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Found 113 results
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Ruecker N, Jansen R, Trujillo C, Puckett S, Jayachandran P, Piroli GG, Frizzell N, Molina H, Rhee KY, Ehrt S.  2017.  Fumarase Deficiency Causes Protein and Metabolite Succination and Intoxicates Mycobacterium tuberculosis.. Cell Chem Biol. 24(3):306-315.
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Su H, Lin K, Tiwari D, Healy C, Trujillo C, Liu Y, Ioerger TR, Schnappinger D, Ehrt S.  2021.  Genetic models of latent tuberculosis in mice reveal differential influence of adaptive immunity.. J Exp Med. 218(9)
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.
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.
Marrero J, Rhee KY, Schnappinger D, Pethe K, Ehrt S.  2010.  Gluconeogenic carbon flow of tricarboxylic acid cycle intermediates is critical for Mycobacterium tuberculosis to establish and maintain infection.. Proc Natl Acad Sci U S A. 107(21):9819-24.
Marrero J, Trujillo C, Rhee KY, Ehrt S.  2013.  Glucose phosphorylation is required for Mycobacterium tuberculosis persistence in mice.. PLoS Pathog. 9(1):e1003116.
Hisert KB, MacCoss M, Shiloh MU, K Darwin H, Singh S, Jones RA, Ehrt S, Zhang Z, Gaffney BL, Gandotra S et al..  2005.  A glutamate-alanine-leucine (EAL) domain protein of Salmonella controls bacterial survival in mice, antioxidant defence and killing of macrophages: role of cyclic diGMP.. Mol Microbiol. 56(5):1234-45.
Santangelo Mde la Paz, Gest PM, Guerin ME, Coinçon M, Pham H, Ryan G, Puckett SE, Spencer JS, Gonzalez-Juarrero M, Daher R et al..  2011.  Glycolytic and non-glycolytic functions of Mycobacterium tuberculosis fructose-1,6-bisphosphate aldolase, an essential enzyme produced by replicating and non-replicating bacilli.. J Biol Chem. 286(46):40219-31.
Puckett S, Trujillo C, Wang Z, Eoh H, Ioerger TR, Krieger I, Sacchettini J, Schnappinger D, Rhee KY, Ehrt S.  2017.  Glyoxylate detoxification is an essential function of malate synthase required for carbon assimilation in Mycobacterium tuberculosis.. Proc Natl Acad Sci U S A. 114(11):E2225-E2232.
Gouzy A, Healy C, Black KA, Rhee KY, Ehrt S.  2021.  Growth of Mycobacterium tuberculosis at acidic pH depends on lipid assimilation and is accompanied by reduced GAPDH activity.. Proc Natl Acad Sci U S A. 118(32)
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Smith CM, Baker RE, Proulx MK, Mishra BB, Long JE, Park SWoong, Lee H-N, Kiritsy MC, Bellerose MM, Olive AJ et al..  2022.  Host-pathogen genetic interactions underlie tuberculosis susceptibility in genetically diverse mice.. Elife. 11
Shimono N, Morici L, Casali N, Cantrell S, Sidders B, Ehrt S, Riley LW.  2003.  Hypervirulent mutant of Mycobacterium tuberculosis resulting from disruption of the mce1 operon.. Proc Natl Acad Sci U S A. 100(26):15918-23.
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Wescott HH, Zuniga ES, Bajpai A, Trujillo C, Ehrt S, Schnappinger D, Roberts DM, Parish T.  2018.  Identification of Enolase as the Target of 2-Aminothiazoles in .. Front Microbiol. 9:2542.
Zhao N, Sun M, Burns-Huang K, Jiang X, Ling Y, Darby C, Ehrt S, Liu G, Nathan C.  2015.  Identification of Rv3852 as an Agrimophol-Binding Protein in Mycobacterium tuberculosis.. PLoS One. 10(5):e0126211.
Healy C, Ioerger TR, Ehrt S, Gouzy A.  2025.  Identifying genetic determinants of Mycobacterium tuberculosis acid growth arrest by transposon mutagenesis coupled with next-generation sequencing (Tn-seq).. Microbiol Resour Announc. 14(8):e0006025.
Klotzsche M, Ehrt S, Schnappinger D.  2009.  Improved tetracycline repressors for gene silencing in mycobacteria.. Nucleic Acids Res. 37(6):1778-88.
Gandotra S, Schnappinger D, Monteleone M, Hillen W, Ehrt S.  2007.  In vivo gene silencing identifies the Mycobacterium tuberculosis proteasome as essential for the bacteria to persist in mice.. Nat Med. 13(12):1515-20.
Puckett S, Trujillo C, Eoh H, Marrero J, Spencer J, Jackson M, Schnappinger D, Rhee K, Ehrt S.  2014.  Inactivation of fructose-1,6-bisphosphate aldolase prevents optimal co-catabolism of glycolytic and gluconeogenic carbon substrates in Mycobacterium tuberculosis.. PLoS Pathog. 10(5):e1004144.
Seimon TA, Kim M-J, Blumenthal A, Koo J, Ehrt S, Wainwright H, Bekker L-G, Kaplan G, Nathan C, Tabas I et al..  2010.  Induction of ER stress in macrophages of tuberculosis granulomas.. PLoS One. 5(9):e12772.
Ding A, Yu H, Yang J, Shi S, Ehrt S.  2005.  Induction of macrophage-derived SLPI by Mycobacterium tuberculosis depends on TLR2 but not MyD88.. Immunology. 116(3):381-9.
Miller AH, Marks F, Chan L, Botella H, Schnappinger D, Ehrt S.  2024.  Interruption of mycothiol synthesis and intracellular redox status impact iron-regulated reporter activation in Mycobacterium smegmatis.. Microbiol Spectr. 12(7):e0048724.
Schnappinger D, Ehrt S.  2006.  Introduction: genomic approaches in infectious diseases.. Microbes Infect. 8(6):1611-2.
Ehrt S, Schnappinger D.  2003.  Isolation of plasmids from E. coli by alkaline lysis.. Methods Mol Biol. 235:75-8.