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Methods in Molecular Biology (Clifton, N.J.)|February 3, 2007
Improving marginal crystalsCharles W Carter, Madeleine Riès-KauttAnnual Review of Biochemistry|March 30, 2021
The Roots of Genetic Coding in Aminoacyl-tRNA Synthetase DualityCharles W Carter, Peter R WillsBio Systems|September 14, 2017
Insuperable problems of the genetic code initially emerging in an RNA worldPeter R Wills, Charles W CarterMolecular Cell|November 7, 2002
Did tRNA synthetase classes arise on opposite strands of the same gene?Charles W Carter, William L DuaxStructural Dynamics (Melville, N.Y.)|August 28, 2023
High-throughput thermal denaturation of tryptophanyl-tRNA synthetase combinatorial mutants reveals high-order energetic coupling determinants of conformational stabilityVioletta Weinreb, Gabriel Weinreb, Charles W CarterIscience|February 9, 2024
HetMM: A Michaelis-Menten model for non-homogeneous enzyme mixturesJordan Douglas, Charles W Carter, Peter R WillsMolecular Cell|March 28, 2007
A minimal TrpRS catalytic domain supports sense/antisense ancestry of class I and II aminoacyl-tRNA synthetasesYen Pham, Li Li, Aram Kim, et al.RNA (New York, N.Y.)|July 27, 2004
Optimization of apolipoprotein B mRNA editing by APOBEC1 apoenzyme and the role of its auxiliary factor, ACFAnn Chester, Violetta Weinreb, Charles W Carter, et al.The Journal of Biological Chemistry|November 12, 2015
Selective Inhibition of Bacterial Tryptophanyl-tRNA Synthetases by Indolmycin Is Mechanism-basedTishan L Williams, Yuhui W Yin, Charles W CarterJournal of Molecular Biology|April 13, 2007
Crystal structure of tryptophanyl-tRNA synthetase complexed with adenosine-5' tetraphosphate: evidence for distributed use of catalytic binding energy in amino acid activation by class I aminoacyl-tRNA synthetasesPascal Retailleau, Violetta Weinreb, Mei Hu, et al.Pageof 2,815