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Biological Chemistry|October 11, 2019
Converting GTP hydrolysis into motion: versatile translational elongation factor GMarina V Rodnina, Frank Peske, Bee-Zen Peng, et al.
Science Advances|January 7, 2020
Active role of elongation factor G in maintaining the mRNA reading frame during translationBee-Zen Peng, Lars V Bock, Riccardo Belardinelli, et al.
Nature Structural & Molecular Biology|September 17, 2024
Structural basis for translational control by the human 48S initiation complexValentyn Petrychenko, Sung-Hui Yi, David Liedtke, et al.
Nucleic Acids Research|September 24, 2024
Kinetic mechanism and determinants of EF-P recruitment to translating ribosomesVitalii Mudryi, Jan Ole Frister, Bee-Zen Peng, et al.
Nature Communications|October 12, 2021
Structural mechanism of GTPase-powered ribosome-tRNA movementValentyn Petrychenko, Bee-Zen Peng, Ana C de A P Schwarzer, et al.
Nucleic Acids Research|September 13, 2019
Translational recoding: canonical translation mechanisms reinterpretedMarina V Rodnina, Natalia Korniy, Mariia Klimova, et al.
The EMBO Journal|December 6, 2022
Gut colonization by Bacteroides requires translation by an EF-G paralog lacking GTPase activityWeiwei Han, Bee-Zen Peng, Chunyan Wang, et al.
Nature Communications|October 30, 2025
Selective silencing of antibiotic-tethered ribosomes as a resistance mechanism against aminoglycosidesNilanjan Ghosh Dastidar, Nicola S Freyer, Valentyn Petrychenko, et al.
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