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Structure (London, England : 1993)|October 16, 2010
Structural insight into serine protease Rv3671c that Protects M. tuberculosis from oxidative and acidic stressTapan Biswas, Jennifer Small, Omar Vandal, et al.The EMBO Journal|March 18, 2026
Structural basis for EtfD-mediated coupling of β-oxidation and the respiratory chain in mycobacteriaGautier M Courbon, Vadim Makarov, Stewart T Cole, et al.Science Advances|August 28, 2021
Multiform antimicrobial resistance from a metabolic mutationSarah M Schrader, Hélène Botella, Robert Jansen, et al.Nature Communications|November 2, 2019
Plasticity of the Mycobacterium tuberculosis respiratory chain and its impact on tuberculosis drug developmentTiago Beites, Kathryn O'Brien, Divya Tiwari, et al.Cell Host & Microbe|January 22, 2009
RP105 facilitates macrophage activation by Mycobacterium tuberculosis lipoproteinsAntje Blumenthal, Toshihiko Kobayashi, Lynda M Pierini, et al.Journal of Bacteriology|June 3, 2020
Two interacting ATPases protect Mycobacterium tuberculosis from glycerol and nitric oxide toxicityMeredith Whitaker, Nadine Ruecker, Travis Hartman, et al.Nature Communications|November 3, 2025
Reference-based chemical-genetic interaction profiling to elucidate small molecule mechanism of action in Mycobacterium tuberculosisAustin N Bond, Marek Orzechowski, Shuting Zhang, et al.Nucleic Acids Research|November 16, 2010
Protein inactivation in mycobacteria by controlled proteolysis and its application to deplete the beta subunit of RNA polymeraseJee-Hyun Kim, Jun-Rong Wei, Joshua B Wallach, et al.Plos One|December 21, 2010
Genome-wide screen for Mycobacterium tuberculosis genes that regulate host immunityAimee M Beaulieu, Poonam Rath, Marianne Imhof, et al.EMBO Molecular Medicine|April 28, 2026
Interstitial and recruited macrophages prevent tuberculosis relapse by limiting immune evasionValerie Vinette, Anthony Castro, Heather Kim, et al.Pageof 19