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ACS Infectious Diseases|May 7, 2024
Development of a Selective and Stable Antimicrobial PeptideKyra E Groover, Justin R Randall, Bryan W DaviesBiochimica Et Biophysica Acta. Molecular Cell Research|April 3, 2023
Using display technologies to identify macrocyclic peptide antibioticsJustin R Randall, Xun Wang, Kyra E Groover, et al.Biorxiv : the Preprint Server for Biology|August 7, 2023
Adapting antibacterial display to identify serum active macrocyclic peptide antibioticsJustin R Randall, Kyra E Groover, Angela C O'Donnell, et al.PNAS Nexus|August 28, 2023
Adapting antibacterial display to identify serum-active macrocyclic peptide antibioticsJustin R Randall, Kyra E Groover, Angela C O'Donnell, et al.ACS Infectious Diseases|May 10, 2023
Generation of Synthetic <i>Acinetobacter baumannii</i>-Specific NanobodiesGregory A Knauf, Kyra E Groover, Angela C O'Donnell, et al.Science Advances|January 11, 2023
Designing and identifying β-hairpin peptide macrocycles with antibiotic potentialJustin R Randall, Cory D DuPai, T Jeffrey Cole, et al.Methods in Molecular Biology (Clifton, N.J.)|October 1, 2021
Discovery of Antimicrobial Peptide Macrocycles Through Bacterial DisplayJustin R Randall, Cory D DuPai, Bryan W DaviesBiorxiv : the Preprint Server for Biology|August 7, 2023
Deep mutational scanning and machine learning uncover antimicrobial peptide features driving membrane selectivityJustin R Randall, Luiz C Vieira, Claus O Wilke, et al.Nature Biomedical Engineering|July 31, 2024
Deep mutational scanning and machine learning for the analysis of antimicrobial-peptide features driving membrane selectivityJustin R Randall, Luiz C Vieira, Claus O Wilke, et al.Research Square|October 4, 2023
Deep mutational scanning and machine learning uncover antimicrobial peptide features driving membrane selectivityJustin R Randall, Luiz C Vieira, Claus O Wilke, et al.Pageof 9