 2010
Six Rossmannoid folds, including the Class I aminoacyl-tRNA synthetases, share a partial core with the anti-codon-binding domain of a Class II aminoacyl-tRNA synthetaseStephen Cammer, Charles W CarterPageof 10