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Found 16 results
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Wallach, Joshua B
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2011
Kim J-H, Wei J-R, Wallach JB, Robbins RS, Rubin EJ, Schnappinger D
. 2011.
Protein inactivation in mycobacteria by controlled proteolysis and its application to deplete the beta subunit of RNA polymerase.
.
Nucleic Acids Res. 39(6):2210-20.
2013
Kim J-H, O'Brien KM, Sharma R, Boshoff HIM, Rehren G, Chakraborty S, Wallach JB, Monteleone M, Wilson DJ, Aldrich CC et al.
. 2013.
A genetic strategy to identify targets for the development of drugs that prevent bacterial persistence.
.
Proc Natl Acad Sci U S A. 110(47):19095-100.
2014
Gouzy A, Larrouy-Maumus G, Bottai D, Levillain F, Dumas A, Wallach JB, Caire-Brandli I, de Chastellier C, Di Wu T-, Poincloux R et al.
. 2014.
Mycobacterium tuberculosis exploits asparagine to assimilate nitrogen and resist acid stress during infection.
.
PLoS Pathog. 10(2):e1003928.
2016
Lin K, O'Brien KM, Trujillo C, Wang R, Wallach JB, Schnappinger D, Ehrt S
. 2016.
Mycobacterium tuberculosis Thioredoxin Reductase Is Essential for Thiol Redox Homeostasis but Plays a Minor Role in Antioxidant Defense.
.
PLoS Pathog. 12(6):e1005675.
Li W, Obregón-Henao A, Wallach JB, E North J, Lee RE, Gonzalez-Juarrero M, Schnappinger D, Jackson M
. 2016.
Therapeutic Potential of the Mycobacterium tuberculosis Mycolic Acid Transporter, MmpL3.
.
Antimicrob Agents Chemother. 60(9):5198-207.
2018
Oh S, Park Y, Engelhart CA, Wallach JB, Schnappinger D, Arora K, Manikkam M, Gac B, Wang H, Murgolo N et al.
. 2018.
Discovery and Structure-Activity-Relationship Study of N-Alkyl-5-hydroxypyrimidinone Carboxamides as Novel Antitubercular Agents Targeting Decaprenylphosphoryl-β-d-ribose 2'-Oxidase.
.
J Med Chem. 61(22):9952-9965.
2019
Johnson EO, LaVerriere E, Office E, Stanley M, Meyer E, Kawate T, Gomez JE, Audette RE, Bandyopadhyay N, Betancourt N et al.
. 2019.
Large-scale chemical-genetics yields new M. tuberculosis inhibitor classes.
.
Nature. 571(7763):72-78.
2020
Zaveri A, Wang R, Botella L, Sharma R, Zhu L, Wallach JB, Song N, Jansen RS, Rhee KY, Ehrt S et al.
. 2020.
Depletion of the DarG antitoxin in Mycobacterium tuberculosis triggers the DNA-damage response and leads to cell death.
.
Mol Microbiol.
2021
Bosch B, DeJesus MA, Poulton NC, Zhang W, Engelhart CA, Zaveri A, Lavalette S, Ruecker N, Trujillo C, Wallach JB et al.
. 2021.
Genome-wide gene expression tuning reveals diverse vulnerabilities of M. tuberculosis.
.
Cell. 184(17):4579-4592.e24.
2024
Grigsby SJ, Prasad GVRKrishn, Wallach JB, Mittal E, Hsu F-F, Schnappinger D, Philips JA
. 2024.
CpsA mediates infection of recruited lung myeloid cells by Mycobacterium tuberculosis.
.
Cell Rep. 43(1):113607.
2025
Wang X, Su H, Wallach JB, Wagner JC, Braunecker BJ, Gardner M, Guinn KM, Howard NC, Klevorn T, Lin K et al.
. 2025.
Engineered Mycobacterium tuberculosis triple-kill-switch strain provides controlled tuberculosis infection in animal models.
.
Nat Microbiol. 10(2):482-494.
Johnson WC, Alivisatos A, Smith TC, Van N, Soni V, Wallach JB, Clark NA, Fitzgerald TA, Whiteley JJ, Tan S et al.
. 2025.
Integration of multi-modal measurements identifies critical mechanisms of tuberculosis drug action.
.
Cell Syst. :101348.
Liu Q, Engelhart CA, Wallach JB, Tiwari D, Ge P, Manna A, Panda S, McCue WM, Wong T-Y, Sharma S et al.
. 2025.
Metabolically Stable Adenylation Inhibitors of Biotin Protein Ligase as Antibacterial Agents.
.
J Med Chem. 68(3):3065-3087.
Mostert D, Braun J, Zimmerman MD, Engelhart CA, Berndl S, Quoika PK, Kany AM, Proietto J, Penalva-Lopez S, Wallach JB et al.
. 2025.
Tailored phenyl ureas eradicate drug-resistant Mycobacterium tuberculosis by targeting mycolic acid cell wall assembly.
.
Chem Sci. 16(21):9472-9483.
2026
Liu Q, Engelhart CA, Wallach JB, Ge P, Wong T-Y, Orimoloye MO, Rodriguez S, Jayasinghe YP, Ronning DR, Dartois V et al.
. 2026.
Design, Synthesis and Biological Evaluation of Potent Piperazine-Based BioA Inhibitors Targeting Biotin Biosynthesis in Mycobacterium tuberculosis.
.
J Med Chem.
Theriault ME, Wong AI, DeJesus MA, Pisu D, Lee BNae Rin, Kirukubar G, Li S, Wallach JB, Schnappinger D, Lê-Bury G et al.
. 2026.
Utilization of a CRISPRi-based ex vivo challenge model to reveal temporally dependent gene essentiality in intracellular Mycobacterium tuberculosis.
.
mBio. :e0061026.