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IUBMB Life|June 14, 2019
Class I and II aminoacyl-tRNA synthetase tRNA groove discrimination created the first synthetase-tRNA cognate pairs and was therefore essential to the origin of genetic codingCharles W Carter, Peter R WillsAnnual Review of Biochemistry|March 30, 2021
The Roots of Genetic Coding in Aminoacyl-tRNA Synthetase DualityCharles W Carter, Peter R WillsBio Systems|June 10, 2019
Experimental solutions to problems defining the origin of codon-directed protein synthesisCharles W Carter, Peter R WillsBiomolecules|March 6, 2021
Reciprocally-Coupled Gating: Strange Loops in Bioenergetics, Genetics, and CatalysisCharles W Carter, Peter R WillsMolecular Biology and Evolution|October 28, 2017
Interdependence, Reflexivity, Fidelity, Impedance Matching, and the Evolution of Genetic CodingCharles W Carter, Peter R WillsNucleic Acids Research|July 18, 2018
Hierarchical groove discrimination by Class I and II aminoacyl-tRNA synthetases reveals a palimpsest of the operational RNA code in the tRNA acceptor-stem basesCharles W Carter, Peter R WillsInternational Journal of Molecular Sciences|October 10, 2020
Impedance Matching and the Choice Between Alternative Pathways for the Origin of Genetic CodingPeter R Wills, Charles W CarterBio Systems|September 14, 2017
Insuperable problems of the genetic code initially emerging in an RNA worldPeter R Wills, Charles W CarterIscience|February 9, 2024
HetMM: A Michaelis-Menten model for non-homogeneous enzyme mixturesJordan Douglas, Charles W Carter, Peter R WillsNucleic Acids Research|December 4, 2023
Enzymic recognition of amino acids drove the evolution of primordial genetic codesJordan Douglas, Remco Bouckaert, Charles W Carter, et al.Pageof 10