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Nucleic Acids Research|January 27, 2016
Structures of proline-rich peptides bound to the ribosome reveal a common mechanism of protein synthesis inhibitionMatthieu G Gagnon, Raktim N Roy, Ivan B Lomakin, et al.Antimicrobial Agents and Chemotherapy|September 22, 2010
Binding and action of CEM-101, a new fluoroketolide antibiotic that inhibits protein synthesisBeatriz Llano-Sotelo, Jack Dunkle, Dorota Klepacki, et al.Nature Chemical Biology|September 22, 2022
Context-based sensing of orthosomycin antibiotics by the translating ribosomeKyle Mangano, James Marks, Dorota Klepacki, et al.Nucleic Acids Research|March 16, 2005
Chemical engineering of the peptidyl transferase center reveals an important role of the 2'-hydroxyl group of A2451Matthias D Erlacher, Kathrin Lang, Nisha Shankaran, et al.Proceedings of the National Academy of Sciences of the United States of America|January 22, 2022
The context of the ribosome binding site in mRNAs defines specificity of action of kasugamycin, an inhibitor of translation initiationYan Zhang, Nikolay A Aleksashin, Dorota Klepacki, et al.Molecular Microbiology|June 9, 2007
Acquisition of a natural resistance gene renders a clinical strain of methicillin-resistant Staphylococcus aureus resistant to the synthetic antibiotic linezolidSeok-Ming Toh, Liqun Xiong, Cesar A Arias, et al.EMBO Reports|October 16, 2024
Activity, structure, and diversity of Type II proline-rich antimicrobial peptides from insectsWeiping Huang, Chetana Baliga, Elena V Aleksandrova, et al.Proceedings of the National Academy of Sciences of the United States of America|October 30, 2016
Context-specific inhibition of translation by ribosomal antibiotics targeting the peptidyl transferase centerJames Marks, Krishna Kannan, Emily J Roncase, et al.Nature Communications|March 26, 2014
Molecular basis for erythromycin-dependent ribosome stalling during translation of the ErmBL leader peptideStefan Arenz, Haripriya Ramu, Pulkit Gupta, et al.Nature Chemical Biology|December 18, 2019
Dynamics of the context-specific translation arrest by chloramphenicol and linezolidJunhong Choi, James Marks, Jingji Zhang, et al.Pageof 10