Showing results (171-180 of 186) with videos related to

Sort By:
Pageof 19
ACS Infectious Diseases|May 14, 2026
Identification and Evaluation of Dibasic Piperidines as Cell Wall Inhibitors against Mycobacterium tuberculosisClaire Naylor, Gareth Prosser, Tracy Bayliss, et al.
Biorxiv : the Preprint Server for Biology|February 26, 2026
Identification and Evaluation of dibasic piperidines as novel cell wall inhibitors against Mycobacterium tuberculosisClaire Naylor, Gareth A Prosser, Tracy Bayliss, et al.
EMBO Molecular Medicine|April 7, 2026
Integrating chemical, genetic, and feasibility assessments for anti-tubercular target validationDirk Schnappinger, Steven J Berthel, Helena I M Boshoff, et al.
EMBO Molecular Medicine|December 7, 2020
Dual inhibition of the terminal oxidases eradicates antibiotic-tolerant Mycobacterium tuberculosisBei Shi Lee, Kiel Hards, Curtis A Engelhart, et al.
Journal of Medicinal Chemistry|November 10, 2023
Identification and Optimization of Novel Inhibitors of the Polyketide Synthase 13 Thioesterase Domain with Antitubercular ActivitySimon R Green, Caroline Wilson, Thomas C Eadsforth, et al.
Science (New York, N.Y.)|February 2, 2019
Opposing reactions in coenzyme A metabolism sensitize Mycobacterium tuberculosis to enzyme inhibitionElaine Ballinger, John Mosior, Travis Hartman, et al.
Molecular Cell|February 23, 2019
An NAD+ Phosphorylase Toxin Triggers Mycobacterium tuberculosis Cell DeathDiana Mendes Freire, Claude Gutierrez, Acely Garza-Garcia, et al.
ACS Infectious Diseases|February 27, 2025
Identification of a Series Containing a Pentafluorophenyl Moiety That Targets Pks13 to Inhibit Growth of Mycobacterium tuberculosisSimon R Green, Justin R Harrison, Stephen Thompson, et al.
ACS Infectious Diseases|April 5, 2024
Inhibitors of the Thioesterase Activity of Mycobacterium tuberculosis Pks13 Discovered Using DNA-Encoded Chemical Library ScreeningInna V Krieger, Subbarao Yalamanchili, Paige Dickson, et al.
Journal of Medicinal Chemistry|January 4, 2021
Antitubercular 2-Pyrazolylpyrimidinones: Structure-Activity Relationship and Mode-of-Action StudiesCandice Soares de Melo, Vinayak Singh, Alissa Myrick, et al.
Pageof 19