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Proceedings of the National Academy of Sciences of the United States of America|August 23, 2017
Cellular cap-binding protein, eIF4E, promotes picornavirus genome restructuring and translationBrian C Avanzino, Gabriele Fuchs, Christopher S FraserThe Journal of Biological Chemistry|August 22, 2018
Molecular mechanism of poliovirus Sabin vaccine strain attenuationBrian C Avanzino, Helen Jue, Clare M Miller, et al.Structure (London, England : 1993)|July 10, 2014
DEAD box unwinding caught in the actBrian C Avanzino, Christopher S FraserJournal of Molecular Biology|August 16, 2011
Duplex unwinding and ATPase activities of the DEAD-box helicase eIF4A are coupled by eIF4G and eIF4BAli R Özeş, Kateryna Feoktistova, Brian C Avanzino, et al.Nature Protocols|June 20, 2014
Real-time fluorescence assays to monitor duplex unwinding and ATPase activities of helicasesAli R Özeş, Kateryna Feoktistova, Brian C Avanzino, et al.Biochimie|March 7, 2015
Quantitative studies of mRNA recruitment to the eukaryotic ribosomeChristopher S FraserProgress in Molecular Biology and Translational Science|April 9, 2010
The molecular basis of translational controlChristopher S FraserBiorxiv : the Preprint Server for Biology|October 9, 2023
Human eukaryotic initiation factor 4G directly binds the 40S ribosomal subunit to promote efficient translationNancy Villa, Christopher S FraserCold Spring Harbor Perspectives in Biology|July 1, 2018
Toward a Kinetic Understanding of Eukaryotic TranslationMasaaki Sokabe, Christopher S FraserThe Journal of Biological Chemistry|September 24, 2014
Human eukaryotic initiation factor 2 (eIF2)-GTP-Met-tRNAi ternary complex and eIF3 stabilize the 43 S preinitiation complexMasaaki Sokabe, Christopher S FraserPageof 9