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Chemistry & Biology|November 2, 2010
Metabolomics of Mycobacterium tuberculosis reveals compartmentalized co-catabolism of carbon substratesLuiz Pedro S de Carvalho, Steven M Fischer, Joeli Marrero, et al.
Biorxiv : the Preprint Server for Biology|September 5, 2025
Interstitial macrophages prevent tuberculosis relapse by restricting Mycobacterium tuberculosis immune evasionValerie Vinette, Anthony Castro, Heather Kim, et al.
Mbio|September 19, 2013
Perturbation of cytochrome c maturation reveals adaptability of the respiratory chain in Mycobacterium tuberculosisJennifer L Small, Sae Woong Park, Bavesh D Kana, et al.
Nature Communications|August 11, 2015
Two enzymes with redundant fructose bisphosphatase activity sustain gluconeogenesis and virulence in Mycobacterium tuberculosisUday Ganapathy, Joeli Marrero, Susannah Calhoun, et al.
Nature Communications|April 1, 2016
Reconstruction and topological characterization of the sigma factor regulatory network of Mycobacterium tuberculosisRinki Chauhan, Janani Ravi, Pratik Datta, et al.
Journal of Medicinal Chemistry|June 13, 2015
Fragment-based exploration of binding site flexibility in Mycobacterium tuberculosis BioARan Dai, Todd W Geders, Feng Liu, et al.
The EMBO Journal|January 7, 2017
Mycobacterium tuberculosis protease MarP activates a peptidoglycan hydrolase during acid stressHelene Botella, Julien Vaubourgeix, Myung Hee Lee, et al.
ACS Infectious Diseases|August 19, 2025
Common Biological Properties of Mycobacterium tuberculosis MmpL3 InhibitorsLauren Ames, Renee Allen, Helena I M Boshoff, et al.
Plos One|May 16, 2015
Identification of Rv3852 as an Agrimophol-Binding Protein in Mycobacterium tuberculosisNan Zhao, Mingna Sun, Kristin Burns-Huang, et al.
Biorxiv : the Preprint Server for Biology|November 28, 2023
Development of an Engineered Mycobacterium tuberculosis Strain for a Safe and Effective Tuberculosis Human Challenge ModelXin Wang, Hongwei Su, Joshua B Wallach, et al.
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