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Nucleic Acids Research|March 6, 2013
Topoisomerase IV-quinolone interactions are mediated through a water-metal ion bridge: mechanistic basis of quinolone resistanceKatie J Aldred, Sylvia A McPherson, Charles L Turnbough, et al.Proceedings of the National Academy of Sciences of the United States of America|January 22, 2016
Fluoroquinolone interactions with Mycobacterium tuberculosis gyrase: Enhancing drug activity against wild-type and resistant gyraseKatie J Aldred, Tim R Blower, Robert J Kerns, et al.Nature|May 21, 2010
A novel and unified two-metal mechanism for DNA cleavage by type II and IA topoisomerasesBryan H Schmidt, Alex B Burgin, Joseph E Deweese, et al.Nucleic Acids Research|July 31, 2003
Yeast recombination pathways triggered by topoisomerase II-mediated DNA breaksMichelle Sabourin, John L Nitiss, Karin C Nitiss, et al.Medical Science Educator|January 13, 2018
Using Small Case-Based Learning Groups as a Setting for Teaching Medical Students How to Provide and Receive Peer FeedbackEmily C Bird, Neil Osheroff, Cathleen C Pettepher, et al.Nucleic Acids Research|May 27, 2026
Bacterial type II topoisomerases cleave DNA in a species-specific mannerIan L Morgan, Jeffrey Y Jian, Jillian F Armenia, et al.Biochemistry|April 29, 2014
Etoposide quinone is a covalent poison of human topoisomerase IIβNicholas A Smith, Jo Ann W Byl, Susan L Mercer, et al.ACS Infectious Diseases|May 11, 2018
Mechanism of Action of Mycobacterium tuberculosis Gyrase Inhibitors: A Novel Class of Gyrase PoisonsElizabeth G Gibson, Tim R Blower, Monica Cacho, et al.Cell Reports|October 10, 2019
Topoisomerase II Is Crucial for Fork Convergence during Vertebrate Replication TerminationDarren R Heintzman, Lillian V Campos, Jo Ann W Byl, et al.ACS Infectious Diseases|February 21, 2023
A Series of Spiropyrimidinetriones that Enhances DNA Cleavage Mediated by <i>Mycobacterium tuberculosis</i> GyraseJo Ann W Byl, Rudolf Mueller, Ben Bax, et al.Pageof 15